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Mechanics in Motion: From Newton to Propulsion

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Abdurrahman TEKIN

5:41:47

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  • 1. Introduction.mp4
    00:50
  • 1.1 1.pdf
  • 1. 1 Newtons Laws.mp4
    09:42
  • 2.1 2.pdf
  • 2. 2 Relationships between position, velocity, and acceleration.mp4
    18:54
  • 3.1 3.pdf
  • 3. 3 Motion With Constant Acceleration In A Straight Line.mp4
    23:34
  • 4.1 4.pdf
  • 4. 4 Forces And Moments Acting On A Bicycle.mp4
    09:41
  • 5.1 5.pdf
  • 5. 5 The Forces Acting On A Single-Person Boat.mp4
    08:22
  • 6.1 6.pdf
  • 6. 6 Hot Air Balloon Lift Forces.mp4
    05:23
  • 7.1 7.pdf
  • 7. 7 The Forces Acting On An Aircraft In Level Flight.mp4
    03:56
  • 8.1 8.pdf
  • 8. 8 Force Vectors And Their Components.mp4
    11:44
  • 9.1 9.pdf
  • 9. 9 Moments And Couples.mp4
    08:03
  • 10.1 10.pdf
  • 10. 10 The Stability Of Boats And The Principles Of Buoyancy.mp4
    11:30
  • 11.1 11.pdf
  • 11. 11 The Rotational And Translational Motion Of A Wheel.mp4
    05:01
  • 12.1 12.pdf
  • 12. 12 Bicycle Brakes And The Related Physics Concepts.mp4
    06:29
  • 13.1 13.pdf
  • 13. 13 Work, Energy, and Power.mp4
    16:47
  • 14.1 14.pdf
  • 14. 14 Work, Kinetic Energy, And Power PART 2.mp4
    21:09
  • 15.1 15.pdf
  • 15. 15 The Elastic Potential Energy Of Springs.mp4
    09:25
  • 16.1 16.pdf
  • 16. 16 Friction.mp4
    14:35
  • 17.1 17.pdf
  • 17. 17 Mechanics Of Bicycle Bearings.mp4
    13:59
  • 18.1 18.pdf
  • 18. 18 Lubrication.mp4
    10:18
  • 19.1 19.pdf
  • 19. 19 Rolling Resistance And Its Impact On Energy Dissipation In Wheel Systems.mp4
    05:55
  • 20.1 20.pdf
  • 20. 20 A Rigid Wheel Rolling On Soft Ground.mp4
    05:35
  • 21.1 21.pdf
  • 21. 21 Rolling Resistance And Air Resistance In Bicycles.mp4
    23:29
  • 22.1 22.pdf
  • 22. 22 Pressure In Fluids.mp4
    06:04
  • 23.1 23.pdf
  • 23. 23 Volume, Density, And Specific Gravity.mp4
    03:41
  • 24.1 24.pdf
  • 24. 24 Ideal Gases.mp4
    12:44
  • 25.1 25.pdf
  • 25. 25 Viscosity.mp4
    09:26
  • 26.1 26.pdf
  • 26. 26 Fluid Motion Around The Airfoil.mp4
    21:49
  • 27.1 27.pdf
  • 27. 27 Bernoullis Equation.mp4
    13:31
  • 28.1 28.pdf
  • 28. 28 Boundary Layers And Drag.mp4
    10:26
  • 29.1 29.pdf
  • 29. 29 Lift Coefficient (CL) And Drag Coefficient (CD).mp4
    11:38
  • 30.1 30.pdf
  • 30. 30 Propulsion.mp4
    08:07
  • Description


    Mastering Mechanics: Solving Real-World Problems to Understand Fundamental Equations

    What You'll Learn?


    • Newton's laws of motion
    • Kinematics and dynamics
    • Constant acceleration motion
    • Force analysis in various systems
    • Lift forces and buoyancy
    • Vector components and operations
    • Moments and couples in mechanics
    • Stability principles in floating objects
    • Rotational and translational motion
    • Physics of braking systems
    • Work, energy, and power concepts
    • Potential and kinetic energy
    • Spring mechanics
    • Friction and its effects
    • Bearing mechanics and lubrication
    • Rolling resistance and energy dissipation
    • Wheel-ground interaction
    • Air resistance in vehicles
    • Fluid mechanics basics
    • Properties of gases and liquids
    • Viscosity and fluid behavior
    • Aerodynamics and airfoil design
    • Bernoulli's principle and applications
    • Boundary layer theory and drag
    • Lift and drag coefficients
    • Propulsion systems and thrust generation

    Who is this for?


  • High School Students: Those studying advanced physics and preparing for college-level courses.
  • Undergraduate Students: Particularly those majoring in engineering, physics, or related fields.
  • Mechanical Engineering Students: Individuals focused on understanding the principles of mechanics and their applications.
  • Aerospace Engineering Students: Those interested in the forces and dynamics acting on aircraft and other flying objects.
  • STEM Educators: Teachers and instructors looking for comprehensive problem-based learning materials for their students.
  • Self-Learners: Anyone with a strong interest in mechanics and a desire to learn through practical problem-solving.
  • Professional Engineers: Engineers seeking to refresh their knowledge of fundamental mechanics concepts.
  • Sports Engineers: Professionals working on the mechanics of sports equipment like bicycles and boats.
  • Fluid Dynamics Specialists: Individuals interested in the behavior of fluids and their interaction with different objects.
  • Aerodynamics Researchers: Researchers focused on the study of forces acting on airfoils and aircraft.
  • What You Need to Know?


  • Basic Mathematics Skills
  • Fundamental Physics Knowledge
  • More details


    Description

    Embark on an exhilarating journey through the fundamental principles of mechanics with our innovative, problem-solving based course. This comprehensive program is designed to transform complex physical concepts into tangible, real-world applications, making mechanics not just understandable, but truly fascinating.


    From Newton's foundational laws to the intricacies of propulsion, this course covers a wide spectrum of mechanical principles. What sets this course apart is its unique approach - each topic is explored through practical, engaging problems that bring theory to life. You'll dive into the physics behind everyday objects and phenomena, from bicycles and boats to hot air balloons and aircraft, unraveling the mysteries of the physical world around you.


    Key Features:

    1. Practical Problem-Solving: Every concept is reinforced through carefully crafted problems, ensuring a deep, intuitive understanding of mechanical principles.


    2. Real-World Applications: Learn how mechanics governs everything from the stability of boats to the lift of aircraft wings, making abstract concepts concrete and relevant.


    3. Progressive Learning: The course is structured to build your knowledge systematically, starting with fundamental laws and progressing to complex systems and advanced concepts.


    4. Interdisciplinary Approach: Explore the interplay between different areas of physics, including dynamics, thermodynamics, and fluid mechanics.


    5. Emphasis on Energy and Forces: Gain a profound understanding of work, energy, and power, and how they manifest in various mechanical systems.


    6. Fluid Dynamics Focus: Delve into the fascinating world of fluid mechanics, from basic principles to advanced concepts like boundary layers and lift coefficients.


    Whether you're an aspiring engineer, a curious student, or simply someone fascinated by how things work, this course will equip you with a robust understanding of mechanics. By the end, you'll not only be able to solve complex mechanical problems but also view the world through the lens of a mechanist, appreciating the elegant physical laws that govern our universe.


    Join us in this exciting educational adventure, where each problem solved is a step towards mastering the art and science of mechanics. Get ready to transform your understanding of the physical world and unlock the power to analyze, predict, and explain mechanical phenomena with confidence and clarity.

    Who this course is for:

    • High School Students: Those studying advanced physics and preparing for college-level courses.
    • Undergraduate Students: Particularly those majoring in engineering, physics, or related fields.
    • Mechanical Engineering Students: Individuals focused on understanding the principles of mechanics and their applications.
    • Aerospace Engineering Students: Those interested in the forces and dynamics acting on aircraft and other flying objects.
    • STEM Educators: Teachers and instructors looking for comprehensive problem-based learning materials for their students.
    • Self-Learners: Anyone with a strong interest in mechanics and a desire to learn through practical problem-solving.
    • Professional Engineers: Engineers seeking to refresh their knowledge of fundamental mechanics concepts.
    • Sports Engineers: Professionals working on the mechanics of sports equipment like bicycles and boats.
    • Fluid Dynamics Specialists: Individuals interested in the behavior of fluids and their interaction with different objects.
    • Aerodynamics Researchers: Researchers focused on the study of forces acting on airfoils and aircraft.

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    Abdurrahman TEKIN
    Abdurrahman TEKIN
    Instructor's Courses
    My name is Abdurrahman Tekin and I am a Ph.D. student in the field of aircraft design. In addition to my research, I also have extensive experience in teaching. I have been teaching for the last 4 years and have had the privilege of working with students from 161 different countries.As a teacher, I specialize in teaching Chinese, English, and Python. I have a passion for these languages and enjoy sharing my knowledge with my students. With my expertise, I am confident that I can help you improve your language skills and achieve your goals.In addition to my teaching experience, I also have a strong background in research. As a Ph.D. student in aircraft design, I have a deep understanding of the latest techniques and technologies in the field. This allows me to provide my students with valuable insights and practical knowledge that can be applied in real-world situations.Overall, I am committed to providing a high-quality learning experience for my students. I am dedicated to helping you achieve your goals, and I am always available to answer any questions you may have. Whether you are a beginner or an advanced learner, I am confident that I can help you improve your skills and reach your full potential.
    Students take courses primarily to improve job-related skills.Some courses generate credit toward technical certification. Udemy has made a special effort to attract corporate trainers seeking to create coursework for employees of their company.
    • language english
    • Training sessions 31
    • duration 5:41:47
    • Release Date 2024/10/30