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The reciprocating motion of a non-offset piston connected to a rotating crank through a connecting rod (as would be found in internal combustion engines) can be expressed by equations of motion. This article shows how these equations of motion can be derived using calculus as functions of angle (angle domain) and of time (time domain).

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  • معادلات حركة المكبس (ar)
  • Piston motion equations (en)
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  • يمكن التعبير عن حركة المكابس الموصلة بعمود المرفق من خلال ذراع التوصيل كما يوجد في محركات الاحتراق الداخلي من خلال بعض المعادلات الرياضية ونناقش في هذه المقالة كيف تم استنتاج تلك المعادلات ومثال تصويري لها. (ar)
  • The reciprocating motion of a non-offset piston connected to a rotating crank through a connecting rod (as would be found in internal combustion engines) can be expressed by equations of motion. This article shows how these equations of motion can be derived using calculus as functions of angle (angle domain) and of time (time domain). (en)
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  • http://commons.wikimedia.org/wiki/Special:FilePath/Graph_of_Piston_Motion.png
  • http://commons.wikimedia.org/wiki/Special:FilePath/Piston_motion_geometry.png
  • http://commons.wikimedia.org/wiki/Special:FilePath/TRUE_piston3_ANI.gif
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  • يمكن التعبير عن حركة المكابس الموصلة بعمود المرفق من خلال ذراع التوصيل كما يوجد في محركات الاحتراق الداخلي من خلال بعض المعادلات الرياضية ونناقش في هذه المقالة كيف تم استنتاج تلك المعادلات ومثال تصويري لها. (ar)
  • The reciprocating motion of a non-offset piston connected to a rotating crank through a connecting rod (as would be found in internal combustion engines) can be expressed by equations of motion. This article shows how these equations of motion can be derived using calculus as functions of angle (angle domain) and of time (time domain). (en)
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