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Dynamics of Machinery
3 students

Dynamics of Machinery

Understanding of Theory, Mathematical derivations and examples on Mechanical Vibration in Dynamics of Machinery
Last updated 1/2026
English

What you'll learn

  • Learn Free Damped Vibrations easily
  • Learn Forced Damped Vibrations easily
  • Learn Torsional Vibrations easily
  • Learn how to interprete the UNITS

Course content

4 sections47 lectures6h 11m total length
  • Introduction3:09
  • Lecture 1 Free Undamped Vibrations26:20
  • Lecture 2 Free Undamped Vibrations5:33
  • Lecture 3 Free Undamped Vibrations15:10
  • Lecture 4 Free Undamped Vibrations11:16
  • Lecture 5 Free Undamped Vibrations7:32
  • Lecture 6 Free Undamped Vibrations2:51
  • Lecture 7 Free Undamped Vibrations9:53
  • Lecture 8 Free Undamped Vibrations14:07

Requirements

  • Basic knowledge of Physics , Statics and Dynamics from Engineering Mechanics

Description

The FREE COURSE will include the introduction to the free damped vibration system.

The PAID COURSE will include the following in the future !

This comprehensive course on Mechanical Vibrations is designed for Mechanical Engineering students and professionals seeking to deepen their understanding of dynamic systems. It covers essential topics such as free damped vibrations, free undamped vibrations, forced damped vibrations, and torsional vibrations. Each section of the course is meticulously crafted to provide a solid foundation in the theory behind mechanical vibrations, offering detailed explanations of key concepts.


We will explore the physical significance of Mechanical vibrations in engineering systems and their real-world applications. Through step-by-step derivations of important formulas and equations, you will gain a deeper insight into the mathematical models that govern vibrational behavior. Additionally, the course includes solved examples that illustrate how to apply these models to practical engineering problems.

This course is structured to ensure a smooth learning curve, starting from the basic concepts and gradually progressing towards more advanced topics. We begin by discussing free undamped vibrations, where you’ll understand the fundamentals of natural frequency and how mechanical systems respond when no external forces or damping effects are present. Moving forward, we dive into free damped vibrations, highlighting how damping influences system behavior and its importance in real-world engineering applications to prevent excessive oscillations.


The course then shifts focus to forced damped vibrations, where we explore how external forces affect the vibrational response of systems, and how to analyze and control these effects. Finally, the section on torsional vibrations covers rotational systems and their unique vibrational characteristics, complete with detailed explanations and practical examples.


In addition to the theoretical content, numerous practical examples are solved step-by-step to bridge the gap between theory and real-world applications. You'll also learn how to interpret vibration data and make informed decisions in design and analysis.


By the end of the course, you will be able to confidently approach vibration-related problems and enhance your understanding of mechanical systems' dynamic behavior, making this course a valuable resource for both academic and industrial contexts.


Whether you're preparing for exams or looking to enhance your professional skills, this course equips you with the tools and knowledge necessary to solve complex vibration problems. By the end of the course, you'll have a solid understanding of both the theoretical and practical aspects of mechanical vibrations, making you more confident in addressing real-world engineering challenges.

Who this course is for:

  • Mechanical and Aeronautical Engineering students and Industrial professionals