Applied Mechanics (Dynamics)

Applied Mechanics (Dynamics) Bachelor of Engineering(BE) videos According to syllabus of Institute of Engineering(IoE), Tribhuvan University (TU)

Intermediate 0 (0 Review ) 19 Students enrolled
Last updated Sun, 12-Jun-2022 Nepali
What will I learn?
  • After the completion of this course, students will get the knowledge of Engineering Mechanics Dynamics so that they can understand the basics of kinematics for both particles and rigid bodies and their motion.

Curriculum for this course
104 Lessons 21h 0m
0. Marks Distribution
1 Lessons 5m
  • Syllabus and Marks Distribution 5 Minutes Free
  • 1. Introduction 17 Minutes Free
  • 2. Derivative of Vector Function 13 Minutes Free
  • 3. Rectangular Component of Velocity and Acceleration 7 Minutes Free
  • 4. Motion Relative to Frame in Translation 5 Minutes
  • 5. Relative Velocity and Acceleration 17 Minutes
  • 6. Normal and Tangential Component 27 Minutes
  • 8. Example no. 1 17 Minutes
  • 7. Radial and Transverse Component 14 Minutes
  • 10. Example no. 3 11 Minutes
  • 11. Example no. 4 12 Minutes
  • 12. Example no. 5 4 Minutes
  • 13. Example no. 6 9 Minutes
  • 14. Example no. 7 10 Minutes
  • 15. Example no. 8 12 Minutes
  • 1. Work Done by Force 18 Minutes
  • 2. Potential Energy of Particle 11 Minutes
  • 3. Kinetic Energy of Particle 7 Minutes
  • 4. Work Energy Principle 7 Minutes
  • 5. Power and Efficiency 4 Minutes
  • 6. Energy Conservation Principle 12 Minutes
  • 7. Principle of Impulse and Momentum 4 Minutes
  • 8. Impulsive Motion and Impact 12 Minutes
  • 9. Direct Central Impact-1 21 Minutes
  • 10. Oblique Central Impact 4 Minutes
  • 11. Example no. 1 12 Minutes
  • 12. Example no. 2 7 Minutes
  • 13. Example no. 3 17 Minutes
  • 14. Example no. 4 6 Minutes
  • 15. Example no. 5 8 Minutes
  • 16. Example no. 6 15 Minutes
  • 17. Example no. 7 9 Minutes
  • 18. Example no. 8 12 Minutes
  • 1. System of Particles and Newtons Law 21 Minutes
  • 2. Linear and Angular Momentum of System of Particles 9 Minutes
  • 3. Motion of Mass Center 11 Minutes
  • 4. K.E. of System of Particles 11 Minutes
  • 5. Work Energy Principle and Conservation of Energy 9 Minutes
  • 6. Principle of Impulse and Momeentum 5 Minutes
  • 7. Steady Stream of Particles 16 Minutes
  • 8. System of Variable Particles 11 Minutes
  • 9. Example no. 1 19 Minutes
  • 10. Example no. 2 15 Minutes
  • 11. Example no.3 12 Minutes
  • 12. Example no. 4 15 Minutes
  • 13. Example no. 5 9 Minutes
  • 1. Introduction 5 Minutes
  • 2. Translation 8 Minutes
  • 3. Rotation and General Plane Motion 13 Minutes
  • 4. Absolute and Relative Velocity in a Plane 7 Minutes
  • 9. General Motion 12 Minutes
  • 10. Example no. 1 27 Minutes
  • 11. Example no. 2 13 Minutes
  • 12. Example no. 3 10 Minutes
  • 13. Example no. 4 12 Minutes
  • 1. Equation of Motion 8 Minutes
  • 2. Angular Momentum of Rigid Body in Plane Motion 12 Minutes
  • 3. D'Alembert's Principle 5 Minutes
  • 4. Application of Rigid Body in the Plane 14 Minutes
  • 5. Constrained Motion 13 Minutes
  • 6. Example no. 1 16 Minutes
  • 7. Example no. 2 9 Minutes
  • 8. Example no. 3 20 Minutes
  • 1. Principle of Work and Energy 9 Minutes
  • 2. K.E. of Rigid Body 12 Minutes
  • 3. Conservative and Non-Conservative System 6 Minutes
  • 4. Work - Energy Application 10 Minutes
  • 5. Impulse Momentum for Rigid Bodies 9 Minutes
  • 6. Conservation of Linear and Angular Momentum 6 Minutes
  • 8. Example no. 1 7 Minutes
  • 9. Example no. 2 18 Minutes
  • 10. Example no. 3 15 Minutes
  • 11. Example no. 4 14 Minutes
  • 12. Example no. 5 10 Minutes
  • 2075 Ashwin
    • 1. Q no. 1 14 Minutes
    • 2. Q no. 2 7 Minutes
    • 3. Q no. 3 16 Minutes
    • 4. Q no. 4 16 Minutes
    • 5. Q no. 5 12 Minutes
    2075 Chaitra
    • 1. Q no. 1 9 Minutes
    • 2. Q no. 2 17 Minutes
    • 3. Q no. 3 4 Minutes
    • 4. Q no. 4 11 Minutes
    • 5. Q no. 5 14 Minutes
    • 6. Q no. 6 14 Minutes
    2076 Ashwin
    • 1. Q no. 1 17 Minutes
    • 2. Q no. 2 15 Minutes
    • 3. Q no. 3 12 Minutes
    • 4. Q no. 4 7 Minutes
    • 5. Q no. 5 12 Minutes
    • 6. Q no. 6 18 Minutes
    2076 Chaitra
    • 1. Q no. 1 14 Minutes
    • 2. Q no. 2 19 Minutes
    • 3. Q no. 3 26 Minutes
    • 4. Q no. 4 17 Minutes
    • 5. Q no. 5 16 Minutes
    • 6. Q no. 6 15 Minutes
    2078 Bhadra
    • 1. Q no 1 8 Minutes
    • 2. Q no. 2 16 Minutes
    • 3. Q no. 3 9 Minutes
    • 4. Q no 4 25 Minutes
    • 5. Q no. 5 15 Minutes
    • 6. Q no. 6 10 Minutes
    Requirements
    • Students are required to have basic knowledge of Physics and Mathematics.
    Description

    The videos herein are strictly based on syllabus of Institute of Engineering Tribhuvan University, Nepal promoting "e-Learning in Nepal" and are made with intention to provide guidance to the "Bachelor in Engineering(BE) appearing students", for securing good results. The course tries to cover all the lessons of Applied Mechanics(Dynamics)with most frequently asked questions in final exam of BE along with numerical solutions. We strongly believe that, viewers will be benefited from these videos and the thirst of curiosity of viewers will be quenched! Feedbacks and suggestion to improve are always welcome and highly appreciated!

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