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The [course_title] is an application of the principles of dynamics to mechanisms and machine elements. Topics will include kinematic and dynamic analysis of linkages and cam mechanisms. This course aims to equip you with fundamental knowledge of dynamics of machines so that he can appreciate problems of dynamic force balance, transmissibility of forces, isolation of systems, vibrations, instrumentation, and standards. This course develops, at an appropriate level, the theoretical and practical methods used in the design of machine elements.
Assessment
This course does not involve any written exams. Students need to answer 5 assignment questions to complete the course, the answers will be in the form of written work in pdf or word. Students can write the answers in their own time. Each answer needs to be 200 words (1 Page). Once the answers are submitted, the tutor will check and assess the work.
Certification
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Course Credit: Open Culture
Course Curriculum
Module: 01 | |||
Module 1 – Lecture 1 – Rigid Body Motion | 00:34:00 | ||
Module 1 – Lecture 2 – Rigid Body Motion | 00:30:00 | ||
Module 1 – Lecture 3 – Dynamic Force Analysis of Mechanisms | 00:30:00 | ||
Module: 02 | |||
Module 2 – Lecture 1 -Space Motion of Rigid Bodies | 00:56:00 | ||
Module 2 – Lecture 2 – Inertia Tensor & Angular Momentum | 00:57:00 | ||
Module 2 – Lecture 3 – Euler’s Equation of Motion | 00:39:00 | ||
Module 2 – Lecture 4 – Gyroscopic Action in Machines | 00:44:00 | ||
Module: 03 | |||
Module 3 – Lecture 1 – Unbalance in Machines… | 00:56:00 | ||
Module 3 – Lecture 2 – Rotary Balancing… | 00:42:00 | ||
Module 3 – Lecture 3 – Balancing Machines… | 00:51:00 | ||
Module 3 – Lecture 4 – Field Balancing of Rotars | 00:36:00 | ||
Module: 04 | |||
Module 4 Lecture 1 Balancing of Single Slider Machines | 00:39:00 | ||
Module 4 Lecture 2 Single- Cylinder Engine Balancing | 00:37:00 | ||
Module 4 – Lecture 3 – In-Line Engine Balancing | 01:00:00 | ||
Module: 05 | |||
Module 5 – Lecture 1 – V & Radial Engine Balancing | 00:48:00 | ||
Module: 06 | |||
Module 6 – Lecture 1 – Turning Moment Diagram | 00:53:00 | ||
Module 6 – Lecture 2 – Flywheel Analysis | 00:51:00 | ||
Module: 07 | |||
Module 7 – Lecture 1 – Dynamics of Machines | 00:52:00 | ||
Module 7 – Lecture 2 – Dynamics of Machines | 00:59:00 | ||
Module 7 – Lecture 3 – Dynamics of Machines | 00:59:00 | ||
Module: 08 | |||
Module 8 – Lecture 1 – Dynamics of Machines | 01:03:00 | ||
Module 8 – Lecture 2 – Dynamics of Machines | 00:59:00 | ||
Module 8 – Lecture 3 – Dynamics of Machines | 00:52:00 | ||
Module: 09 | |||
Module 9 – Lecture 1 – Dynamics of Machines | 00:54:00 | ||
Module 9 – Lecture 2 – Dynamics of Machines | 01:04:00 | ||
Module: 10 | |||
Module 10 – Lecture 1 – Dynamics of Machines | 00:50:00 | ||
Module 10 – Lecture 2 – Dynamics of Machines | 00:57:00 | ||
Module: 11 | |||
Module 11 – Lecture 1 – Dynamics of Machines | 01:01:00 | ||
Module 11 – Lecture 2 – Rotating Vector Approach… | 00:58:00 | ||
Module 11 – Lecture 3 – Equivalent viscous damping… | 00:58:00 | ||
Module 11 – Lecture 4 – Dynamics of Machines | 00:56:00 | ||
Module: 12 | |||
Module 12 – Lecture 1 – Systems with two degree of freedom | 00:59:00 | ||
Module 12 – Lecture 2 – Tuned Vibration Absorber | 00:58:00 | ||
Module 12 – Lecture 3 – Design of Vibration Absorbers | 00:56:00 | ||
Module 12 -Lecture 4 -Flexibilty Matrix& Influence Coeff… | 00:58:00 | ||
Module 12 – Lecture 5 – Forced Vibration of multiple… | 01:00:00 | ||
Module 12 Lecture 6 Forced Vibration of Multiple degrees… | 00:48:00 | ||
Module: 13 | |||
Module 13 – Lecture 1 – Vibration of Continuous Systems | 00:56:00 | ||
Module 13 – Lecture 2 – Vibration of Continuous Systems | 00:53:00 | ||
Module 13 – Lecture 3 – Vibration of Beams | 00:58:00 | ||
Module 13 – Lecture 4 – Rayleigh’s method | 00:53:00 | ||
Module 13 – Lecture 5 – Rayleigh-Ritz Method | 00:49:00 | ||
Module: 14 | |||
Module 14 – Lecture 1 – Vibration Measurement | 01:03:00 | ||
Module 14 Lecture 2 Vibration Measuremen Types of Pickups | 00:50:00 | ||
Assessment | |||
Submit Your Assignment | 00:00:00 | ||
Certification | 00:00:00 |
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