Applied(or Engineering) Mechanics (Dynamics) @ 45 Days

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

Intermediate 5 (4 reviews ) 260 students_enrolled
last_updated Wed, 09-Oct-2024 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
108 lessons 22h 57m
Ch 1. Curvilinear motion of particles
15 lessons
  • 1. Introduction.mp4 00:17:15
  • 2. Derivative of Vector Function.mp4 00:13:13
  • 3. Rectangular Component of Velocity and Acceleration.mp4 00:07:40
  • 4. Motion Relative to Frame in Translation.mp4 00:05:42
  • 5. Relative Velocity and Acceleration.mp4 00:17:19
  • 6. Normal and Tangential Component.mp4 00:27:55
  • 7. Radial and Transverse Component.mp4 00:14:48
  • 8. Example no. 1.mp4 00:17:08
  • 9. Example no. 2.mp4 00:08:34
  • 10. Example no. 3.mp4 00:11:29
  • 11. Example no. 4.mp4 00:12:48
  • 12. Example no. 5.mp4 00:04:04
  • 13. Example no. 6.mp4 00:09:43
  • 14. Example no. 7.mp4 00:10:25
  • 15. Example no. 8.mp4 00:12:54
  • 1. Work Done by Force.mp4 00:18:51
  • 2. Potential Energy of Particle.mp4 00:11:34
  • 3. Kinetic Energy of Particle.mp4 00:07:19
  • 4. Work Energy Principle.mp4 00:07:00
  • 5. Power and Efficiency.mp4 00:04:10
  • 6. Energy Conservation Principle.mp4 00:12:01
  • 7. Principle of Impulse and Momentum.mp4 00:04:10
  • 8. Impulsive Motion and Impact.mp4 00:12:42
  • 9. Direct Central Impact-1.mp4 00:21:29
  • 10. Oblique Central Impact.mp4 00:04:40
  • 11. Example no. 1.mp4 00:12:32
  • 12. Example no. 2.mp4 00:07:06
  • 13. Example no. 3.mp4 00:17:47
  • 14. Example no. 4.mp4 00:06:22
  • 15. Example no. 5.mp4 00:08:53
  • 16. Example no. 6.mp4 00:15:44
  • 17. Example no. 7.mp4 00:09:44
  • 18. Example no. 8.mp4 00:12:55
  • 1. System of Particles and Newtons Law.mp4 00:21:34
  • 2. Linear and Angular Momentum of System of Particles.mp4 00:09:18
  • 3. Motion of Mass Center.mp4 00:11:30
  • 4. K.E. of System of Particles.mp4 00:11:28
  • 5. Work Energy Principle and Conservation of Energy.mp4 00:09:15
  • 6. Principle of Impulse and Momeentum.mp4 00:05:48
  • 7. Steady Stream of Particles.mp4 00:16:23
  • 8. System of Variable Particles.mp4 00:11:45
  • 9. Example no. 1.mp4 00:11:45
  • 10. Example no. 2.mp4 00:19:36
  • 11. Example no.3.mp4 00:12:14
  • 12. Example no. 4.mp4 00:15:27
  • 13. Example no. 5.mp4 00:09:48
  • 1. Introduction.mp4 00:05:20
  • 2. Translation.mp4 00:08:57
  • 3. Rotation and General Plane Motion.mp4 00:13:31
  • 4. Absolute and Relative Velocity in a Plane.mp4 00:07:41
  • 5. Instantaneous Center of Rotation.mp4 00:10:54
  • 6. Absolute and Relative Frame.mp4 00:05:59
  • 7. Coriolis Acceleration.mp4 00:21:03
  • 8. Motion About a Fixed Point.mp4 00:07:02
  • 9. General Motion.mp4 00:12:45
  • 10. Example no. 1.mp4 00:27:59
  • 11. Example no. 2.mp4 00:13:25
  • 12. Example no. 3.mp4 00:10:52
  • 13. Example no. 4.mp4 00:12:57
  • 1. Equation of Motion.mp4 00:08:53
  • 2. Angular Momentum of Rigid Body in Plane Motion.mp4 00:12:50
  • 3. D'Alembert's Principle.mp4 00:05:31
  • 4. Application of Rigid Body in the Plane.mp4 00:14:14
  • 5. Constrained Motion.mp4 00:13:35
  • 6. Example no. 1.mp4 00:16:43
  • 7. Example no. 2.mp4 00:09:24
  • 8. Example no. 3.mp4 00:20:49
  • 1. Principle of Work and Energy.mp4 00:09:29
  • 2. K.E. of Rigid Body.mp4 00:12:16
  • 3. Conservative and Non-Conservative System.mp4 00:06:23
  • 4. Work - Energy Application.mp4 00:10:19
  • 5. Impulse Momentum for Rigid Bodies.mp4 00:09:33
  • 6. Conservation of Linear and Angular Momentum.mp4 00:06:10
  • 7. Impulsive Motion and Eccentric Impact.mp4 00:25:17
  • 8. Example no. 1.mp4 00:07:15
  • 9. Example no. 2.mp4 00:18:27
  • 10. Example no. 3.mp4 00:15:46
  • 11. Example no. 4.mp4 00:14:54
  • 12. Example no. 5.mp4 00:10:18
  • 2075 Aswin|1. Q no. 1.mp4 00:14:58
  • 2075 Aswin|2. Q no. 2.mp4 00:07:02
  • 2075 Aswin|3. Q no. 3.mp4 00:16:45
  • 2075 Aswin|4. Q no. 4.mp4 00:16:21
  • 2075 Aswin|5. Q no. 5.mp4 00:12:12
  • 2075 Chaitra|1. Q no. 1.mp4 00:09:24
  • 2075 Chaitra|2. Q no. 2.mp4 00:17:43
  • 2075 Chaitra|3. Q no. 3.mp4 00:04:46
  • 2075 Chaitra|4. Q no. 4.mp4 00:11:04
  • 2075 Chaitra|5. Q no. 5.mp4 00:14:28
  • 2075 Chaitra|6. Q no. 6.mp4 00:14:52
  • 2076 Ashwin|1. Q no. 1.mp4 00:17:05
  • 2076 Ashwin|2. Q no. 2.mp4 00:15:06
  • 2076 Ashwin|3. Q no. 3.mp4 00:12:29
  • 2076 Ashwin|4. Q no. 4.mp4 00:07:02
  • 2076 Ashwin|5. Q no. 5.mp4 00:12:20
  • 2076 Ashwin|6. Q no. 6.mp4 00:18:25
  • 2076 Chaitra|1. Q no. 1.mp4 00:14:14
  • 2076 Chaitra|2. Q no. 2.mp4 00:19:36
  • 2076 Chaitra|3. Q no. 3.mp4 00:26:36
  • 2076 Chaitra|4. Q no. 4.mp4 00:17:31
  • 2076 Chaitra|5. Q no. 5.mp4 00:16:37
  • 2076 Chaitra|6. Q no. 6.mp4 00:15:44
  • 2078 Bhadra|1. Q no 1.mp4 00:08:23
  • 2078 Bhadra|2. Q no. 2.mp4 00:16:47
  • 2078 Bhadra|3. Q no. 3.mp4 00:09:59
  • 2078 Bhadra|4. Q no 4.mp4 00:25:45
  • 2078 Bhadra|5. Q no. 5.mp4 00:15:46
  • 2078 Bhadra|6. Q no. 6.mp4 00:10:16
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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Rs 999 Rs 1499
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includes:
  • 22+ Hours on_demand_videos
  • 108 lessons
  • 45 Days_subscription
  • Access_on_mobile_and_web

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