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Inercion priskribas la unua le\u011Do de Newton pri movado, la\u016D kiu la mascentro de korpo sub la influo de eksteraj fortoj ne \u015Dan\u011Das sian movkondi\u0109on: a\u016D \u011Di plu restas senmova, a\u016D \u011Di plu movi\u011Das la\u016D rekta linio kun konstanta rapido. En la plej simpla okazo, kiam temas pri rektaj movoj, la inercio de korpo dependas de la inercieca maso de la objekto. Kiam temas pri rotacia movo, inerton esprimas la inercimomanto de la korpo." , "lang" : "eo" } , { "type" : "literal", "value" : "\u6163\u6027\uFF08\u304B\u3093\u305B\u3044\u3001\u82F1: inertia\uFF09\u3068\u306F\u3001\u3042\u308B\u7269\u4F53\u304C\u5916\u529B\u3092\u53D7\u3051\u306A\u3044\u3068\u304D\u3001\u305D\u306E\u7269\u4F53\u306E\u904B\u52D5\u72B6\u614B\u306F\u6163\u6027\u7CFB\u306B\u5BFE\u3057\u3066\u5909\u308F\u3089\u306A\u3044\u3068\u3044\u3046\u6027\u8CEA\u3092\u8868\u3059\u3002\u60F0\u6027\u3068\u3082\u3044\u3046\u3002 \u3042\u308B\u57FA\u6E96\u7CFB\uFF08\u89B3\u6E2C\u8005\uFF09\u306B\u5BFE\u3057\u3066\u6163\u6027\u306E\u6CD5\u5247\u304C\u6210\u308A\u7ACB\u3064\u3002\u6163\u6027\u306E\u6CD5\u5247\u304C\u6210\u7ACB\u3059\u308B\u7CFB\u3092\u6163\u6027\u7CFB\u3068\u547C\u3073\u3001\u305D\u308C\u4EE5\u5916\u3092\u975E\u6163\u6027\u7CFB\u3068\u547C\u3076\u3002\u6163\u6027\u306E\u6CD5\u5247\u306F\u6B21\u306E\u3088\u3046\u306B\u8AAC\u660E\u3055\u308C\u308B\uFF1A\uFF08\u3042\u308B\u6163\u6027\u7CFB\u3092\u57FA\u6E96\u3068\u3057\uFF09\u57FA\u6E96\u6163\u6027\u7CFB\u306B\u5BFE\u3057\u3066\u9759\u6B62\u3057\u3066\u3044\u308B\u7269\u4F53\u306F\u3001\u305D\u306E\u7269\u4F53\u306B\u529B\u304C\u50CD\u304B\u306A\u3044\u9650\u308A\u3001\u57FA\u6E96\u6163\u6027\u7CFB\u306B\u5BFE\u3057\u9759\u6B62\u3092\u7D9A\u3051\u308B\u3002\u307E\u305F\u540C\u69D8\u306B\u3001\u57FA\u6E96\u6163\u6027\u7CFB\u306B\u5BFE\u3057\u3066\u904B\u52D5\u3059\u308B\u7269\u4F53\u306F\u3001\u305D\u306E\u7269\u4F53\u306B\u529B\u304C\u50CD\u304B\u306A\u3044\u9650\u308A\u3001\u57FA\u6E96\u6163\u6027\u7CFB\u306B\u5BFE\u3059\u308B\u904B\u52D5\u72B6\u614B\u3092\u4E00\u5B9A\u306B\u4FDD\u3064\uFF08\u7B49\u901F\u76F4\u7DDA\u904B\u52D5\u3059\u308B\uFF09\u3002 \u4F8B\u3048\u3070\u30CB\u30E5\u30FC\u30C8\u30F3\u306E\u904B\u52D5\u65B9\u7A0B\u5F0F\u306B\u3064\u3044\u3066\u3001\u904B\u52D5\u65B9\u7A0B\u5F0F\u3092\u975E\u6163\u6027\u7CFB\u306B\u5BFE\u3059\u308B\u7269\u4F53\u306E\u904B\u52D5\u306B\u305D\u306E\u307E\u307E\u9069\u7528\u3059\u308B\u3053\u3068\u306F\u3067\u304D\u306A\u3044\u3002\u4EEE\u306B\u5BFE\u8C61\u306E\u975E\u6163\u6027\u7CFB\u306E\u6163\u6027\u7CFB\u306B\u5BFE\u3059\u308B\u52A0\u901F\u5EA6\u304C\u5206\u304B\u308B\u3068\u3059\u308C\u3070\u3001\u6163\u6027\u7CFB\u306B\u304A\u3051\u308B\u904B\u52D5\u65B9\u7A0B\u5F0F\u3092\u3082\u3068\u306B\u5EA7\u6A19\u5909\u63DB\u3059\u308B\u3053\u3068\u3067\u3001\u975E\u6163\u6027\u7CFB\u306B\u304A\u3051\u308B\u904B\u52D5\u65B9\u7A0B\u5F0F\u304C\u5F97\u3089\u308C\u308B\u3002\u30CB\u30E5\u30FC\u30C8\u30F3\u306E\u904B\u52D5\u65B9\u7A0B\u5F0F\u306E\u5834\u5408\u3001\u5EA7\u6A19\u5909\u63DB\u306E\u7D50\u679C\u306F\u3001\u6163\u6027\u7CFB\u306B\u304A\u3051\u308B\u904B\u52D5\u65B9\u7A0B\u5F0F\u3068\u5F62\u5F0F\u4E0A\u540C\u3058\u3067\u3042\u308A\u3001\u975E\u6163\u6027\u7CFB\u306E\u6163\u6027\u7CFB\u306B\u5BFE\u3059\u308B\u76F8\u5BFE\u904B\u52D5\u306F\u3001\u898B\u304B\u3051\u306E\u529B\uFF08\u6163\u6027\u529B\uFF09\u3068\u3057\u3066\u73FE\u308C\u308B\u3002\u898B\u304B\u3051\u306E\u529B\u304C\u5145\u5206\u5C0F\u3055\u3044\u3068\u898B\u306A\u305B\u308B\u306A\u3089\u3001\u305D\u306E\u975E\u6163\u6027\u7CFB\u306F\u8FD1\u4F3C\u7684\u306B\u6163\u6027\u7CFB\u3068\u898B\u306A\u305B\u308B\u3002\u975E\u6163\u6027\u7CFB\u304C\u8FD1\u4F3C\u7684\u306B\u6163\u6027\u7CFB\u3068\u307F\u306A\u305B\u308B\u304B\u306F\u3001\u5BFE\u8C61\u3068\u306A\u308B\u7269\u4F53\u306E\u904B\u52D5\u306B\u4F9D\u5B58\u3059\u308B\u3002" , "lang" : "ja" } , { "type" : "literal", "value" : "Traagheid (natuurkunde, in de klassieke mechanica) is de eigenschap van zware voorwerpen om de bewegingstoestand die ze hebben te behouden, dus stilstaande voorwerpen blijven stilstaan en bewegende voorwerpen blijven met constante snelheid rechtuit bewegen. Dit is het traagheidsprincipe, overeenkomend met het ervaringsfeit dat een voorwerp het traject gaat volgen van de minste actie. De bijbehorende beweging -zonder dat er een resulterende kracht op een voorwerp wordt uitgeoefend- heet een traagheidsbeweging. Een ander woord voor traagheid is inertie." , "lang" : "nl" } , { "type" : "literal", "value" : "\u0627\u0644\u0639\u0637\u0627\u0644\u0629 \u0623\u0648 \u0627\u0644\u0642\u0635\u0648\u0631 \u0627\u0644\u0630\u0627\u062A\u064A \u0645\u0635\u0637\u0644\u062D \u0641\u064A\u0632\u064A\u0627\u0626\u064A \u064A\u0639\u0646\u064A \u0645\u0642\u0627\u0648\u0645\u0629 \u0627\u0644\u062C\u0633\u0645 \u0627\u0644\u0633\u0627\u0643\u0646 \u0644\u0644\u062D\u0631\u0643\u0629 \u0648\u0645\u0642\u0627\u0648\u0645\u0629 \u0627\u0644\u062C\u0633\u0645 \u0627\u0644\u0645\u062A\u062D\u0631\u0643 \u0628\u062A\u0632\u0648\u064A\u062F\u0647 \u0628\u0639\u062C\u0644\u0629 \u062B\u0627\u0628\u062A\u0629 \u0623\u0648 \u062A\u063A\u064A\u064A\u0631 \u0627\u062A\u062C\u0627\u0647\u0647\u060C \u0648\u0644\u0642\u062F \u0639\u0628\u0631 \u0646\u064A\u0648\u062A\u0646 \u0639\u0646 \u0647\u0630\u0627 \u0627\u0644\u0645\u0635\u0637\u0644\u062D \u0641\u064A \u0642\u0627\u0646\u0648\u0646\u0647 \u0627\u0644\u0623\u0648\u0644 \u0627\u0644\u0645\u0639\u0631\u0648\u0641 \u0628\u0642\u0627\u0646\u0648\u0646 \u0627\u0644\u0642\u0635\u0648\u0631 \u0627\u0644\u0630\u0627\u062A\u064A \u0623\u0648 \u0627\u0644\u0639\u0637\u0627\u0644\u0629. \u0648\u0647\u0648 \u062E\u0627\u0635\u064A\u0629 \u0645\u0642\u0627\u0648\u0645\u0629 \u0627\u0644\u062C\u0633\u0645 \u0627\u0644\u0645\u0627\u062F\u064A \u0644\u062A\u063A\u064A\u064A\u0631 \u062D\u0627\u0644\u062A\u0647 \u0645\u0646 \u0627\u0644\u0633\u0643\u0648\u0646 \u0625\u0644\u0649 \u0627\u0644\u062D\u0631\u0643\u0629 \u0628\u0633\u0631\u0639\u0629 \u0645\u0646\u062A\u0638\u0645\u0629 \u0648\u0641\u064A \u062E\u0637 \u0645\u0633\u062A\u0642\u064A\u0645 \u0645\u0627 \u0644\u0645 \u062A\u0624\u062B\u0631 \u0639\u0644\u064A\u0647 \u0642\u0648\u0629 \u062A\u063A\u064A\u0631 \u0645\u0646 \u062D\u0627\u0644\u062A\u0647 \u0623\u064A \u0623\u0646 \u0643\u0644 \u062C\u0633\u0645 \u0645\u0627\u062F\u064A \u0642\u0627\u0635\u0631 \u0639\u0646 \u062A\u063A\u064A\u064A\u0631 \u062D\u0627\u0644\u062A\u0647 \u0645\u0646 \u0627\u0644\u0633\u0643\u0648\u0646 \u0623\u0648 \u0627\u0644\u062D\u0631\u0643\u0629 \u0645\u0627 \u0644\u0645 \u062A\u0624\u062B\u0631 \u0639\u0644\u064A\u0647 \u0642\u0648\u0629 \u062A\u063A\u064A\u0631 \u0645\u0646 \u062D\u0627\u0644\u062A\u0647. \u0648\u0643\u0627\u0646 \u0627\u0644\u0639\u0627\u0644\u0645 \u0627\u0644\u0628\u0631\u064A\u0637\u0627\u0646\u064A \u0627\u0644\u0633\u064A\u0631 \u0625\u0633\u062D\u0627\u0642 \u0646\u064A\u0648\u062A\u0646 \u0623\u0648\u0644 \u0645\u0646 \u0648\u0635\u0641 \u0627\u0644\u0642\u0635\u0648\u0631 \u0627\u0644\u0630\u0627\u062A\u064A. \u0648\u0642\u062F\u064E\u0651\u0645 \u0647\u0630\u0647 \u0627\u0644\u0641\u0643\u0631\u0629 \u0641\u064A \u0623\u0648\u0644 \u0642\u0627\u0646\u0648\u0646 \u062E\u0627\u0635 \u0628\u0627\u0644\u062D\u0631\u0643\u0629\u060C \u0646\u064F\u0634\u0631 \u0639\u0627\u0645 1687\u0645." , "lang" : "ar" } , { "type" : "literal", "value" : "Setrva\u010Dnost je vlastnost hmotn\u00FDch t\u011Bles (t\u011Bles s hmotnost\u00ED), kter\u00E1 se sna\u017E\u00ED setrvat ve stavu p\u0159ed vn\u011Bj\u0161\u00EDm fyzik\u00E1ln\u00EDm p\u016Fsoben\u00EDm, tj. v p\u0159\u00EDpad\u011B, \u017Ee na t\u011Bleso nep\u016Fsob\u00ED \u017E\u00E1dn\u00E1 vn\u011Bj\u0161\u00ED s\u00EDla. Jin\u00FDmi slovy, jedn\u00E1 se o odpor t\u011Blesa v\u016F\u010Di zm\u011Bn\u011B jeho rychlosti. V mechanice m\u016F\u017Eeme setrva\u010Dnost popsat jako schopnost t\u011Blesa nem\u011Bnit sm\u011Br ani rychlost posuvn\u00E9ho pohybu v\u016F\u010Di inerci\u00E1ln\u00ED vzta\u017En\u00E9 soustav\u011B. Jsou-li p\u016Fsob\u00EDc\u00ED s\u00EDly v rovnov\u00E1ze (tj. vz\u00E1jemn\u011B se ru\u0161\u00ED) setrv\u00E1v\u00E1 t\u011Bleso v p\u016Fvodn\u00EDm stavu, tedy v klidu nebo v rovnom\u011Brn\u00E9m p\u0159\u00EDmo\u010Dar\u00E9m pohybu. M\u00EDrou setrva\u010Dnosti je (setrva\u010Dn\u00E1) hmotnost t\u011Blesa." , "lang" : "cs" } , { "type" : "literal", "value" : "\uAD00\uC131(\u6163\u6027)\uC740 \uBB3C\uCCB4\uC5D0 \uC791\uC6A9\uD558\uB294 \uD798\uC758 \uCD1D\uD569\uC774 0\uC77C \uB54C, \uC6B4\uB3D9\uC758 \uC0C1\uD0DC\uB97C \uC720\uC9C0\uD558\uB824\uB294 \uACBD\uD5A5\uC744 \uB9D0\uD558\uBA70, \uC6B4\uB3D9\uC758 \uC0C1\uD0DC\uAC00 \uBCC0\uD560 \uB54C \uBB3C\uCCB4\uC758 \uC800\uD56D\uB825\uC774\uB2E4. \uC8FC\uB85C \uBC84\uC2A4 \uB4F1\uC774 \uCD9C\uBC1C\uD560 \uB54C \uC815\uC9C0\uD574 \uC788\uC73C\uB824\uB294 \uC2B9\uAC1D\uB4E4\uC774 \uB4A4\uB85C \uC3E0\uB9AC\uB294 \uD604\uC0C1, \uADF8\uB9AC\uACE0 \uAE09\uC815\uAC70\uD560 \uB54C \uACC4\uC18D \uC6B4\uB3D9\uD558\uB824\uB294 \uC2B9\uAC1D\uB4E4\uC774 \uC55E\uC73C\uB85C \uC3E0\uB9AC\uB294 \uD604\uC0C1\uC73C\uB85C \uC124\uBA85\uB41C\uB2E4. \uAD00\uC131\uC758 \uC6D0\uB9AC\uB294 \uBB3C\uCCB4\uC758 \uC6B4\uB3D9\uACFC \uC801\uC6A9\uB41C \uD798\uC5D0 \uC758\uD574 \uC601\uD5A5\uC744 \uBC1B\uC740 \uBB3C\uCCB4\uB97C \uAE30\uC220\uD558\uB294\uB370 \uC0AC\uC6A9\uB41C \uACE0\uC804 \uBB3C\uB9AC\uC758 \uAE30\uBCF8\uC801\uC778 \uC6D0\uB9AC\uC758 \uD558\uB098\uC774\uB2E4. \uAD00\uC131\uC758 \uC601\uBA85\uC778 \uC774\uB108\uD2F0\uC544(inertia)\uC758 \uC5B4\uC6D0\uC740 '\uAC8C\uC73C\uB974\uB2E4, \uC26C\uB2E4'\uB77C\uB294 \uB73B\uC744 \uAC00\uC9C4 \uB77C\uD2F4\uC5B4 'iners'\uC774\uB2E4. \uC544\uC774\uC791 \uB274\uD134\uC740 \uADF8\uC758 \uCC45 \uC790\uC5F0\uCCA0\uD559\uC758 \uC218\uD559\uC801 \uC6D0\uB9AC\uC5D0\uC11C \uAD00\uC131\uC744 \uC81C 1 \uBC95\uCE59\uC73C\uB85C \uC815\uC758\uD588\uB2E4. \uB274\uD134\uC758 \uC6B4\uB3D9\uBC95\uCE59\uC911 \uC81C 1\uBC95\uCE59\uC778 \"\uAD00\uC131\uC758 \uBC95\uCE59\"\uC5D0\uC11C \uB274\uD134\uC740 \uAD00\uC131\uC744 '\uC678\uBD80 \uD798\uC774 \uAC00\uD574\uC9C0\uC9C0 \uC54A\uC73C\uBA74 \uBB3C\uCCB4\uB294 \uC77C\uC815\uD55C \uC18D\uB3C4\uB85C \uC6C0\uC9C1\uC778\uB2E4'\uACE0 \uC815\uC758\uD588\uB2E4. \uD798\uC5D0 \uC758\uD574 \uC18D\uB825\uACFC \uBC29\uD5A5\uC774 \uBCC0\uD558\uAE30 \uC804\uAE4C\uC9C0 \uBB3C\uCCB4\uB294 \uD56D\uC0C1 \uAE30\uC874\uC758 \uC6B4\uB3D9\uC0C1\uD0DC\uB300\uB85C \uC6C0\uC9C1\uC774\uB824\uACE0 \uD55C\uB2E4\uB294 \uC758\uBBF8\uC774\uB2E4. \uC6C0\uC9C1\uC774\uC9C0 \uC54A\uB294 \uBB3C\uCCB4\uAC00 \uD798\uC774 \uC791\uC6A9\uD558\uAE30 \uC804\uAE4C\uC9C0 \uC815\uC9C0\uC0C1\uD0DC\uB85C \uC720\uC9C0\uB418\uB294 \uAC83\uB3C4 \uD3EC\uD568\uD55C\uB2E4." , "lang" : "ko" } , { "type" : "literal", "value" : "\u5728\u7269\u7406\u5B78\u88E1\uFF0C\u6163\u6027\uFF08\u82F1\u8A9E\uFF1Ainertia\uFF09\u662F\u7269\u9AD4\u6297\u62D2\u5176\u904B\u52D5\u72C0\u614B\u88AB\u6539\u8B8A\u7684\u6027\u8CEA\u3002\u7269\u9AD4\u7684\u6163\u6027\u53EF\u4EE5\u7528\u5176\u8CEA\u91CF\u4F86\u8861\u91CF\uFF0C\u8CEA\u91CF\u8D8A\u5927\uFF0C\u6163\u6027\u4E5F\u8D8A\u5927\u3002\u827E\u85A9\u514B\u00B7\u725B\u9813\u5728\u9245\u8457\u300A\u81EA\u7136\u54F2\u5B78\u7684\u6578\u5B78\u539F\u7406\u300B\u88E1\u5B9A\u7FA9\u6163\u6027\u70BA\uFF1A \u6163\u6027\uFF0C\u6216\u7269\u8CEA\u56FA\u6709\u7684\u529B\uFF0C\u662F\u4E00\u7A2E\u6297\u62D2\u7684\u73FE\u8C61\uFF0C\u5B83\u5B58\u5728\u65BC\u6BCF\u4E00\u7269\u9AD4\u7576\u4E2D\uFF0C\u5927\u5C0F\u8207\u8A72\u7269\u9AD4\u76F8\u7576\uFF0C\u4E26\u76E1\u91CF\u4F7F\u5176\u4FDD\u6301\u73FE\u6709\u7684\u72C0\u614B\uFF0C\u4E0D\u8AD6\u662F\u975C\u6B62\u72C0\u614B\uFF0C\u6216\u662F\u7B49\u901F\u76F4\u7DDA\u904B\u52D5\u72C0\u614B\u3002 \u66F4\u5177\u9AD4\u800C\u8A00\uFF0C\u725B\u9813\u7B2C\u4E00\u5B9A\u5F8B\u8868\u660E\uFF0C\u5B58\u5728\u67D0\u4E9B\u53C3\u8003\u7CFB\uFF0C\u5728\u5176\u4E2D\uFF0C\u4E0D\u53D7\u5916\u529B\u7684\u7269\u9AD4\u90FD\u4FDD\u6301\u975C\u6B62\u6216\u7B49\u901F\u76F4\u7DDA\u904B\u52D5\u3002\u4E5F\u5C31\u662F\u8AAA\uFF0C\u5F9E\u67D0\u4E9B\u53C2\u8003\u7CFB\u89C0\u5BDF\uFF0C\u5047\u82E5\u65BD\u52A0\u65BC\u7269\u9AD4\u7684\u6DE8\u5916\u529B\u70BA\u96F6\uFF0C\u5247\u7269\u9AD4\u904B\u52D5\u901F\u5EA6\u7684\u5927\u5C0F\u8207\u65B9\u5411\u6052\u5B9A\u3002\u6163\u6027\u5B9A\u7FA9\u70BA\uFF0C\u725B\u9813\u7B2C\u4E00\u5B9A\u5F8B\u4E2D\u7684\u7269\u9AD4\u5177\u6709\u4FDD\u6301\u539F\u4F86\u904B\u52D5\u72C0\u614B\u7684\u6027\u8CEA\u3002\u6EFF\u8DB3\u725B\u9813\u7B2C\u4E00\u5B9A\u5F8B\u7684\u53C3\u8003\u7CFB\uFF0C\u7A31\u70BA\u6163\u6027\u53C3\u8003\u7CFB\u3002\u7A0D\u5F8C\u6703\u6709\u95DC\u65BC\u6163\u6027\u53C3\u8003\u7CFB\u7684\u66F4\u8A73\u7D30\u8AD6\u8FF0\u3002 \u6163\u6027\u539F\u7406\u662F\u7D93\u5178\u529B\u5B78\u7684\u57FA\u790E\u539F\u7406\u3002\u5F88\u591A\u5B78\u8005\u8A8D\u70BA\u6163\u6027\u539F\u7406\u5C31\u662F\u725B\u9813\u7B2C\u4E00\u5B9A\u5F8B\u3002\u9075\u5B88\u9019\u539F\u7406\uFF0C\u7269\u9AD4\u6703\u6301\u7E8C\u5730\u4EE5\u73FE\u6709\u901F\u5EA6\u79FB\u52D5\uFF0C\u9664\u975E\u6709\u5916\u529B\u8FEB\u4F7F\u6539\u8B8A\u5176\u901F\u5EA6\u3002 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\u2014 \u043F\u043E\u043A\u043E\u0439, \u0431\u0435\u0437\u0434\u0435\u044F\u0442\u0435\u043B\u044C\u043D\u043E\u0441\u0442\u044C, \u043F\u043E\u0441\u0442\u043E\u044F\u043D\u0441\u0442\u0432\u043E, \u043D\u0435\u0438\u0437\u043C\u0435\u043D\u043D\u043E\u0441\u0442\u044C) \u2014 \u0441\u0432\u043E\u0439\u0441\u0442\u0432\u043E \u0442\u0435\u043B\u0430 \u043E\u0441\u0442\u0430\u0432\u0430\u0442\u044C\u0441\u044F \u0432 \u043D\u0435\u043A\u043E\u0442\u043E\u0440\u044B\u0445, \u043D\u0430\u0437\u044B\u0432\u0430\u0435\u043C\u044B\u0445 \u0438\u043D\u0435\u0440\u0446\u0438\u0430\u043B\u044C\u043D\u044B\u043C\u0438, \u0441\u0438\u0441\u0442\u0435\u043C\u0430\u0445 \u043E\u0442\u0441\u0447\u0451\u0442\u0430 \u0432 \u0441\u043E\u0441\u0442\u043E\u044F\u043D\u0438\u0438 \u043F\u043E\u043A\u043E\u044F \u0438\u043B\u0438 \u0440\u0430\u0432\u043D\u043E\u043C\u0435\u0440\u043D\u043E\u0433\u043E \u043F\u0440\u044F\u043C\u043E\u043B\u0438\u043D\u0435\u0439\u043D\u043E\u0433\u043E \u0434\u0432\u0438\u0436\u0435\u043D\u0438\u044F \u0432 \u043E\u0442\u0441\u0443\u0442\u0441\u0442\u0432\u0438\u0435 \u0432\u043D\u0435\u0448\u043D\u0438\u0445 \u0432\u043E\u0437\u0434\u0435\u0439\u0441\u0442\u0432\u0438\u0439, \u0430 \u0442\u0430\u043A\u0436\u0435 \u043F\u0440\u0435\u043F\u044F\u0442\u0441\u0442\u0432\u043E\u0432\u0430\u0442\u044C \u0438\u0437\u043C\u0435\u043D\u0435\u043D\u0438\u044E \u0441\u0432\u043E\u0435\u0439 \u0441\u043A\u043E\u0440\u043E\u0441\u0442\u0438 (\u043A\u0430\u043A \u043F\u043E \u043C\u043E\u0434\u0443\u043B\u044E, \u0442\u0430\u043A \u0438 \u043F\u043E \u043D\u0430\u043F\u0440\u0430\u0432\u043B\u0435\u043D\u0438\u044E) \u043F\u0440\u0438 \u043D\u0430\u043B\u0438\u0447\u0438\u0438 \u0432\u043D\u0435\u0448\u043D\u0438\u0445 \u0441\u0438\u043B \u0437\u0430 \u0441\u0447\u0451\u0442 \u0441\u0432\u043E\u0435\u0439 \u0438\u043D\u0435\u0440\u0442\u043D\u043E\u0439 \u043C\u0430\u0441\u0441\u044B. \u041A\u043E\u043B\u0438\u0447\u0435\u0441\u0442\u0432\u0435\u043D\u043D\u043E \u0441\u043E\u043E\u0442\u043D\u043E\u0448\u0435\u043D\u0438\u0435 \u043C\u0435\u0436\u0434\u0443 \u0432\u043E\u0437\u0434\u0435\u0439\u0441\u0442\u0432\u0438\u0435\u043C \u043D\u0430 \u0442\u0435\u043B\u043E \u0438 \u0438\u0437\u043C\u0435\u043D\u0435\u043D\u0438\u0435\u043C \u0435\u0433\u043E \u0434\u0432\u0438\u0436\u0435\u043D\u0438\u044F \u0434\u0430\u0451\u0442\u0441\u044F \u0444\u043E\u0440\u043C\u0443\u043B\u043E\u0439 \u0432\u0442\u043E\u0440\u043E\u0433\u043E \u0437\u0430\u043A\u043E\u043D\u0430 \u041D\u044C\u044E\u0442\u043E\u043D\u0430: . \u0417\u0434\u0435\u0441\u044C \u2014 \u0441\u0438\u043B\u0430, \u0434\u0435\u0439\u0441\u0442\u0432\u0443\u044E\u0449\u0430\u044F \u043D\u0430 \u0442\u0435\u043B\u043E, \u2014 \u0438\u043D\u0435\u0440\u0442\u043D\u0430\u044F \u043C\u0430\u0441\u0441\u0430, \u2014 \u0441\u043A\u043E\u0440\u043E\u0441\u0442\u044C \u0442\u0435\u043B\u0430." , "lang" : "ru" } , { "type" : "literal", "value" : "\u039C\u03B5 \u03C4\u03BF\u03BD \u03CC\u03C1\u03BF \u0391\u03B4\u03C1\u03AC\u03BD\u03B5\u03B9\u03B1, \u03C3\u03C4\u03B7 \u03A6\u03C5\u03C3\u03B9\u03BA\u03AE, \u03BF\u03BD\u03BF\u03BC\u03AC\u03B6\u03B5\u03C4\u03B1\u03B9 \u03B7 \u03C7\u03B1\u03C1\u03B1\u03BA\u03C4\u03B7\u03C1\u03B9\u03C3\u03C4\u03B9\u03BA\u03AE \u03B9\u03B4\u03B9\u03CC\u03C4\u03B7\u03C4\u03B1 \u03C4\u03C9\u03BD \u03C3\u03C9\u03BC\u03AC\u03C4\u03C9\u03BD \u03BD\u03B1 \u03B1\u03BD\u03C4\u03B9\u03C3\u03C4\u03AD\u03BA\u03BF\u03BD\u03C4\u03B1\u03B9 \u03C3\u03C4\u03B7\u03BD \u03BF\u03C0\u03BF\u03B9\u03B1\u03B4\u03AE\u03C0\u03BF\u03C4\u03B5 \u03BC\u03B5\u03C4\u03B1\u03B2\u03BF\u03BB\u03AE \u03C4\u03B7\u03C2 \u03BA\u03B9\u03BD\u03B7\u03C4\u03B9\u03BA\u03AE\u03C2 \u03C4\u03BF\u03C5\u03C2 \u03BA\u03B1\u03C4\u03AC\u03C3\u03C4\u03B1\u03C3\u03B7\u03C2. \u0391\u03C5\u03C4\u03CC \u03C3\u03C5\u03BD\u03B5\u03C0\u03AC\u03B3\u03B5\u03C4\u03B1\u03B9 \u03B4\u03CD\u03BF \u03B1\u03C1\u03C7\u03AD\u03C2: \n* \u038C\u03C4\u03B1\u03BD \u03BF\u03B9 \u03B4\u03C5\u03BD\u03AC\u03BC\u03B5\u03B9\u03C2 \u03C0\u03BF\u03C5 \u03B1\u03C3\u03BA\u03BF\u03CD\u03BD\u03C4\u03B1\u03B9 \u03C3\u03B5 \u03AD\u03BD\u03B1 \u03C3\u03CE\u03BC\u03B1 \u03B1\u03BB\u03BB\u03B7\u03BB\u03BF\u03B1\u03BD\u03B1\u03B9\u03C1\u03BF\u03CD\u03BD\u03C4\u03B1\u03B9, \u03C4\u03CC\u03C4\u03B5 \u03C4\u03BF \u03C3\u03CE\u03BC\u03B1 \u03B8\u03B1 \u03B5\u03BE\u03B1\u03BA\u03BF\u03BB\u03BF\u03C5\u03B8\u03B5\u03AF \u03BD\u03B1 \u03BA\u03B9\u03BD\u03B5\u03AF\u03C4\u03B1\u03B9 \u03BC\u03B5 \u03C4\u03B7\u03BD \u03C4\u03B1\u03C7\u03CD\u03C4\u03B7\u03C4\u03B1 \u03C4\u03B7\u03BD \u03BF\u03C0\u03BF\u03AF\u03B1 \u03AD\u03C7\u03B5\u03B9 \u03B1\u03C0\u03BF\u03BA\u03C4\u03AE\u03C3\u03B5\u03B9 \u03AE \u03B1\u03BD \u03B4\u03B5\u03BD \u03AD\u03C7\u03B5\u03B9 \u03C4\u03B1\u03C7\u03CD\u03C4\u03B7\u03C4\u03B1 \u03B8\u03B1 \u03C0\u03B1\u03C1\u03B1\u03BC\u03B5\u03AF\u03BD\u03B5\u03B9 \u03B1\u03BA\u03AF\u03BD\u03B7\u03C4\u03BF. \u0397 \u03C0\u03B1\u03C1\u03B1\u03C0\u03AC\u03BD\u03C9 \u03B1\u03C1\u03C7\u03AE \u03C4\u03B7\u03C2 \u03B1\u03B4\u03C1\u03AC\u03BD\u03B5\u03B9\u03B1\u03C2 \u03B4\u03B9\u03B1\u03C4\u03C5\u03C0\u03CE\u03B8\u03B7\u03BA\u03B5 \u03B1\u03C1\u03C7\u03B9\u03BA\u03AC \u03B1\u03C0\u03CC \u03C4\u03BF\u03BD \u0393\u03B1\u03BB\u03B9\u03BB\u03B1\u03AF\u03BF. \n* \u0391\u03BD \u03BF\u03B9 \u03AF\u03B4\u03B9\u03B5\u03C2 \u03B4\u03C5\u03BD\u03AC\u03BC\u03B5\u03B9\u03C2 \u03B1\u03C3\u03BA\u03B7\u03B8\u03BF\u03CD\u03BD \u03C3\u03B5 \u03B4\u03B9\u03B1\u03C6\u03BF\u03C1\u03B5\u03C4\u03B9\u03BA\u03AC \u03C3\u03CE\u03BC\u03B1\u03C4\u03B1, \u03C4\u03CC\u03C4\u03B5 \u03BF \u03C1\u03C5\u03B8\u03BC\u03CC\u03C2 \u03BC\u03B5\u03C4\u03B1\u03B2\u03BF\u03BB\u03AE\u03C2 \u03C4\u03B7\u03C2 \u03C4\u03B1\u03C7\u03CD\u03C4\u03B7\u03C4\u03AC\u03C2 \u03C4\u03BF\u03C5\u03C2 \u03B5\u03AF\u03BD\u03B1\u03B9 \u03B1\u03BD\u03C4\u03B9\u03C3\u03C4\u03C1\u03CC\u03C6\u03C9\u03C2 \u03B1\u03BD\u03AC\u03BB\u03BF\u03B3\u03BF\u03C2 \u03C4\u03B7\u03C2 \u03B1\u03B4\u03C1\u03AC\u03BD\u03B5\u03B9\u03AC\u03C2 \u03C4\u03BF\u03C5\u03C2." , "lang" : "el" } , { "type" : "literal", "value" : "In der Physik ist Tr\u00E4gheit, auch Beharrungsverm\u00F6gen, das Bestreben von physikalischen K\u00F6rpern, in ihrem Bewegungszustand zu verharren, solange keine \u00E4u\u00DFeren Kr\u00E4fte oder Drehmomente auf sie einwirken. Eine solche Bewegung wird Tr\u00E4gheitsbewegung genannt. Das einfachste Beispiel einer Tr\u00E4gheitsbewegung ist die Bewegung geradeaus mit konstanter Geschwindigkeit, auch geradlinig-gleichf\u00F6rmige Bewegung genannt. Ein anderes Beispiel ist die Rotation der Erde, die \u00FCber sehr lange Zeitr\u00E4ume fast unver\u00E4ndert ist. Das Ma\u00DF f\u00FCr die Tr\u00E4gheit eines K\u00F6rpers" , "lang" : "de" } , { "type" : "literal", "value" : "Bezw\u0142adno\u015B\u0107 (inercja) \u2013 w\u0142a\u015Bciwo\u015B\u0107 wszystkich cia\u0142 materialnych o masie spoczynkowej wi\u0119kszej od zera, polegaj\u0105ca na tym, \u017Ce w inercjalnym uk\u0142adzie odniesienia, je\u015Bli na cia\u0142o nie dzia\u0142a si\u0142a lub dzia\u0142aj\u0105ce si\u0142y r\u00F3wnowa\u017C\u0105 si\u0119, to porusza si\u0119 ono ruchem jednostajnym lub pozostaje w spoczynku. Zmiana pr\u0119dko\u015Bci cia\u0142a wymaga dzia\u0142ania si\u0142y. Bezw\u0142adno\u015B\u0107 cia\u0142 postulowana jest przez zasad\u0119 bezw\u0142adno\u015Bci. Miar\u0105 bezw\u0142adno\u015Bci cia\u0142a jest jego masa, natomiast jej odpowiednikiem w ruchu obrotowym \u2013 moment bezw\u0142adno\u015Bci." , "lang" : "pl" } , { "type" : "literal", "value" : "En f\u00EDsica, la inercia (del lat\u00EDn inert\u012Da) es la propiedad que tienen los cuerpos de permanecer en su estado de reposo o movimientos relativos. Dicho, de forma general, es la resistencia que opone la materia a que se modifique su estado de movimiento, incluyendo cambios en la velocidad o en la direcci\u00F3n del movimiento. Como consecuencia, un cuerpo conserva su estado de reposo relativo o movimiento rectil\u00EDneo uniforme relativo si no hay una fuerza que, actuando sobre \u00E9l, logre cambiar su estado de movimiento." , "lang" : "es" } , { "type" : "literal", "value" : "\u0406\u043D\u0435\u0440\u0446\u0456\u044F (\u0432\u0456\u0434 \u043B\u0430\u0442. inertia \u2014 \u0431\u0435\u0437\u0434\u0456\u044F\u043B\u044C\u043D\u0456\u0441\u0442\u044C, \u0441\u043F\u043E\u043A\u0456\u0439, \u0432\u0456\u0434\u0441\u0442\u0430\u043B\u0456\u0441\u0442\u044C) \u2014 \u044F\u0432\u0438\u0449\u0435 \u0437\u0431\u0435\u0440\u0435\u0436\u0435\u043D\u043D\u044F \u0448\u0432\u0438\u0434\u043A\u043E\u0441\u0442\u0456 \u0440\u0443\u0445\u0443 \u043C\u0430\u0442\u0435\u0440\u0456\u0430\u043B\u044C\u043D\u043E\u0457 \u0442\u043E\u0447\u043A\u0438 \u0437\u0430 \u0432\u0456\u0434\u0441\u0443\u0442\u043D\u043E\u0441\u0442\u0456 \u0437\u043E\u0432\u043D\u0456\u0448\u043D\u0456\u0445 \u0441\u0438\u043B. \u042F\u0432\u0438\u0449\u0435 \u0456\u043D\u0435\u0440\u0446\u0456\u0457 \u0432\u0456\u0434\u043A\u0440\u0438\u0432 \u0456\u0442\u0430\u043B\u0456\u0439\u0441\u044C\u043A\u0438\u0439 \u0443\u0447\u0435\u043D\u0438\u0439 \u0413\u0430\u043B\u0456\u043B\u0435\u043E \u0413\u0430\u043B\u0456\u043B\u0435\u0439. \u041D\u0430 \u043E\u0441\u043D\u043E\u0432\u0456 \u0441\u0432\u043E\u0457\u0445 \u0434\u043E\u0441\u043B\u0456\u0434\u0456\u0432 \u0456 \u043C\u0456\u0440\u043A\u0443\u0432\u0430\u043D\u044C \u0432\u0456\u043D \u0441\u0442\u0432\u0435\u0440\u0434\u0436\u0443\u0432\u0430\u0432: \u044F\u043A\u0449\u043E \u043D\u0430 \u0442\u0456\u043B\u043E \u043D\u0435 \u0434\u0456\u044E\u0442\u044C \u0456\u043D\u0448\u0456 \u0442\u0456\u043B\u0430, \u0442\u043E \u0432\u043E\u043D\u043E \u0430\u0431\u043E \u043F\u0435\u0440\u0435\u0431\u0443\u0432\u0430\u0454 \u0443 \u0441\u043F\u043E\u043A\u043E\u0457, \u0430\u0431\u043E \u0440\u0443\u0445\u0430\u0454\u0442\u044C\u0441\u044F \u043F\u0440\u044F\u043C\u043E\u043B\u0456\u043D\u0456\u0439\u043D\u043E \u0456 \u0440\u0456\u0432\u043D\u043E\u043C\u0456\u0440\u043D\u043E. \u0423 \u0446\u044C\u043E\u043C\u0443 \u0440\u0430\u0437\u0456 \u043A\u0430\u0436\u0443\u0442\u044C, \u0449\u043E \u0442\u0456\u043B\u043E \u0440\u0443\u0445\u0430\u0454\u0442\u044C\u0441\u044F \u0437\u0430 \u0456\u043D\u0435\u0440\u0446\u0456\u0454\u044E. \u0417\u0434\u0430\u0442\u043D\u0456\u0441\u0442\u044C \u0442\u0456\u043B\u0430 \u043E\u043F\u0438\u0440\u0430\u0442\u0438\u0441\u044F \u0441\u043F\u0440\u043E\u0431\u0430\u043C \u0437\u043C\u0456\u043D\u0438\u0442\u0438 \u0439\u043E\u0433\u043E \u0448\u0432\u0438\u0434\u043A\u0456\u0441\u0442\u044C \u0430\u0431\u043E \u043D\u0430\u043F\u0440\u044F\u043C\u043E\u043A \u0440\u0443\u0445\u0443 \u043D\u0430\u0437\u0438\u0432\u0430\u0454\u0442\u044C\u0441\u044F \u0456\u043D\u0435\u0440\u0442\u043D\u0456\u0441\u0442\u044C." , "lang" : "uk" } , { "type" : "literal", "value" : "Tr\u00F6ghet definieras inom fysiken som motst\u00E5nd mot r\u00F6relsef\u00F6r\u00E4ndring. Begreppets inneb\u00F6rd har utvecklats i takt med naturvetenskapens landvinningar, men dess orsaker \u00E4r fortfarande ok\u00E4nda. Tr\u00F6ghet \u00E4r en kortform f\u00F6r \"tr\u00F6ghetsprincipen\" som den beskrevs av Isaac Newton i hans f\u00F6rsta r\u00F6relselag. I vanligt spr\u00E5kbruk anv\u00E4nds termen \"tr\u00F6ghet\" ocks\u00E5 f\u00F6r att kvalitativt h\u00E4nvisa till ett f\u00F6rem\u00E5ls \"ben\u00E4genhet att motst\u00E5 hastighets\u00E4ndringar\", vilken best\u00E4ms av dess massa." , "lang" : "sv" } , { "type" : "literal", "value" : "Inersia atau kelembaman adalah kecenderungan semua benda fisik untuk menolak perubahan terhadap keadaan geraknya. Secara numerik, ini diwakili oleh massa benda tersebut. Prinsip inersia adalah salah satu dasar dari fisika klasik yang digunakan untuk memberikan gerakan benda dan pengaruh gaya yang dikenakan terhadap benda itu. Kata inersia berasal dari kata bahasa Latin, \"iners\", yang berarti lembam, atau malas. Isaac Newton mendefinisikan inersia sebagai:" , "lang" : "in" } , { "type" : "literal", "value" : "Fisikan, inertzia gorputz orok aurretik zeukan pausaguneko edo higidura zuzen uniformeko egoeran irauten duten neurtzen duen propietatea da. Modu orokorrean esanda, materiak ezartzen duen erresistentzia bat bere HZU-ko egoera aldatzeko ala ez, abiadura aldaketak edo norabide aldaketak kontuan hartuta. Horregatik, gorputz batek bere pausaguneko edo higidura zuzen uniforme erlatiboko egoera ez da aldatuko, bere gainean ez baldin badago aurreko egoera alda dezakeen indarrik. Partikula sistema ezartzen duen erresistentzia da bere egoera dinamikoa aldatzeko." , "lang" : "eu" } , { "type" : "literal", "value" : "Air\u00ED r\u00E9ada a chuireann i gcoinne gluaisne. De r\u00E9ir ch\u00E9ad dl\u00ED gluaisne Newton, aon r\u00E9ad le mais at\u00E1 ar fos n\u00F3 ar luas tairiseach, n\u00ED m\u00F3r f\u00F3rsa glan a fheidhmi\u00FA air chun a staid a athr\u00FA, a luas a athr\u00FA, agus/n\u00F3 \u00E9 a luasgh\u00E9ar\u00FA. Nuair a th\u00E9ann mais an r\u00E9ada i m\u00E9id, is g\u00E1 an f\u00F3rsa a mh\u00E9ad\u00FA i gcomhr\u00E9ir leis an mais chun an toradh c\u00E9anna a fh\u00E1il. Prionsabal na t\u00E1imhe a thugtar ar an dl\u00ED seo. M\u00E1s gluaisne uilleach at\u00E1 i gceist, is g\u00E1 casmh\u00F3imint f\u00F3rsa\u00ED a imirt ar th\u00E1imhe r\u00E9ada chun an casadh uilleach a luasgh\u00E9ar\u00FA n\u00F3 a luasmhoilli\u00FA." , "lang" : "ga" } , { "type" : "literal", "value" : "En f\u00EDsica, la in\u00E8rcia \u00E9s la dificultat o resist\u00E8ncia amb la qual els cossos s'oposen a un canvi d'estat pel que fa al seu moviment. \u00C9s a dir, un cos en rep\u00F2s tendeix a romandre en rep\u00F2s, i un cos que es mou amb una velocitat uniforme tendeix a seguir en moviment, segons la primera llei de Newton. Les anomenades forces d'in\u00E8rcia s\u00F3n forces fict\u00EDcies o aparents que un observador percep en un sistema de refer\u00E8ncia no inercial." , "lang" : "ca" } , { "type" : "literal", "value" : "En physique, l'inertie d'un corps, dans un r\u00E9f\u00E9rentiel galil\u00E9en (dit inertiel), est sa tendance \u00E0 conserver sa vitesse : en l'absence d'influence ext\u00E9rieure, tout corps ponctuel perdure dans un mouvement rectiligne uniforme. L'inertie est aussi appel\u00E9e principe d'inertie, ou loi d'inertie, et, depuis Newton, premi\u00E8re loi de Newton. La loi d'inertie exprime le fait que si la vitesse du corps ponctuel par rapport au rep\u00E8re galil\u00E9en est constante, \u00AB la somme des forces s'exer\u00E7ant sur le corps est nulle \u00BB." , "lang" : "fr" } , { "type" : "literal", "value" : "A in\u00E9rcia \u00E9 uma propriedade geral da mat\u00E9ria (e segundo a Relatividade, tamb\u00E9m da energia). Considere um corpo n\u00E3o submetido \u00E0 a\u00E7\u00E3o de for\u00E7as ou submetido a um conjunto de for\u00E7as de resultante nula; nesta condi\u00E7\u00E3o esse corpo n\u00E3o sofre varia\u00E7\u00E3o de velocidade. Isto significa que, se est\u00E1 parado, permanece parado, e se est\u00E1 em movimento, permanece em movimento em linha reta e a sua velocidade se mant\u00E9m constante. Tal princ\u00EDpio, formulado pela primeira vez por Galileu e, posteriormente, confirmado por Newton, \u00E9 conhecido como primeiro princ\u00EDpio da Din\u00E2mica (1\u00AA lei de Newton) ou princ\u00EDpio da In\u00E9rcia." , "lang" : "pt" } , { "type" : "literal", "value" : "In fisica classica, in particolare in meccanica, l'inerzia di un corpo \u00E8 la propriet\u00E0 che determina la resistenza alle variazioni dello stato di moto ed \u00E8 quantificata dalla sua massa inerziale. L'inerzia \u00E8 descritta dal primo principio della dinamica, il principio di inerzia (o prima legge di Newton), che afferma che un corpo permane nel suo stato di quiete o di moto rettilineo uniforme a meno che non intervenga una forza esterna a modificare tale stato." , "lang" : "it" } , { "type" : "literal", "value" : "Inertia is the idea that an object will continue its current motion until some force causes its speed or direction to change. The term is properly understood as shorthand for \"the principle of inertia\" as described by Newton in his first law of motion. After some other definitions, Newton states in his first law of motion: LAW I. Every object perseveres in its state of rest, or of uniform motion in a right line, unless it is compelled to change that state by forces impressed thereon. Inertia is one of the primary manifestations of mass, which is a quantitative property of physical systems." , "lang" : "en" } ] , "http://www.w3.org/2000/01/rdf-schema#seeAlso" : [ { "type" : "uri", "value" : "http://dbpedia.org/resource/Conatus" } ] , "http://xmlns.com/foaf/0.1/depiction" : [ { "type" : "uri", "value" : "http://commons.wikimedia.org/wiki/Special:FilePath/Corioliskraftanimation.gif" } , { "type" : "uri", "value" : "http://commons.wikimedia.org/wiki/Special:FilePath/Galileo.arp.300pix.jpg" } , { "type" : "uri", "value" : "http://commons.wikimedia.org/wiki/Special:FilePath/Inertial-vs-gravitational-mass-experiment.svg" } ] , "http://purl.org/dc/terms/subject" : [ { "type" : "uri", "value" : "http://dbpedia.org/resource/Category:Mass" } , { "type" : "uri", "value" : "http://dbpedia.org/resource/Category:Gyroscopes" } , { "type" : "uri", "value" : "http://dbpedia.org/resource/Category:Velocity" } , { "type" : "uri", "value" : "http://dbpedia.org/resource/Category:Classical_mechanics" } , { "type" : "uri", "value" : "http://dbpedia.org/resource/Category:Articles_containing_video_clips" } ] , "http://dbpedia.org/ontology/abstract" : [ { "type" : "literal", "value" : "En fiziko, kaj \u0109efe en ties bran\u0109o mekaniko, inercio estas la rezisto de korpo al \u015Dan\u011Do de sia movkondi\u0109o. Inercion priskribas la unua le\u011Do de Newton pri movado, la\u016D kiu la mascentro de korpo sub la influo de eksteraj fortoj ne \u015Dan\u011Das sian movkondi\u0109on: a\u016D \u011Di plu restas senmova, a\u016D \u011Di plu movi\u011Das la\u016D rekta linio kun konstanta rapido. En la plej simpla okazo, kiam temas pri rektaj movoj, la inercio de korpo dependas de la inercieca maso de la objekto. Kiam temas pri rotacia movo, inerton esprimas la inercimomanto de la korpo. Oni ofte utiligas la koncepton anka\u016D en pli \u011Denerala senco, ekster la limoj de me\u0125aniko, por komprenigi, ke estas rezisto al \u015Dan\u011Do de iu fizika grando: ekzemple, oni ofte parolas pri , celante reziston al varmigo." , "lang" : "eo" } , { "type" : "literal", "value" : "Fisikan, inertzia gorputz orok aurretik zeukan pausaguneko edo higidura zuzen uniformeko egoeran irauten duten neurtzen duen propietatea da. Modu orokorrean esanda, materiak ezartzen duen erresistentzia bat bere HZU-ko egoera aldatzeko ala ez, abiadura aldaketak edo norabide aldaketak kontuan hartuta. Horregatik, gorputz batek bere pausaguneko edo higidura zuzen uniforme erlatiboko egoera ez da aldatuko, bere gainean ez baldin badago aurreko egoera alda dezakeen indarrik. Gorputz batek zenbat eta masa handiagoa izan, gero eta handiagoa izan beharko du bere abiadura aldatuko duen indarra (Newtonen legearen arabera: indarra berdin masa bider azelerazioa); beraz, gorputz baten masa inertziaren neurri kuantitatiboa dela esaten da, eta translazio mugimenduetan inertzia masaren bidez adierazten da. Inertzia bihurdura momentu batean gertatzen bada, berriz, abiadura angeluarrari erresistentzia egiten dioenean hain zuzen, inertzia momentuaz neurtzen da, eta bere baitan hartzen ditu bai gorputzaren masa eta bai forma edo itxura; ardatz baten inguruko errotazio mugimenduetan, beraz, inertzia ardatzari buruzko inertzia momentuaz adierazten da. Azken batean, inertziaren ondorioz, gorputz batek bere mugimenduaren noranzkoa edo egoera estatikoa mantentzen du, ez bada gertatzen gorputz horri eragiten dion indarrik. Newtonen lehen legeak propietate horri buruz hitz egiten du: Erreferentzia-sistema ez inertzial batean, azeleratutako gorputz batek itxurazkoa den nabaritzen du; hori gertatzen da adibidez autoan goazelarik autoak jiratzen duenean, indar batek jiratzearen aurkako norabidean bultzatzen gaituela sentitzen dugu, baina ez da indar bat, inertzia baizkik. Naturan, ez da existitzen geldiuneko egoerarik, materia guztia mugimenduan dagoelako. Beraz, geldiuneari edo HZU-ri buruz hitz egitean, erlatibo hitza gehitu behar dugu (erreferentzi sistema erlatibo batekiko). Gorputz orok dago HZU edo geldiuneko egoeran erreferentzi sistema batekiko. Gorputz batek geldiuneko egoeran baldin badago lurrazalaren gainean, egia esateko gorputz hori planetak egiten ari dagoen mugimenduetan parte egiten du; baita Lurrazalaren gainean eragiten diren indar grabitatorioetan parte hartzen du. Esan dezakegu gorputz batek orekan dagoela Lurrazalaren gainean, eta horregatik, geldiune erlatiboan. Partikula sistema ezartzen duen erresistentzia da bere egoera dinamikoa aldatzeko. Fisikan, esan dezakegu gorputz batek inertzia gehiago duela, bere dinamikako egoera aldatzeko erresistentzia handiagoa jartzen badu. Fisikako bi erabilera nagusienak dira inertzia mekanikoa eta inertzia termikoa. Inertzia mekanikoa neurtzen du zein zailtasuna jartzen duen gorputz batek bere HZU-ko edo geldiuneko egoera aldatzeko. Masa kantitatearen edo inertzia tentsioaren menpe dago. Inertzia termikoa neurtzen du zein zailtasuna jartzen duen gorputz batek bere tenperatura aldatzeko beste gorputzen kontaktuan egotean edo berotuta izatean. Inertzia termikoa bero ahalmenaren menpe dago." , "lang" : "eu" } , { "type" : "literal", "value" : "\u0627\u0644\u0639\u0637\u0627\u0644\u0629 \u0623\u0648 \u0627\u0644\u0642\u0635\u0648\u0631 \u0627\u0644\u0630\u0627\u062A\u064A \u0645\u0635\u0637\u0644\u062D \u0641\u064A\u0632\u064A\u0627\u0626\u064A \u064A\u0639\u0646\u064A \u0645\u0642\u0627\u0648\u0645\u0629 \u0627\u0644\u062C\u0633\u0645 \u0627\u0644\u0633\u0627\u0643\u0646 \u0644\u0644\u062D\u0631\u0643\u0629 \u0648\u0645\u0642\u0627\u0648\u0645\u0629 \u0627\u0644\u062C\u0633\u0645 \u0627\u0644\u0645\u062A\u062D\u0631\u0643 \u0628\u062A\u0632\u0648\u064A\u062F\u0647 \u0628\u0639\u062C\u0644\u0629 \u062B\u0627\u0628\u062A\u0629 \u0623\u0648 \u062A\u063A\u064A\u064A\u0631 \u0627\u062A\u062C\u0627\u0647\u0647\u060C \u0648\u0644\u0642\u062F \u0639\u0628\u0631 \u0646\u064A\u0648\u062A\u0646 \u0639\u0646 \u0647\u0630\u0627 \u0627\u0644\u0645\u0635\u0637\u0644\u062D \u0641\u064A \u0642\u0627\u0646\u0648\u0646\u0647 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\u0432\u0456\u0434\u043A\u0440\u0438\u0432 \u0456\u0442\u0430\u043B\u0456\u0439\u0441\u044C\u043A\u0438\u0439 \u0443\u0447\u0435\u043D\u0438\u0439 \u0413\u0430\u043B\u0456\u043B\u0435\u043E \u0413\u0430\u043B\u0456\u043B\u0435\u0439. \u041D\u0430 \u043E\u0441\u043D\u043E\u0432\u0456 \u0441\u0432\u043E\u0457\u0445 \u0434\u043E\u0441\u043B\u0456\u0434\u0456\u0432 \u0456 \u043C\u0456\u0440\u043A\u0443\u0432\u0430\u043D\u044C \u0432\u0456\u043D \u0441\u0442\u0432\u0435\u0440\u0434\u0436\u0443\u0432\u0430\u0432: \u044F\u043A\u0449\u043E \u043D\u0430 \u0442\u0456\u043B\u043E \u043D\u0435 \u0434\u0456\u044E\u0442\u044C \u0456\u043D\u0448\u0456 \u0442\u0456\u043B\u0430, \u0442\u043E \u0432\u043E\u043D\u043E \u0430\u0431\u043E \u043F\u0435\u0440\u0435\u0431\u0443\u0432\u0430\u0454 \u0443 \u0441\u043F\u043E\u043A\u043E\u0457, \u0430\u0431\u043E \u0440\u0443\u0445\u0430\u0454\u0442\u044C\u0441\u044F \u043F\u0440\u044F\u043C\u043E\u043B\u0456\u043D\u0456\u0439\u043D\u043E \u0456 \u0440\u0456\u0432\u043D\u043E\u043C\u0456\u0440\u043D\u043E. \u0423 \u0446\u044C\u043E\u043C\u0443 \u0440\u0430\u0437\u0456 \u043A\u0430\u0436\u0443\u0442\u044C, \u0449\u043E \u0442\u0456\u043B\u043E \u0440\u0443\u0445\u0430\u0454\u0442\u044C\u0441\u044F \u0437\u0430 \u0456\u043D\u0435\u0440\u0446\u0456\u0454\u044E. \u0417\u0434\u0430\u0442\u043D\u0456\u0441\u0442\u044C \u0442\u0456\u043B\u0430 \u043E\u043F\u0438\u0440\u0430\u0442\u0438\u0441\u044F \u0441\u043F\u0440\u043E\u0431\u0430\u043C \u0437\u043C\u0456\u043D\u0438\u0442\u0438 \u0439\u043E\u0433\u043E \u0448\u0432\u0438\u0434\u043A\u0456\u0441\u0442\u044C \u0430\u0431\u043E \u043D\u0430\u043F\u0440\u044F\u043C\u043E\u043A \u0440\u0443\u0445\u0443 \u043D\u0430\u0437\u0438\u0432\u0430\u0454\u0442\u044C\u0441\u044F \u0456\u043D\u0435\u0440\u0442\u043D\u0456\u0441\u0442\u044C. \u0422\u0430\u043A\u043E\u0436 \u0442\u0435\u0440\u043C\u0456\u043D \u0432\u0438\u043A\u043E\u0440\u0438\u0441\u0442\u043E\u0432\u0443\u0454\u0442\u044C\u0441\u044F \u0432 \u0456\u043D\u0448\u0438\u0445 \u0433\u0430\u043B\u0443\u0437\u044F\u0445 \u043D\u0430\u0443\u043A\u0438. \u0417\u0430\u0437\u0432\u0438\u0447\u0430\u0439 \u0432\u0456\u043D \u0432\u0438\u043A\u043E\u0440\u0438\u0441\u0442\u043E\u0432\u0443\u0454\u0442\u044C\u0441\u044F \u0449\u043E\u0431 \u043F\u0456\u0434\u043A\u0440\u0435\u0441\u043B\u0438\u0442\u0438 \u043D\u0435\u043C\u0438\u0442\u0442\u0454\u0432\u0456\u0441\u0442\u044C \u0440\u0435\u0430\u043A\u0446\u0456\u0457 \u043D\u0430 \u0437\u043C\u0456\u043D\u0438, \u043D\u0430\u043F\u0440\u0438\u043A\u043B\u0430\u0434 \u0456\u043D\u0435\u0440\u0446\u0456\u044F \u0437\u043E\u0440\u0443." , "lang" : "uk" } , { "type" : "literal", "value" : "Traagheid (natuurkunde, in de klassieke mechanica) is de eigenschap van zware voorwerpen om de bewegingstoestand die ze hebben te behouden, dus stilstaande voorwerpen blijven stilstaan en bewegende voorwerpen blijven met constante snelheid rechtuit bewegen. Dit is het traagheidsprincipe, overeenkomend met het ervaringsfeit dat een voorwerp het traject gaat volgen van de minste actie. De bijbehorende beweging -zonder dat er een resulterende kracht op een voorwerp wordt uitgeoefend- heet een traagheidsbeweging. Anders gesteld: de totale impuls (de hoeveelheid beweging, massa maal snelheid) van een systeem kan niet veranderen, tenzij er een externe kracht op inwerkt, waardoor er arbeid wordt verricht die een verplaatsing of rotatie van het voorwerp tot gevolg heeft. Een ander woord voor traagheid is inertie. Om de traagheidsbeweging van een voorwerp te veranderen is een kracht nodig.Daarbij manifesteert traagheid zich als een optredende weerstand tegen die verandering.Traagheid is een aspect van de massa van een object. Ronddraaiende voorwerpen hebben de eigenschap dat ze hun \"hoeveelheid draaiing\" behouden, zie daarvoor \"Traagheidsmoment\"." , "lang" : "nl" } , { "type" : "literal", "value" : "Bezw\u0142adno\u015B\u0107 (inercja) \u2013 w\u0142a\u015Bciwo\u015B\u0107 wszystkich cia\u0142 materialnych o masie spoczynkowej wi\u0119kszej od zera, polegaj\u0105ca na tym, \u017Ce w inercjalnym uk\u0142adzie odniesienia, je\u015Bli na cia\u0142o nie dzia\u0142a si\u0142a lub dzia\u0142aj\u0105ce si\u0142y r\u00F3wnowa\u017C\u0105 si\u0119, to porusza si\u0119 ono ruchem jednostajnym lub pozostaje w spoczynku. Zmiana pr\u0119dko\u015Bci cia\u0142a wymaga dzia\u0142ania si\u0142y. Bezw\u0142adno\u015B\u0107 cia\u0142 postulowana jest przez zasad\u0119 bezw\u0142adno\u015Bci. Miar\u0105 bezw\u0142adno\u015Bci cia\u0142a jest jego masa, natomiast jej odpowiednikiem w ruchu obrotowym \u2013 moment bezw\u0142adno\u015Bci. Mierzaln\u0105 wielko\u015Bci\u0105 zwi\u0105zan\u0105 z bezw\u0142adno\u015Bci\u0105 cia\u0142 jest ich masa. Dok\u0142adna r\u00F3wno\u015B\u0107 tzw. masy bezw\u0142adnej (obecnej we wzorze F = m\u00B7a) i masy wa\u017Ckiej (wchodz\u0105cej w prawo grawitacji Newtona) zosta\u0142a potwierdzona w do\u015Bwiadczeniach Lor\u00E1nda E\u00F6tv\u00F6sa z niespotykan\u0105 wcze\u015Bniej dok\u0142adno\u015Bci\u0105. Sugeruje ona istnienie zwi\u0105zku pomi\u0119dzy oddzia\u0142ywaniami grawitacyjnymi a bezw\u0142adno\u015Bci\u0105, nie zosta\u0142 on jednak dotychczas wyja\u015Bniony. Jest on jednak wa\u017Cnym elementem konstrukcji og\u00F3lnej teorii wzgl\u0119dno\u015Bci Einsteina. Istnienie bezw\u0142adno\u015Bci, podobnie jak ca\u0142\u0105 mechanik\u0119 klasyczn\u0105, mo\u017Cna wyprowadzi\u0107 z zasady najmniejszego dzia\u0142ania. Nieznane s\u0105 ani \u017Ar\u00F3d\u0142a jej pochodzenia ani mechanizmy jej powstawania, wi\u0119kszo\u015B\u0107 fizyk\u00F3w przyjmuje bezw\u0142adno\u015B\u0107 jako cech\u0119 materii. W ramach fizyki podejmowano pr\u00F3by wyja\u015Bniania bezw\u0142adno\u015Bci postuluj\u0105c istnienie mechanizm\u00F3w oddzia\u0142ywania np. z reszt\u0105 wszech\u015Bwiata. Autorem takiej koncepcji bezw\u0142adno\u015Bci by\u0142 Ernst Mach. Pr\u00F3by wyja\u015Bnienia natury bezw\u0142adno\u015Bci podejmowa\u0142 r\u00F3wnie\u017C m.in. Albert Einstein, Dennis William Sciama, ,." , "lang" : "pl" } , { "type" : "literal", "value" : "In der Physik ist Tr\u00E4gheit, auch Beharrungsverm\u00F6gen, das Bestreben von physikalischen K\u00F6rpern, in ihrem Bewegungszustand zu verharren, solange keine \u00E4u\u00DFeren Kr\u00E4fte oder Drehmomente auf sie einwirken. Eine solche Bewegung wird Tr\u00E4gheitsbewegung genannt. Das einfachste Beispiel einer Tr\u00E4gheitsbewegung ist die Bewegung geradeaus mit konstanter Geschwindigkeit, auch geradlinig-gleichf\u00F6rmige Bewegung genannt. Ein anderes Beispiel ist die Rotation der Erde, die \u00FCber sehr lange Zeitr\u00E4ume fast unver\u00E4ndert ist. Die meisten Tr\u00E4gheitsbewegungen auf der Erde werden durch Reibung nach und nach verlangsamt, bis das Objekt zum Stillstand kommt. Vor dem Hintergrund dieser Beobachtung wurde in Europa lange Zeit die Bewegungstheorie von Aristoteles gelehrt, nach der f\u00FCr jeden K\u00F6rper die Ruhe der nat\u00FCrliche Zustand sei, den er von sich aus anstrebe. Nach Vorarbeiten anderer Gelehrter formulierte Isaac Newton das Tr\u00E4gheitsgesetz als einen der Grundpfeiler seiner Schrift Philosophiae Naturalis Principia Mathematica, welche grundlegend f\u00FCr die Physik wurde. Das Tr\u00E4gheitsgesetz ist auch als erstes Newtonsches Gesetz bekannt. Das Ma\u00DF f\u00FCr die Tr\u00E4gheit eines K\u00F6rpers \n* gegen\u00FCber Beschleunigungen seines Massenmittelpunktes (Translationsbewegung) ist seine Masse \n* gegen\u00FCber Drehbeschleunigung um den Massenmittelpunkt (Rotationsbewegung) ist sein Tr\u00E4gheitsmoment." , "lang" : "de" } , { "type" : "literal", "value" : "Setrva\u010Dnost je vlastnost hmotn\u00FDch t\u011Bles (t\u011Bles s hmotnost\u00ED), kter\u00E1 se sna\u017E\u00ED setrvat ve stavu p\u0159ed vn\u011Bj\u0161\u00EDm fyzik\u00E1ln\u00EDm p\u016Fsoben\u00EDm, tj. v p\u0159\u00EDpad\u011B, \u017Ee na t\u011Bleso nep\u016Fsob\u00ED \u017E\u00E1dn\u00E1 vn\u011Bj\u0161\u00ED s\u00EDla. Jin\u00FDmi slovy, jedn\u00E1 se o odpor t\u011Blesa v\u016F\u010Di zm\u011Bn\u011B jeho rychlosti. V mechanice m\u016F\u017Eeme setrva\u010Dnost popsat jako schopnost t\u011Blesa nem\u011Bnit sm\u011Br ani rychlost posuvn\u00E9ho pohybu v\u016F\u010Di inerci\u00E1ln\u00ED vzta\u017En\u00E9 soustav\u011B. Jsou-li p\u016Fsob\u00EDc\u00ED s\u00EDly v rovnov\u00E1ze (tj. vz\u00E1jemn\u011B se ru\u0161\u00ED) setrv\u00E1v\u00E1 t\u011Bleso v p\u016Fvodn\u00EDm stavu, tedy v klidu nebo v rovnom\u011Brn\u00E9m p\u0159\u00EDmo\u010Dar\u00E9m pohybu. M\u00EDrou setrva\u010Dnosti je (setrva\u010Dn\u00E1) hmotnost t\u011Blesa. Pojem setrva\u010Dnosti lze aplikovat i na ot\u00E1\u010Div\u00FD pohyb t\u011Bles a jejich rovnom\u011Brn\u00E9 ot\u00E1\u010Den\u00ED s konstantn\u00EDm sm\u011Brem osy ot\u00E1\u010Den\u00ED, jsou-li v rovnov\u00E1ze p\u016Fsob\u00EDc\u00ED s\u00EDly i jejich momenty. M\u00EDrou setrva\u010Dnosti je v takov\u00E9m p\u0159\u00EDpad\u011B moment setrva\u010Dnosti. Z uveden\u00FDch princip\u016F vypl\u00FDvaj\u00ED i d\u016Fsledky pro setrva\u010Dnost proud\u011Bn\u00ED tekutin a relativn\u00ED stabilitu jeho v\u00EDr\u016F. P\u0159\u00EDkladem jin\u00E9ho typu setrva\u010Dnosti je . Za setrva\u010Dnost m\u016F\u017Eeme, do ur\u010Dit\u00E9 m\u00EDry, pova\u017Eovat i pr\u016Fchod proudu (elektron je hmotn\u00E1 \u010D\u00E1stice) vinut\u00EDm induk\u010Dnosti po odpojen\u00ED/p\u0159ipojen\u00ED elektrick\u00E9ho zdroje. Mnoz\u00ED sem za\u0159ad\u00ED i \"setrva\u010Dnost lidsk\u00E9ho my\u0161len\u00ED\"." , "lang" : "cs" } , { "type" : "literal", "value" : "\u039C\u03B5 \u03C4\u03BF\u03BD \u03CC\u03C1\u03BF \u0391\u03B4\u03C1\u03AC\u03BD\u03B5\u03B9\u03B1, \u03C3\u03C4\u03B7 \u03A6\u03C5\u03C3\u03B9\u03BA\u03AE, \u03BF\u03BD\u03BF\u03BC\u03AC\u03B6\u03B5\u03C4\u03B1\u03B9 \u03B7 \u03C7\u03B1\u03C1\u03B1\u03BA\u03C4\u03B7\u03C1\u03B9\u03C3\u03C4\u03B9\u03BA\u03AE \u03B9\u03B4\u03B9\u03CC\u03C4\u03B7\u03C4\u03B1 \u03C4\u03C9\u03BD \u03C3\u03C9\u03BC\u03AC\u03C4\u03C9\u03BD \u03BD\u03B1 \u03B1\u03BD\u03C4\u03B9\u03C3\u03C4\u03AD\u03BA\u03BF\u03BD\u03C4\u03B1\u03B9 \u03C3\u03C4\u03B7\u03BD \u03BF\u03C0\u03BF\u03B9\u03B1\u03B4\u03AE\u03C0\u03BF\u03C4\u03B5 \u03BC\u03B5\u03C4\u03B1\u03B2\u03BF\u03BB\u03AE \u03C4\u03B7\u03C2 \u03BA\u03B9\u03BD\u03B7\u03C4\u03B9\u03BA\u03AE\u03C2 \u03C4\u03BF\u03C5\u03C2 \u03BA\u03B1\u03C4\u03AC\u03C3\u03C4\u03B1\u03C3\u03B7\u03C2. \u0391\u03C5\u03C4\u03CC \u03C3\u03C5\u03BD\u03B5\u03C0\u03AC\u03B3\u03B5\u03C4\u03B1\u03B9 \u03B4\u03CD\u03BF \u03B1\u03C1\u03C7\u03AD\u03C2: \n* \u038C\u03C4\u03B1\u03BD \u03BF\u03B9 \u03B4\u03C5\u03BD\u03AC\u03BC\u03B5\u03B9\u03C2 \u03C0\u03BF\u03C5 \u03B1\u03C3\u03BA\u03BF\u03CD\u03BD\u03C4\u03B1\u03B9 \u03C3\u03B5 \u03AD\u03BD\u03B1 \u03C3\u03CE\u03BC\u03B1 \u03B1\u03BB\u03BB\u03B7\u03BB\u03BF\u03B1\u03BD\u03B1\u03B9\u03C1\u03BF\u03CD\u03BD\u03C4\u03B1\u03B9, \u03C4\u03CC\u03C4\u03B5 \u03C4\u03BF \u03C3\u03CE\u03BC\u03B1 \u03B8\u03B1 \u03B5\u03BE\u03B1\u03BA\u03BF\u03BB\u03BF\u03C5\u03B8\u03B5\u03AF \u03BD\u03B1 \u03BA\u03B9\u03BD\u03B5\u03AF\u03C4\u03B1\u03B9 \u03BC\u03B5 \u03C4\u03B7\u03BD \u03C4\u03B1\u03C7\u03CD\u03C4\u03B7\u03C4\u03B1 \u03C4\u03B7\u03BD \u03BF\u03C0\u03BF\u03AF\u03B1 \u03AD\u03C7\u03B5\u03B9 \u03B1\u03C0\u03BF\u03BA\u03C4\u03AE\u03C3\u03B5\u03B9 \u03AE \u03B1\u03BD \u03B4\u03B5\u03BD \u03AD\u03C7\u03B5\u03B9 \u03C4\u03B1\u03C7\u03CD\u03C4\u03B7\u03C4\u03B1 \u03B8\u03B1 \u03C0\u03B1\u03C1\u03B1\u03BC\u03B5\u03AF\u03BD\u03B5\u03B9 \u03B1\u03BA\u03AF\u03BD\u03B7\u03C4\u03BF. \u0397 \u03C0\u03B1\u03C1\u03B1\u03C0\u03AC\u03BD\u03C9 \u03B1\u03C1\u03C7\u03AE \u03C4\u03B7\u03C2 \u03B1\u03B4\u03C1\u03AC\u03BD\u03B5\u03B9\u03B1\u03C2 \u03B4\u03B9\u03B1\u03C4\u03C5\u03C0\u03CE\u03B8\u03B7\u03BA\u03B5 \u03B1\u03C1\u03C7\u03B9\u03BA\u03AC \u03B1\u03C0\u03CC \u03C4\u03BF\u03BD \u0393\u03B1\u03BB\u03B9\u03BB\u03B1\u03AF\u03BF. \n* \u0391\u03BD \u03BF\u03B9 \u03AF\u03B4\u03B9\u03B5\u03C2 \u03B4\u03C5\u03BD\u03AC\u03BC\u03B5\u03B9\u03C2 \u03B1\u03C3\u03BA\u03B7\u03B8\u03BF\u03CD\u03BD \u03C3\u03B5 \u03B4\u03B9\u03B1\u03C6\u03BF\u03C1\u03B5\u03C4\u03B9\u03BA\u03AC \u03C3\u03CE\u03BC\u03B1\u03C4\u03B1, \u03C4\u03CC\u03C4\u03B5 \u03BF \u03C1\u03C5\u03B8\u03BC\u03CC\u03C2 \u03BC\u03B5\u03C4\u03B1\u03B2\u03BF\u03BB\u03AE\u03C2 \u03C4\u03B7\u03C2 \u03C4\u03B1\u03C7\u03CD\u03C4\u03B7\u03C4\u03AC\u03C2 \u03C4\u03BF\u03C5\u03C2 \u03B5\u03AF\u03BD\u03B1\u03B9 \u03B1\u03BD\u03C4\u03B9\u03C3\u03C4\u03C1\u03CC\u03C6\u03C9\u03C2 \u03B1\u03BD\u03AC\u03BB\u03BF\u03B3\u03BF\u03C2 \u03C4\u03B7\u03C2 \u03B1\u03B4\u03C1\u03AC\u03BD\u03B5\u03B9\u03AC\u03C2 \u03C4\u03BF\u03C5\u03C2. \u0391\u03BD \u03B1\u03C3\u03BA\u03B7\u03B8\u03BF\u03CD\u03BD \u03B4\u03C5\u03BD\u03AC\u03BC\u03B5\u03B9\u03C2 \u03C3\u03B5 \u03BA\u03AC\u03C0\u03BF\u03B9\u03BF \u03C3\u03CE\u03BC\u03B1 \u03BA\u03B1\u03B9 \u03B1\u03C5\u03C4\u03CC \u03B4\u03B5\u03BD \u03BC\u03B5\u03C4\u03B1\u03B2\u03AC\u03BB\u03B5\u03B9 \u03C4\u03B7\u03BD \u03BA\u03B9\u03BD\u03B7\u03C4\u03B9\u03BA\u03AE \u03C4\u03BF\u03C5 \u03BA\u03B1\u03C4\u03AC\u03C3\u03C4\u03B1\u03C3\u03B7 (\u03C0\u03B1\u03C1\u03B1\u03BC\u03B5\u03AF\u03BD\u03B5\u03B9 \u03B1\u03BA\u03AF\u03BD\u03B7\u03C4\u03BF \u03AE \u03B4\u03B9\u03B1\u03C4\u03B7\u03C1\u03B5\u03AF \u03C4\u03B7\u03BD \u03C0\u03BF\u03C1\u03B5\u03AF\u03B1 \u03C4\u03BF\u03C5), \u03C4\u03CC\u03C4\u03B5 \u03C3\u03B7\u03BC\u03B1\u03AF\u03BD\u03B5\u03B9 \u03CC\u03C4\u03B9 \u03C5\u03C0\u03AC\u03C1\u03C7\u03BF\u03C5\u03BD \u03AC\u03BB\u03BB\u03B5\u03C2 \u03B5\u03BE\u03C9\u03C4\u03B5\u03C1\u03B9\u03BA\u03AD\u03C2 \u03B4\u03C5\u03BD\u03AC\u03BC\u03B5\u03B9\u03C2 \u03C0\u03BF\u03C5 \u03B1\u03BD\u03C4\u03B9\u03C3\u03C4\u03AD\u03BA\u03BF\u03BD\u03C4\u03B1\u03B9 \u03C3\u03C4\u03B7 \u03BC\u03B5\u03C4\u03B1\u03B2\u03BF\u03BB\u03AE, \u03C3\u03C5\u03BD\u03AE\u03B8\u03C9\u03C2 \u03B5\u03AF\u03BD\u03B1\u03B9 \u03C3\u03C4\u03B1\u03C4\u03B9\u03BA\u03AD\u03C2 \u03C4\u03C1\u03B9\u03B2\u03AD\u03C2. \u0397 \u03B1\u03B4\u03C1\u03AC\u03BD\u03B5\u03B9\u03B1 \u03B5\u03AF\u03BD\u03B1\u03B9 \u03B3\u03B5\u03BD\u03B9\u03BA\u03AC \u03BC\u03AF\u03B1 \u03C0\u03B9\u03BF \u03B5\u03BB\u03B5\u03CD\u03B8\u03B5\u03C1\u03B7 \u03AD\u03BD\u03BD\u03BF\u03B9\u03B1 \u03C3\u03C4\u03B7 \u03C6\u03C5\u03C3\u03B9\u03BA\u03AE (\u03C3\u03B5 \u03C3\u03C7\u03AD\u03C3\u03B7 \u03BC\u03B5 \u03C4\u03B7 \u03BC\u03AC\u03B6\u03B1, \u03C4\u03B7\u03BD \u03C4\u03B1\u03C7\u03CD\u03C4\u03B7\u03C4\u03B1 \u03BA\u03B1\u03B9 \u03AC\u03BB\u03BB\u03B1 \u03BC\u03B5\u03B3\u03AD\u03B8\u03B7) \u03BA\u03B1\u03B9 \u03B4\u03B5\u03BD \u03C5\u03C0\u03AC\u03C1\u03C7\u03B5\u03B9 \u03BA\u03BF\u03B9\u03BD\u03CC\u03C2 \u03B1\u03C0\u03BF\u03B4\u03B5\u03BA\u03C4\u03CC\u03C2 \u03BC\u03B1\u03B8\u03B7\u03BC\u03B1\u03C4\u03B9\u03BA\u03CC\u03C2 \u03C6\u03BF\u03C1\u03BC\u03B1\u03BB\u03B9\u03C3\u03BC\u03CC\u03C2 \u03B3\u03B9\u03B1 \u03B1\u03C5\u03C4\u03AE\u03BD. \u03A5\u03C0\u03AC\u03C1\u03C7\u03BF\u03C5\u03BD \u03B4\u03CD\u03BF \u03B5\u03AF\u03B4\u03B7 \u03BA\u03B9\u03BD\u03AE\u03C3\u03B5\u03C9\u03BD (\u03BC\u03B5\u03C4\u03B1\u03C6\u03BF\u03C1\u03B9\u03BA\u03AE \u03BA\u03B1\u03B9 \u03C0\u03B5\u03C1\u03B9\u03C3\u03C4\u03C1\u03BF\u03C6\u03B9\u03BA\u03AE), \u03AC\u03C1\u03B1 \u03BA\u03B1\u03B9 \u03B4\u03CD\u03BF \u03AD\u03BD\u03BD\u03BF\u03B9\u03B5\u03C2 \u03C4\u03B7\u03C2 \u03B1\u03B4\u03C1\u03AC\u03BD\u03B5\u03B9\u03B1\u03C2:" , "lang" : "el" } , { "type" : "literal", "value" : "Tr\u00F6ghet definieras inom fysiken som motst\u00E5nd mot r\u00F6relsef\u00F6r\u00E4ndring. Begreppets inneb\u00F6rd har utvecklats i takt med naturvetenskapens landvinningar, men dess orsaker \u00E4r fortfarande ok\u00E4nda. Tr\u00F6ghet \u00E4r en kortform f\u00F6r \"tr\u00F6ghetsprincipen\" som den beskrevs av Isaac Newton i hans f\u00F6rsta r\u00F6relselag. I vanligt spr\u00E5kbruk anv\u00E4nds termen \"tr\u00F6ghet\" ocks\u00E5 f\u00F6r att kvalitativt h\u00E4nvisa till ett f\u00F6rem\u00E5ls \"ben\u00E4genhet att motst\u00E5 hastighets\u00E4ndringar\", vilken best\u00E4ms av dess massa." , "lang" : "sv" } , { "type" : "literal", "value" : "A in\u00E9rcia \u00E9 uma propriedade geral da mat\u00E9ria (e segundo a Relatividade, tamb\u00E9m da energia). Considere um corpo n\u00E3o submetido \u00E0 a\u00E7\u00E3o de for\u00E7as ou submetido a um conjunto de for\u00E7as de resultante nula; nesta condi\u00E7\u00E3o esse corpo n\u00E3o sofre varia\u00E7\u00E3o de velocidade. Isto significa que, se est\u00E1 parado, permanece parado, e se est\u00E1 em movimento, permanece em movimento em linha reta e a sua velocidade se mant\u00E9m constante. Tal princ\u00EDpio, formulado pela primeira vez por Galileu e, posteriormente, confirmado por Newton, \u00E9 conhecido como primeiro princ\u00EDpio da Din\u00E2mica (1\u00AA lei de Newton) ou princ\u00EDpio da In\u00E9rcia. O princ\u00EDpio da in\u00E9rcia pode ser observado no movimento de um \u00F4nibus. Quando o \u00F4nibus \"arranca\" a partir do repouso, os passageiros tendem a deslocar-se para tr\u00E1s. Da mesma forma, quando o \u00F4nibus j\u00E1 em movimento freia (trava em Portugal), os passageiros deslocam-se para a frente, tendendo a continuar com a velocidade que possu\u00EDam. A in\u00E9rcia refere-se \u00E0 resist\u00EAncia que um corpo oferece \u00E0 altera\u00E7\u00E3o do seu estado de repouso ou de movimento Varia de corpo para corpo e depende da massa dos corpos: \n* Corpos com massa elevada possuem uma maior in\u00E9rcia; \n* Corpos com massa pequena possuem uma menor in\u00E9rcia. O conceito de in\u00E9rcia teve um importante precursor na Idade M\u00E9dia, com a \"teoria do \" do fil\u00F3sofo Jean Buridan. Ou seja, \u00E9 a resist\u00EAncia que todos os corpos materiais op\u00F5em \u00E0 modifica\u00E7\u00E3o de seu estado de movimento (ou de aus\u00EAncia de movimento)." , "lang" : "pt" } , { "type" : "literal", "value" : "En f\u00EDsica, la in\u00E8rcia \u00E9s la dificultat o resist\u00E8ncia amb la qual els cossos s'oposen a un canvi d'estat pel que fa al seu moviment. \u00C9s a dir, un cos en rep\u00F2s tendeix a romandre en rep\u00F2s, i un cos que es mou amb una velocitat uniforme tendeix a seguir en moviment, segons la primera llei de Newton. La in\u00E8rcia explica per qu\u00E8, per exemple, una nau espacial se segueix movent indefinidament encara que se n'aturin els motors, ja que, a l'espai, el fregament que acabaria per aturar-la \u00E9s zero. En canvi, un cotxe que no s'accelera s'acaba aturant a causa de la resist\u00E8ncia de l'aire i al fregament de les rodes contra la carretera. A la f\u00EDsica, es diu que un sistema t\u00E9 massa inercial quan resulta m\u00E9s dif\u00EDcil aconseguir un canvi en el seu estat f\u00EDsic. Els dos usos m\u00E9s freq\u00FCents en f\u00EDsica s\u00F3n la in\u00E8rcia mec\u00E0nica i la in\u00E8rcia t\u00E8rmica. La in\u00E8rcia mec\u00E0nica \u00E9s una mesura de dificultat per a canviar l'estat de moviment o rep\u00F2s d'un cos. La in\u00E8rcia mec\u00E0nica dep\u00E8n de la quantitat de massa i tensor d'in\u00E8rcia. La in\u00E8rcia t\u00E8rmica mesura la dificultat amb la qual un cos canvia la seva temperatura en estar en contacte amb altres cossos o ser escalfat. Les anomenades forces d'in\u00E8rcia s\u00F3n forces fict\u00EDcies o aparents que un observador percep en un sistema de refer\u00E8ncia no inercial. La massa inercial \u00E9s una mesura de la resist\u00E8ncia d'una massa al canvi de velocitat en relaci\u00F3 amb un sistema de refer\u00E8ncia inercial. En f\u00EDsica cl\u00E0ssica la massa inercial de part\u00EDcules puntuals es defineix per mitj\u00E0 de la seg\u00FCent equaci\u00F3, on la part\u00EDcula es pren com la unitat (m1 =1): On mi \u00E9s la massa inercial de la part\u00EDcula 'i', i ai1 \u00E9s l'acceleraci\u00F3 inicial de la part\u00EDcula 'i', en la direcci\u00F3 de la part\u00EDcula 'i' cap a la part\u00EDcula 1, en un volum ocupat nom\u00E9s per part\u00EDcules 'i' i 1, on les dues part\u00EDcules estan inicialment en rep\u00F2s i a una dist\u00E0ncia unitat. No hi ha forces externes per\u00F2 les part\u00EDcules exerceixen for\u00E7a les unes amb les altres." , "lang" : "ca" } , { "type" : "literal", "value" : "En physique, l'inertie d'un corps, dans un r\u00E9f\u00E9rentiel galil\u00E9en (dit inertiel), est sa tendance \u00E0 conserver sa vitesse : en l'absence d'influence ext\u00E9rieure, tout corps ponctuel perdure dans un mouvement rectiligne uniforme. L'inertie est aussi appel\u00E9e principe d'inertie, ou loi d'inertie, et, depuis Newton, premi\u00E8re loi de Newton. La loi d'inertie exprime le fait que si la vitesse du corps ponctuel par rapport au rep\u00E8re galil\u00E9en est constante, \u00AB la somme des forces s'exer\u00E7ant sur le corps est nulle \u00BB. La notion d'inertie est encore consid\u00E9r\u00E9e comme la norme en physique classique. La quantification de l'inertie est faite par la deuxi\u00E8me loi de Newton, ou principe fondamental de la dynamique : l'inertie \u00E9tant fonction de la masse inerte du corps, plus celle-ci est grande, plus la force requise pour modifier son mouvement sera importante. Si le corps est observ\u00E9 \u00E0 partir d'un r\u00E9f\u00E9rentiel non inertiel, une force d'inertie a tendance \u00E0 faire passer le corps de l'immobilit\u00E9 au mouvement et \u00E0 \u00E9loigner le mouvement d'un trajet rectiligne uniforme. C'est une force apparente, ou pseudo-force, qui r\u00E9sulte directement de l'inertie du corps dans un r\u00E9f\u00E9rentiel inertiel par rapport auquel le r\u00E9f\u00E9rentiel non inertiel a un mouvement non lin\u00E9aire ; elle se d\u00E9duit des lois de Newton. Le moment d'inertie est l'\u00E9quivalent rotationnel de la masse inertielle, son existence et ses propri\u00E9t\u00E9s de physique classique se d\u00E9duisent de l'application des lois de Newton. Le moment d'inertie permet d'expliquer la stabilit\u00E9 du v\u00E9lo et de la toupie." , "lang" : "fr" } , { "type" : "literal", "value" : "\u5728\u7269\u7406\u5B78\u88E1\uFF0C\u6163\u6027\uFF08\u82F1\u8A9E\uFF1Ainertia\uFF09\u662F\u7269\u9AD4\u6297\u62D2\u5176\u904B\u52D5\u72C0\u614B\u88AB\u6539\u8B8A\u7684\u6027\u8CEA\u3002\u7269\u9AD4\u7684\u6163\u6027\u53EF\u4EE5\u7528\u5176\u8CEA\u91CF\u4F86\u8861\u91CF\uFF0C\u8CEA\u91CF\u8D8A\u5927\uFF0C\u6163\u6027\u4E5F\u8D8A\u5927\u3002\u827E\u85A9\u514B\u00B7\u725B\u9813\u5728\u9245\u8457\u300A\u81EA\u7136\u54F2\u5B78\u7684\u6578\u5B78\u539F\u7406\u300B\u88E1\u5B9A\u7FA9\u6163\u6027\u70BA\uFF1A \u6163\u6027\uFF0C\u6216\u7269\u8CEA\u56FA\u6709\u7684\u529B\uFF0C\u662F\u4E00\u7A2E\u6297\u62D2\u7684\u73FE\u8C61\uFF0C\u5B83\u5B58\u5728\u65BC\u6BCF\u4E00\u7269\u9AD4\u7576\u4E2D\uFF0C\u5927\u5C0F\u8207\u8A72\u7269\u9AD4\u76F8\u7576\uFF0C\u4E26\u76E1\u91CF\u4F7F\u5176\u4FDD\u6301\u73FE\u6709\u7684\u72C0\u614B\uFF0C\u4E0D\u8AD6\u662F\u975C\u6B62\u72C0\u614B\uFF0C\u6216\u662F\u7B49\u901F\u76F4\u7DDA\u904B\u52D5\u72C0\u614B\u3002 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\u041A\u043E\u043B\u0438\u0447\u0435\u0441\u0442\u0432\u0435\u043D\u043D\u043E \u0441\u043E\u043E\u0442\u043D\u043E\u0448\u0435\u043D\u0438\u0435 \u043C\u0435\u0436\u0434\u0443 \u0432\u043E\u0437\u0434\u0435\u0439\u0441\u0442\u0432\u0438\u0435\u043C \u043D\u0430 \u0442\u0435\u043B\u043E \u0438 \u0438\u0437\u043C\u0435\u043D\u0435\u043D\u0438\u0435\u043C \u0435\u0433\u043E \u0434\u0432\u0438\u0436\u0435\u043D\u0438\u044F \u0434\u0430\u0451\u0442\u0441\u044F \u0444\u043E\u0440\u043C\u0443\u043B\u043E\u0439 \u0432\u0442\u043E\u0440\u043E\u0433\u043E \u0437\u0430\u043A\u043E\u043D\u0430 \u041D\u044C\u044E\u0442\u043E\u043D\u0430: . \u0417\u0434\u0435\u0441\u044C \u2014 \u0441\u0438\u043B\u0430, \u0434\u0435\u0439\u0441\u0442\u0432\u0443\u044E\u0449\u0430\u044F \u043D\u0430 \u0442\u0435\u043B\u043E, \u2014 \u0438\u043D\u0435\u0440\u0442\u043D\u0430\u044F \u043C\u0430\u0441\u0441\u0430, \u2014 \u0441\u043A\u043E\u0440\u043E\u0441\u0442\u044C \u0442\u0435\u043B\u0430. \u041F\u043E\u043D\u044F\u0442\u0438\u0435 \u00AB\u0438\u043D\u0435\u0440\u0446\u0438\u044F\u00BB \u0441\u0438\u043D\u043E\u043D\u0438\u043C\u0438\u0447\u043D\u043E \u043E\u0434\u043D\u043E\u043C\u0443 \u0438\u0437 \u0437\u043D\u0430\u0447\u0435\u043D\u0438\u0439 \u043F\u043E\u043D\u044F\u0442\u0438\u044F \u0438\u043D\u0435\u0440\u0442\u043D\u043E\u0441\u0442\u044C (\u0434\u0440\u0443\u0433\u0438\u0435 \u0437\u043D\u0430\u0447\u0435\u043D\u0438\u044F \u043F\u043E\u0441\u043B\u0435\u0434\u043D\u0435\u0433\u043E \u043D\u0435 \u043E\u0442\u043D\u043E\u0441\u044F\u0442\u0441\u044F \u043A \u0444\u0438\u0437\u0438\u043A\u0435)." , "lang" : "ru" } , { "type" : "literal", "value" : "Air\u00ED r\u00E9ada a chuireann i gcoinne gluaisne. De r\u00E9ir ch\u00E9ad dl\u00ED gluaisne Newton, aon r\u00E9ad le mais at\u00E1 ar fos n\u00F3 ar luas tairiseach, n\u00ED m\u00F3r f\u00F3rsa glan a fheidhmi\u00FA air chun a staid a athr\u00FA, a luas a athr\u00FA, agus/n\u00F3 \u00E9 a luasgh\u00E9ar\u00FA. Nuair a th\u00E9ann mais an r\u00E9ada i m\u00E9id, is g\u00E1 an f\u00F3rsa a mh\u00E9ad\u00FA i gcomhr\u00E9ir leis an mais chun an toradh c\u00E9anna a fh\u00E1il. Prionsabal na t\u00E1imhe a thugtar ar an dl\u00ED seo. M\u00E1s gluaisne uilleach at\u00E1 i gceist, is g\u00E1 casmh\u00F3imint f\u00F3rsa\u00ED a imirt ar th\u00E1imhe r\u00E9ada chun an casadh uilleach a luasgh\u00E9ar\u00FA n\u00F3 a luasmhoilli\u00FA." , "lang" : "ga" } , { "type" : "literal", "value" : "Inertia is the idea that an object will continue its current motion until some force causes its speed or direction to change. The term is properly understood as shorthand for \"the principle of inertia\" as described by Newton in his first law of motion. After some other definitions, Newton states in his first law of motion: LAW I. Every object perseveres in its state of rest, or of uniform motion in a right line, unless it is compelled to change that state by forces impressed thereon. The word \"perseveres\" is a direct translation from Newton's Latin. Other, less forceful terms such as \"to continue\" or \"to remain\" are commonly found in modern textbooks. The modern use follows from some changes in Newton's original mechanics (as stated in the Principia) made by Euler, d'Alembert, and other Cartesians. The term inertia comes from the Latin word iners, meaning idle, sluggish. The term inertia may also refer to the resistance of any physical object to a change in its velocity. This includes changes to the object's speed or direction of motion. An aspect of this property is the tendency of objects to keep moving in a straight line at a constant speed when no forces act upon them. Inertia is one of the primary manifestations of mass, which is a quantitative property of physical systems. In his monumental Philosophi\u00E6 Naturalis Principia Mathematica, Isaac Newton defined inertia as a force: DEFINITION III. The vis insita, or innate force of matter, is a power of resisting by which every body, as much as in it lies, endeavours to persevere in its present state, whether it be of rest or of moving uniformly forward in a right line. The principle of inertia is one of the fundamental principles in classical physics. It is still used today to describe the motion of objects and how they are affected by the applied forces on them." , "lang" : "en" } , { "type" : "literal", "value" : "In fisica classica, in particolare in meccanica, l'inerzia di un corpo \u00E8 la propriet\u00E0 che determina la resistenza alle variazioni dello stato di moto ed \u00E8 quantificata dalla sua massa inerziale. L'inerzia \u00E8 descritta dal primo principio della dinamica, il principio di inerzia (o prima legge di Newton), che afferma che un corpo permane nel suo stato di quiete o di moto rettilineo uniforme a meno che non intervenga una forza esterna a modificare tale stato. Il concetto di inerzia \u00E8 correlato a diverse grandezze fisiche, come il momento di inerzia, che quantifica la resistenza alle accelerazioni angolari. Il termine \"inerzia\" viene utilizzato anche in senso pi\u00F9 generico in contesti non meccanici, dove significa resistenza alla variazione di una qualche grandezza nel tempo; ad esempio nell'ambito di considerazioni termodinamiche qualitative \u00E8 relativamente frequente parlare di \"inerzia termica\" intendendo con tale termine generico il calore specifico o la capacit\u00E0 termica di un corpo." , "lang" : "it" } , { "type" : "literal", "value" : "\uAD00\uC131(\u6163\u6027)\uC740 \uBB3C\uCCB4\uC5D0 \uC791\uC6A9\uD558\uB294 \uD798\uC758 \uCD1D\uD569\uC774 0\uC77C \uB54C, \uC6B4\uB3D9\uC758 \uC0C1\uD0DC\uB97C \uC720\uC9C0\uD558\uB824\uB294 \uACBD\uD5A5\uC744 \uB9D0\uD558\uBA70, \uC6B4\uB3D9\uC758 \uC0C1\uD0DC\uAC00 \uBCC0\uD560 \uB54C \uBB3C\uCCB4\uC758 \uC800\uD56D\uB825\uC774\uB2E4. \uC8FC\uB85C \uBC84\uC2A4 \uB4F1\uC774 \uCD9C\uBC1C\uD560 \uB54C \uC815\uC9C0\uD574 \uC788\uC73C\uB824\uB294 \uC2B9\uAC1D\uB4E4\uC774 \uB4A4\uB85C \uC3E0\uB9AC\uB294 \uD604\uC0C1, \uADF8\uB9AC\uACE0 \uAE09\uC815\uAC70\uD560 \uB54C \uACC4\uC18D \uC6B4\uB3D9\uD558\uB824\uB294 \uC2B9\uAC1D\uB4E4\uC774 \uC55E\uC73C\uB85C \uC3E0\uB9AC\uB294 \uD604\uC0C1\uC73C\uB85C \uC124\uBA85\uB41C\uB2E4. \uAD00\uC131\uC758 \uC6D0\uB9AC\uB294 \uBB3C\uCCB4\uC758 \uC6B4\uB3D9\uACFC \uC801\uC6A9\uB41C \uD798\uC5D0 \uC758\uD574 \uC601\uD5A5\uC744 \uBC1B\uC740 \uBB3C\uCCB4\uB97C \uAE30\uC220\uD558\uB294\uB370 \uC0AC\uC6A9\uB41C \uACE0\uC804 \uBB3C\uB9AC\uC758 \uAE30\uBCF8\uC801\uC778 \uC6D0\uB9AC\uC758 \uD558\uB098\uC774\uB2E4. \uAD00\uC131\uC758 \uC601\uBA85\uC778 \uC774\uB108\uD2F0\uC544(inertia)\uC758 \uC5B4\uC6D0\uC740 '\uAC8C\uC73C\uB974\uB2E4, \uC26C\uB2E4'\uB77C\uB294 \uB73B\uC744 \uAC00\uC9C4 \uB77C\uD2F4\uC5B4 'iners'\uC774\uB2E4. \uC544\uC774\uC791 \uB274\uD134\uC740 \uADF8\uC758 \uCC45 \uC790\uC5F0\uCCA0\uD559\uC758 \uC218\uD559\uC801 \uC6D0\uB9AC\uC5D0\uC11C \uAD00\uC131\uC744 \uC81C 1 \uBC95\uCE59\uC73C\uB85C \uC815\uC758\uD588\uB2E4. \uB274\uD134\uC758 \uC6B4\uB3D9\uBC95\uCE59\uC911 \uC81C 1\uBC95\uCE59\uC778 \"\uAD00\uC131\uC758 \uBC95\uCE59\"\uC5D0\uC11C \uB274\uD134\uC740 \uAD00\uC131\uC744 '\uC678\uBD80 \uD798\uC774 \uAC00\uD574\uC9C0\uC9C0 \uC54A\uC73C\uBA74 \uBB3C\uCCB4\uB294 \uC77C\uC815\uD55C \uC18D\uB3C4\uB85C \uC6C0\uC9C1\uC778\uB2E4'\uACE0 \uC815\uC758\uD588\uB2E4. \uD798\uC5D0 \uC758\uD574 \uC18D\uB825\uACFC \uBC29\uD5A5\uC774 \uBCC0\uD558\uAE30 \uC804\uAE4C\uC9C0 \uBB3C\uCCB4\uB294 \uD56D\uC0C1 \uAE30\uC874\uC758 \uC6B4\uB3D9\uC0C1\uD0DC\uB300\uB85C \uC6C0\uC9C1\uC774\uB824\uACE0 \uD55C\uB2E4\uB294 \uC758\uBBF8\uC774\uB2E4. \uC6C0\uC9C1\uC774\uC9C0 \uC54A\uB294 \uBB3C\uCCB4\uAC00 \uD798\uC774 \uC791\uC6A9\uD558\uAE30 \uC804\uAE4C\uC9C0 \uC815\uC9C0\uC0C1\uD0DC\uB85C \uC720\uC9C0\uB418\uB294 \uAC83\uB3C4 \uD3EC\uD568\uD55C\uB2E4. \uC9C0\uAD6C\uC0C1\uC5D0\uC120 \uB9C8\uCC30\uB825, \uACF5\uAE30\uC758 \uC800\uD56D, \uC911\uB825 \uAC19\uC740 \uAC83\uC774 \uAD00\uC131\uC774 \uC720\uC9C0\uB418\uC9C0 \uBABB\uD558\uAC8C \uD55C\uB2E4. \uC774\uB7F0 \uD798\uB4E4\uC740 \uAD00\uC131\uC744 \uC0C1\uC1C4\uD558\uC5EC \uBB3C\uCCB4\uAC00 \uACB0\uAD6D\uC740 \uC815\uC9C0\uD558\uAC8C \uB9CC\uB4E0\uB2E4. \uADF8\uB798\uC11C \uC544\uB9AC\uC2A4\uD1A0\uD154\uB808\uC2A4 \uAC19\uC740 \uD559\uC790\uB4E4\uC740 \uBB3C\uCCB4\uB294 \uD798\uC774 \uAC00\uD574\uC9C8 \uB54C\uB9CC \uC6C0\uC9C1\uC774\uAC8C \uB418\uB294 \uAC83\uC774\uB77C\uACE0 \uBBFF\uC5C8\uB2E4. \uC9C8\uB7C9\uC740 \uAD00\uC131\uC758 \uC218\uCE58\uC801\uC778 \uCE21\uC815\uB7C9\uC774\uB2E4. \uC9C8\uB7C9\uC758 \uB2E8\uC704\uB294 SI \uB2E8\uC704\uACC4\uC5D0\uC11C \uD0AC\uB85C\uADF8\uB7A8(kg)\uC774\uB2E4. \uAD00\uC131(\uC9C8\uB7C9)\uC740 \uB274\uD134 \uC5ED\uD559\uC5D0\uC11C \uC678\uBD80\uD798\uC5D0 \uB300\uD574 \uC800\uD56D\uD558\uB294 \uC815\uB3C4\uB97C \uB9D0\uD55C\uB2E4. \uC815\uC9C0\uD55C \uBB3C\uCCB4\uC5D0 \uD798\uC774 \uAC00\uD574\uC9C0\uC9C0 \uC54A\uC73C\uBA74 \uADF8 \uBB3C\uCCB4\uB294 \uC815\uC9C0\uB97C \uACC4\uC18D\uD55C\uB2E4. \uC6B4\uB3D9\uD558\uB294 \uBB3C\uCCB4\uC5D0 \uD798\uC774 \uAC00\uD574\uC9C0\uC9C0 \uC54A\uC73C\uBA74 \uADF8 \uBB3C\uCCB4\uB294 \uC6B4\uB3D9 \uC0C1\uD0DC\uB97C \uBC14\uAFB8\uC9C0 \uC54A\uACE0 \uB4F1\uC18D \uC9C1\uC120\uC6B4\uB3D9\uC744 \uACC4\uC18D\uD55C\uB2E4. \uC774\uAC83\uC774 \uB274\uD134\uC758 \uC81C1\uBC95\uCE59\uC774\uB2E4." , "lang" : "ko" } , { "type" : "literal", "value" : "En f\u00EDsica, la inercia (del lat\u00EDn inert\u012Da) es la propiedad que tienen los cuerpos de permanecer en su estado de reposo o movimientos relativos. Dicho, de forma general, es la resistencia que opone la materia a que se modifique su estado de movimiento, incluyendo cambios en la velocidad o en la direcci\u00F3n del movimiento. Como consecuencia, un cuerpo conserva su estado de reposo relativo o movimiento rectil\u00EDneo uniforme relativo si no hay una fuerza que, actuando sobre \u00E9l, logre cambiar su estado de movimiento. En la naturaleza no existe el reposo absoluto, siempre toda la materia est\u00E1 en movimiento, por eso cuando se habla de reposo o Movimiento Rectil\u00EDneo Uniforme (MRU) se debe a\u00F1adir la palabra \"relativo\" (relativo a un sistema de referencia). El cuerpo est\u00E1 en reposo o en MRU solo con respecto de ese sistema de referencia. Cuando un cuerpo est\u00E1 en reposo relativo sobre la superficie de la Tierra, tambi\u00E9n est\u00E1 participando de los distintos movimientos que realiza el planeta si se considera un marco de referencia centrado en el Sol. As\u00ED mismo, est\u00E1 sometido a diferentes fuerzas como las gravitatorias de la Tierra, el Sol, La Luna y otros cuerpos, as\u00ED como la resistencia mec\u00E1nica que impide que se hunda en la tierra, o se deslice. Se puede decir que el cuerpo se encuentra en equilibrio sobre la superficie de la Tierra y, por lo tanto, en reposo relativo. Podr\u00EDamos decir que es la resistencia que opone un sistema de part\u00EDculas a modificar su estado din\u00E1mico. En f\u00EDsica se dice que un sistema tiene m\u00E1s inercia cuando resulta m\u00E1s dif\u00EDcil lograr un cambio en el estado f\u00EDsico del mismo. Los dos usos m\u00E1s frecuentes en f\u00EDsica son la inercia mec\u00E1nica y la inercia t\u00E9rmica. La primera de ellas aparece en mec\u00E1nica y es una medida de dificultad para cambiar el estado de movimiento o reposo de un cuerpo. La inercia mec\u00E1nica depende de la cantidad de masa y del tensor de inercia. La inercia t\u00E9rmica mide la dificultad con la que un cuerpo cambia su temperatura al estar en contacto con otros cuerpos o ser calentado. La inercia t\u00E9rmica depende de la capacidad calor\u00EDfica. Las llamadas fuerzas de inercia son fuerzas ficticias o aparentes que un observador percibe en un sistema de referencia no-inercial." , "lang" : "es" } , { "type" : "literal", "value" : "Inersia atau kelembaman adalah kecenderungan semua benda fisik untuk menolak perubahan terhadap keadaan geraknya. Secara numerik, ini diwakili oleh massa benda tersebut. Prinsip inersia adalah salah satu dasar dari fisika klasik yang digunakan untuk memberikan gerakan benda dan pengaruh gaya yang dikenakan terhadap benda itu. Kata inersia berasal dari kata bahasa Latin, \"iners\", yang berarti lembam, atau malas. Isaac Newton mendefinisikan inersia sebagai: \"vis insita\", atau gaya dalam materi, adalah daya untuk menahan, yang dengannya setiap benda berusaha untuk mempertahankan keadaannya saat itu, apakah diam, atau bergerak beraturan ke depan dalam garis lurus. Dalam pemakaian umum orang juga dapat menggunakan istilah \"inersia\" untuk mengacu kepada \"jumlah hambatan terhadap perubahan kecepatan\" (yang dikuantifikasi sebagai massa), atau kadang-kadang juga terhadap momentumnya, tergantung terhadap konteks. Istilah \"inersia\" lebih baik dipahami sebagai istilah yang lebih pendek untuk \"prinsip inersia\" seperti yang dideskripsikan oleh Newton dalam hukum I Newton. Hukum ini, dinyatakan dengan singkat, mengatakan bahwa sebuah benda yang tidak dikenakan oleh gaya luar (gaya netto sama dengan nol) bergerak dengan kecepatan tetap. Dalam kata-kata yang lebih sederhana, suatu benda akan terus bergerak pada kecepatannya saat ini tanpa berubah arah, hingga ada gaya yang menyebabkannya mengubah kecepatan atau arahnya. Ini juga termasuk benda yang tidak bergerak (kecepatan = nol), yang akan tetap dalam keadaan diam sampai ada gaya yang menyebabkannya bergerak." , "lang" : "in" } , { "type" : "literal", "value" : "\u6163\u6027\uFF08\u304B\u3093\u305B\u3044\u3001\u82F1: inertia\uFF09\u3068\u306F\u3001\u3042\u308B\u7269\u4F53\u304C\u5916\u529B\u3092\u53D7\u3051\u306A\u3044\u3068\u304D\u3001\u305D\u306E\u7269\u4F53\u306E\u904B\u52D5\u72B6\u614B\u306F\u6163\u6027\u7CFB\u306B\u5BFE\u3057\u3066\u5909\u308F\u3089\u306A\u3044\u3068\u3044\u3046\u6027\u8CEA\u3092\u8868\u3059\u3002\u60F0\u6027\u3068\u3082\u3044\u3046\u3002 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  NODES
Idea 3
idea 3
INTERN 2
Project 2
todo 1