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Engineering Systems in Motion: Dynamics of Particles and Bodies in 2D Motion · LearnSpace
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Engineering Systems in Motion: Dynamics of Particles and Bodies in 2D Motion

Курс от Georgia Institute of Technology
Уровень не указан≈ 23.3 чАнглийский
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О курсе

This course is an introduction to the study of bodies in motion as applied to engineering systems and structures. We will study the dynamics of particle motion and bodies in rigid planar (2D) motion. This will consist of both the kinematics and kinetics of motion. Kinematics deals with the geometrical aspects of motion describing position, velocity, and acceleration, all as a function of time. Kinetics is the study of forces acting on these bodies and how it affects their motion. --------------------------- Recommended Background: To be successful in the course you will need to have mastered basic engineering mechanics concepts and to have successfully completed my courses en titled an “Introduction to Engineering Mechanics” and “Applications in Engineering Mechanics.” We will apply many of the engineering fundamentals learned in those classes and you will need those skills before attempting this course. --------------------------- Suggested Readings: While no specific textbook is required, this course is designed to be compatible with any standard engineering dynamics textbook. You will find a book like this useful as a reference and for completing additional practice problems to enhance your learning of the material. --------------------------- The copyright of all content and materials in this course are owned by either the Georgia Tech Research Corporation or Dr. Wayne Whiteman. By participating in the course or using the content or materials, whether in whole or in part, you agree that you may download and use any content and/or material in this course for your own personal, non-commercial use only in a manner consistent with a student of any academic course. Any other use of the content and materials, including use by other academic universities or entities, is prohibited without express written permission of the Georgia Tech Research Corporation. Interested parties may contact Dr. Wayne Whiteman directly for information regarding the procedure to obtain a non-exclusive license.

Навыки, которые вы освоите

MechanicsEngineering CalculationsEngineering AnalysisMathematical ModelingTorque (Physics)PhysicsEngineeringIntegral CalculusDerivativesApplied MathematicsSystems EngineeringMechanical EngineeringCalculus

Программа курса

7 модулей · 134 учебных материалов

01Course Introduction; Particle Kinematics; Particle Kinetics – Newton’s Laws and Euler’s Laws; Motion of Particles and Mass Centers of Bodies26 материалов

Course Introduction; Particle Kinematics; Particle Kinetics – Newton’s Laws and Euler’s Laws; Motion of Particles and Mass Centers of Bodies

SyllabusЧтениеConsent FormЧтениеModule 1: Course IntroductionВидеоPdf Version of Module 1: Course Introduction LectureЧтение

Учитесь у экспертов

Dr. Wayne Whiteman, PE

Senior Academic Professional

Engineering Systems in Motion: Dynamics of Particles and Bodies in 2D Motion
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≈ 23.3 ч

7 модулей

Язык: Английский

Субтитры: Арабский, Французский, Бенгальский, Украинский, Китайский (Китай), Греческий, Итальянский, Бразильский португальский, Вьетнамский, Нидерландский, Корейский, Немецкий, Пушту, Урду, Русский, Тайский, Индонезийский, Шведский, Турецкий, Азербайджанский, Испанский, Дари, Хинди, Японский, Казахский, Венгерский, Польский

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Get More from Georgia TechЧтение
Module 2: Particle Kinematics; Rectilinear MotionВидео
Pdf Version of Module 2: Particle Kinematics; Rectilinear Motion LectureЧтение
Module 3: Rectilinear Motion ExampleВидео
Pdf Version of Module 3: Rectilinear Motion Example LectureЧтение
Worksheet Solutions: Rectilinear Motion ExampleЧтение
Module 4: Rectangular Cartesian Coordinate System, Cylindrical Coordinate System, Tangential and Normal Coordinate System : Position and VelocityВидео
Pdf Version of Module 4: Rectangular Cartesian Coordinate System, Cylindrical Coordinate System, Tangential and Normal Coordinate System : Position and Velocity LectureЧтение
Worksheet Solutions: Tangential and Normal Coordinate System: Acceleration; Curvilinear Motion Example using Tangential and Normal CoordinatesЧтение
Module 5: Tangential and Normal Coordinate System: Acceleration; Curvilinear Motion Example using Tangential and Normal CoordinatesВидео
Pdf Version of Module 5: Tangential and Normal Coordinate System: Acceleration; Curvilinear Motion Example using Tangential and Normal Coordinates LectureЧтение
Module 6: Define Kinetics; Newton’s 2nd Law; Euler’s 1st Law; Locate Mass Center of Composite BodyВидео
Pdf Version of Module 6: Define Kinetics; Newton’s 2nd Law; Euler’s 1st Law; Locate Mass Center of Composite Body LectureЧтение
Worksheet Solutions: Define Kinetics; Newton’s 2nd Law; Euler’s 1st Law; Locate Mass Center of Composite BodyЧтение
Module 7: Solve for the Motion of the Mass Center of Bodies using Newton-Euler Equations IВидео
Pdf Version of Module 7: Solve for the Motion of the Mass Center of Bodies using Newton-Euler Equations I LectureЧтение
Module 8: Solve for the Motion of the Mass Center of Bodies using Newton-Euler Equations IIВидео
Pdf Version of Module 8: Solve for the Motion of the Mass Center of Bodies using Newton-Euler Equations II LectureЧтение
Worksheet Solutions: Solve for the Motion of the Mass Center of Bodies using Newton-Euler Equations IIЧтение

Quiz

Practice ProblemsЧтениеCourse Introduction; Particle Kinematics; Particle Kinetics – Newton’s Laws and Euler’s Laws; Motion of Particles and Mass Centers of BodiesЗаданиеSolution of Quiz 1Чтение
02Work-Energy Principle for Particles/Systems of Particles14 материалов

Work-Energy Principle for Particles/Systems of Particles

Module 9: Work and Kinetic Energy Principle for Particles/System of Particles; Work of a Linear SpringВидеоPdf Version of Module 9: Work and Kinetic Energy Principle for Particles/System of Particles; Work of a Linear Spring LectureЧтениеModule 10: Work Done by Gravity; Work Done by Friction; Solve Work-Energy Problems for Particles/System of ParticlesВидеоPdf Version of Module 10: Work Done by Gravity; Work Done by Friction; Solve Work-Energy Problems for Particles/System of Particles LectureЧтениеModule 11: Impulse-Momentum Relationship; Define ImpactВидеоPdf Version of Module 11: Impulse-Momentum Relationship; Define Impact LectureЧтениеModule 12: Define Coefficient of Restitution; Solve an Impact ProblemВидеоPdf Version of Module 12: Define Coefficient of Restitution; Solve an Impact Problem LectureЧтениеModule 13: Define Angular Momentum; Euler’s 2nd Law (The Moment Equation)ВидеоPdf Version of Module 13: Define Angular Momentum; Euler’s 2nd Law (The Moment Equation) LectureЧтениеEarn a Georgia Tech Badge/Certificate/CEUsЧтение

Quiz

Practice ProblemsЧтениеWork-Energy Principle for Particles/Systems of Particles; Impulse and Momentum; Impact; Conservation of Momentum; Euler’s 2nd Law – Moment of MomentumЗаданиеSolution of Quiz 2Чтение
03Planar (2D) Rigid Body Kinematics I18 материалов

Planar (2D) Rigid Body Kinematics I

Module 14: Define Rigid Body Kinematics; Identify three types of Planar Rigid Body Motion; Derive Relative Velocity EquationВидеоPdf Version of Module 14: Define Rigid Body Kinematics; Identify three types of Planar Rigid Body Motion; Derive Relative Velocity Equation LectureЧтениеModule 15: Solve a Relative Velocity problemВидеоPdf Version of Module 15: Solve a Relative Velocity problem LectureЧтениеWorksheet Solutions: Solve a Relative Velocity ProblemЧтениеModule 16: Define and Locate the Instantaneous Center of Zero Velocity (IC)ВидеоPdf Version of Module 16: Define and Locate the Instantaneous Center of Zero Velocity (IC) LectureЧтениеModule 17: Solve an Instantaneous Center of Zero Velocity (IC) ProblemВидеоPdf Version of Module 17: Solve an Instantaneous Center of Zero Velocity (IC) Problem LectureЧтениеWorksheet Solutions: Solve an Instantaneous Center of Zero Velocity (IC) ProblemЧтениеModule 18: Define Angular Acceleration; Derive the Relative Acceleration EquationВидеоPdf Version of Module 18: Define Angular Acceleration; Derive the Relative Acceleration Equation LectureЧтениеModule 19: Solve a Relative Acceleration ProblemВидеоPdf Version of Module 19: Solve a Relative Acceleration Problem LectureЧтениеWorksheet Solutions: Solve a Relative Acceleration ProblemЧтение

Quiz

Practice ProblemsЧтениеPlanar (2D) Rigid Body Kinematics: Relative Velocity Equation; Rotation about a Fixed Axis; Instantaneous Center of Zero Velocity; Relative Acceleration EquationЗаданиеSolution of Quiz 3Чтение
04Planar (2D) Rigid Body Kinematics II21 материалов

Planar (2D) Rigid Body Kinematics II

Module 20: Acceleration of a Wheel Rolling on a Fixed Straight SurfaceВидеоPdf Version of Module 20: Acceleration of a Wheel Rolling on a Fixed Straight Surface LectureЧтениеModule 21: Acceleration of a Wheel rolling on a Fixed Plane CurveВидеоPdf Version of Module 21: Acceleration of a Wheel rolling on a Fixed Plane Curve LectureЧтениеModule 22: Solve a Rolling Wheel ProblemВидеоPdf Version of Module 22: Solve a Rolling Wheel Problem LectureЧтениеModule 23: Explain the Velocity of the Same Point Relative to Two Different Reference Frames or Bodies; Derive the Derivative FormulaВидеоPdf Version of Module 23: Explain the Velocity of the Same Point Relative to Two Different Reference Frames or Bodies; Derive the Derivative Formula LectureЧтениеModule 24: Derive the Equation for the Velocity of the Same Point Relative to Two Different Reference Frames or Bodies in Planar MotionВидеоPdf Version of Module 24: Derive the Equation for the Velocity of the Same Point Relative to Two Different Reference Frames or Bodies in Planar Motion LectureЧтениеModule 25: Solve a Problem for the Velocity of the Same Point Relative to Two Different Frames or Bodies in Planar MotionВидеоPdf Version of Module 25: Solve a Problem for the Velocity of the Same Point Relative to Two Different Frames or Bodies in Planar Motion LectureЧтениеWorksheet Solutions: Solve a Problem for the Velocity of the Same Point Relative to Two Different Frames or Bodies in Planar MotionЧтениеModule 26: Derive the Equation for the Acceleration of the Same Point Relative to Two Different Reference Frames or Bodies in Planar MotionВидеоPdf Version of Module 26: Derive the Equation for the Acceleration of the Same Point Relative to Two Different Reference Frames or Bodies in Planar Motion LectureЧтениеModule 27: Solve for the Acceleration of the Same Point Relative to Two Different Reference Frames or Bodies in Planar MotionВидеоPdf Version of Module 27: Solve for the Acceleration of the Same Point Relative to Two Different Reference Frames or Bodies in Planar Motion LectureЧтениеWorksheet Solutions: Solve for the Acceleration of the Same Point Relative to Two Different Reference Frames or Bodies in Planar MotionЧтение

Quiz

Practice ProblemsЧтениеPlanar (2D) Rigid Body Kinematics: Relative Velocity Equation; Rotation about a Fixed Axis; Instantaneous Center of Zero Velocity; Relative Acceleration Equation IIЗаданиеSolution of Quiz 4Чтение
05Planar (2D) Rigid Body Kinetics I18 материалов

Planar (2D) Rigid Body Kinetics I

Module 28: Develop the Kinetic Equatoin for a Body Translating in 2D Planar MotionВидеоPdf Version of Module 28: Develop the Kinetic Equatoin for a Body Translating in 2D Planar Motion LectureЧтениеModule 29: Solve a Problem for a Body Translating in 2D Planar MotionВидеоPdf Version of Module 29: Solve a Problem for a Body Translating in 2D Planar Motion LectureЧтениеWorksheet Solutions: Solve a Problem for a Body Translating in 2D Planar MotionЧтениеModule 30: Derive Angular Momentum for a Rigid Body in 2D Planar Motion; Define Moments of Inertia and Products of InertiaВидеоPdf Version of Module 30: Derive Angular Momentum for a Rigid Body in 2D Planar Motion; Define Moments of Inertia and Products of Inertia LectureЧтениеModule 31: Explain and Determine Mass Moments of Inertia and Products of InertiaВидеоPdf Version of Module 31: Explain and Determine Mass Moments of Inertia and Products of Inertia LectureЧтениеWorksheet Solutions: Explain and Determine Mass Moments of Inertia and Products of InertiaЧтениеModule 32: Derive the Equations of Motion for a Rigid Body in 2D Planar MotionВидеоPdf Version of Module 32: Derive the Equations of Motion for a Rigid Body in 2D Planar Motion LectureЧтениеModule 33: Solve a Problem for Motion of a Rigid Body in 2D Planar MotionВидеоPdf Version of Module 33: Solve a Problem for Motion of a Rigid Body in 2D Planar Motion LectureЧтениеWorksheet Solutions: Solve a Problem for Motion of a Rigid Body in 2D Planar MotionЧтение

Quiz

Practice ProblemsЧтениеPlanar (2D) Rigid Body Kinetics: Translation; Moment of Momentum – Angular Momentum; Equations of Motion IЗаданиеSolution of Quiz 5Чтение
06Planar (2D) Rigid Body Kinetics II21 материалов

Planar (2D) Rigid Body Kinetics II

Module 34: Begin the Development of the Work-Energy Principle for Rigid Bodies in 2D Planar MotionВидеоPdf Version of Module 34: Begin the Development of the Work-Energy Principle for Rigid Bodies in 2D Planar Motion LectureЧтениеModule 35: Calculate the Kinetic Energy for Bodies in 2D Planar Motion; Radius of GyrationВидеоPdf Version of Module 35: Calculate the Kinetic Energy for Bodies in 2D Planar Motion; Radius of Gyration LectureЧтениеModule 36: Continue the Development of the Work-Energy Principle for Rigid Bodies in 2D Planar MotionВидеоPdf Version of Module 36: Continue the Development of the Work-Energy Principle for Rigid Bodies in 2D Planar Motion LectureЧтениеModule 37: Continue the Development of the Work-Energy Principle for Rigid Bodies in 2D Planar Motion; Calculate the Work Done by a Constant Force, by a Variable Force, and by GravityВидеоPdf Version of Module 37: Continue the Development of the Work-Energy Principle for Rigid Bodies in 2D Planar Motion; Calculate the Work Done by a Constant Force, by a Variable Force, and by Gravity LectureЧтениеModule 38: Continue the Development of the Work-Energy Principle for Rigid Bodies in 2D Planar MotionВидеоPdf Version of Module 38: Continue the Development of the Work-Energy Principle for Rigid Bodies in 2D Planar Motion LectureЧтениеModule 39: Solve a Work-Energy Problem for 2D Planar Rigid Body MotionВидеоPdf Version of Module 39: Solve a Work-Energy Problem for 2D Planar Rigid Body Motion LectureЧтениеModule 40: Continue to Solve a Work-Energy Problem for 2D Planar Rigid Body MotionВидеоPdf Version of Module 40: Continue to Solve a Work-Energy Problem for 2D Planar Rigid Body Motion LectureЧтениеModule 41: Continue to Solve a Work-Energy Problem for 2D Planar Rigid Body MotionВидеоPdf Version of Module 41: Continue to Solve a Work-Energy Problem for 2D Planar Rigid Body Motion LectureЧтениеModule 42: Continue to Solve a Work-Energy Problem for 2D Planar Rigid Body MotionВидеоPdf Version of Module 42: Continue to Solve a Work-Energy Problem for 2D Planar Rigid Body Motion LectureЧтениеWorksheet Solutions: Solve a Work-Energy Problem for 2D Planar Rigid Body MotionЧтение

Quiz

Planar (2D) Rigid Body Kinetics: Translation; Moment of Momentum – Angular Momentum; Equations of Motion IIЗаданиеSolution of Quiz 6Чтение
07Planar (2D) Rigid Body Kinetics III16 материалов

Planar (2D) Rigid Body Kinetics III

Module 43: Develop the Principle of Impulse-Momentum for Rigid Bodies in 2D Planar MotionВидеоPdf Version of Module 43: Develop the Principle of Impulse-Momentum for Rigid Bodies in 2D Planar Motion LectureЧтениеModule 44: Solve a Problem Using the Principle of impulse-Momentum for Rigid Bodies in 2D Planar MotionВидеоPdf Version of Module 44: Solve a Problem Using the Principle of impulse-Momentum for Rigid Bodies in 2D Planar Motion LectureЧтениеWorksheet Solutions: Solve a Problem Using the Principle of Impulse-Momentum for Rigid Bodies in 2D Planar MotionЧтениеModule 45: Principle of Conservation of Momentum for Rigid Bodies in 2D Planar MotionВидеоPdf Version of Module 45: Principle of Conservation of Momentum for Rigid Bodies in 2D Planar Motion LectureЧтениеModule 46: Principle of Impulse-Momentum Example; Center of PercussionВидеоPdf Version of Module 46: Principle of Impulse-Momentum Example; Center of Percussion LectureЧтениеWhere to go from here?Чтение

Course Conclusion

Module 47: Course ConclusionВидеоPdf Version of Module 47: Course Conclusion LectureЧтениеPractice problemsЧтение

Quiz

Practice ProblemsЧтениеPlanar (2D) Rigid Body Kinetics (continued): Impulse-Momentum Method; Conservation of Momentum. Course Conclusion.ЗаданиеSolution of Quiz 7Чтение