Solution of problem D3 (task 1) Option 13 Dievsky V.A.

Termeh Dievsky V.A. proposes in task Dynamics 3 (D3) task 1 to consider the mechanical systems shown in diagrams 1-30. It is necessary to determine the angular acceleration (options 4, 6, 7, 9, 11, 18, 25, 26, 28) or linear acceleration (other options) of body 1 using the theorem on the change in kinetic energy in differential form.

To solve the problem, the following notations are adopted: m - body masses, R and r - radii, p - radius of inertia (if it is not specified, the body is considered a homogeneous cylinder); in the presence of friction, f is the sliding friction coefficient, fк is the rolling friction coefficient. The threads in the systems are considered weightless and inextensible.

The solution to task 1 of problem D3 for scheme No. 13 must be carried out in accordance with the indicated notation and the theorem on the change in kinetic energy in differential form.

Solution of problem D3 (task 1) Option 13 Dievsky V.A.

This digital product is a solution to problem D3 (task 1) in dynamics, performed in accordance with V.A.’s training manual. Dievsky.

The solution is intended for students and teachers studying kinematics and rigid body dynamics. It considers the mechanical systems depicted in diagrams 1-30, and for each of them the angular or linear acceleration of body 1 is determined using the theorem on the change in kinetic energy in differential form.

The solution was made by a professional teacher with extensive experience in teaching physics and mathematics. It is presented in the form of PDF and DOC files, which makes it easy to work with and edit the document.

By purchasing this digital product, you get access to useful knowledge and a ready-made solution to problem D3 (task 1) on dynamics, which will help you better understand the theory and successfully cope with homework and exams.

This digital product is a solution to problem D3 (task 1) in dynamics, performed in accordance with V.A.’s training manual. Dievsky. The solution is intended for students and teachers studying kinematics and rigid body dynamics. It considers the mechanical systems depicted in diagrams 1-30, and for each of them the angular or linear acceleration of body 1 is determined using the theorem on the change in kinetic energy in differential form.

Specifically, this product contains the solution to problem D3 (task 1) Option 13 Dievsky V.A., which refers to scheme No. 13. To solve the problem, the notations adopted in the manual were used: m - masses of bodies, R and r - radii, p - radius of inertia (if it is not specified, the body is considered a homogeneous cylinder); in the presence of friction, f is the sliding friction coefficient, fк is the rolling friction coefficient. The threads in the systems are considered weightless and inextensible.

The solution was made by a professional teacher with extensive experience in teaching physics and mathematics. It is presented in the form of PDF and DOC files, which makes it easy to work with and edit the document. After payment, you will receive a link to the archive with the solution to the task, which is packed in a zip archive and can be opened on any PC. By purchasing this digital product, you get access to useful knowledge and a ready-made solution to problem D3 (task 1) on dynamics, which will help you better understand the theory and successfully cope with homework and exams. After checking the solution, the author will be grateful if you leave positive feedback.


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This product is a solution to problem D3 (task 1) in theoretical mechanics, option 13, compiled from the collection of tasks “Theoretical Mechanics” Dievsky V.A. and Malysheva I.A. for university students.

The solution to the problem was carried out on the topic “THEOREM ABOUT CHANGE OF KINETIC ENERGY” for mechanical systems shown in diagrams 1-30. In this version of the task, it is necessary to determine the angular acceleration of body 1 using the theorem on the change in kinetic energy in differential form.

The following notations are used in the problem: m - masses of bodies, R and r - radii, p - radius of inertia (if it is not specified, the body is considered a homogeneous cylinder); in the presence of friction, f is the sliding friction coefficient, fк is the rolling friction coefficient. The threads connecting the bodies are weightless and inextensible.

After payment, you will receive a link to an archive with the solution to the task in Word format (handwritten solution or typed in Word), packed in a zip archive (will open on any PC). After checking the solution, the author will be grateful if you leave positive feedback.


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  1. An excellent solution to the problem! Everything was thought out to the smallest detail.
  2. Thank you for providing such a quality digital product!
  3. I got a lot of useful information from this solution to the problem.
  4. The solution to the problem was easy to understand and put into practice.
  5. Using this digital product, I quickly and efficiently solved problem D3.
  6. A very convenient format for presenting information that saved me a lot of time.
  7. Thank you for a high-quality and professional product that helped me in learning mathematics.
  8. The solution to the problem was presented in a clear and logical form.
  9. I am very pleased with the result and recommend this digital product to anyone interested in mathematics.
  10. Many thanks to the author for such a detailed and accurate analysis of the problem!



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Solution of problem D3 (task 1) Option 13 Dievsky V.A. provides clear and understandable explanations of each step of the solution.

Electronic version of the solution of problem D3 (task 1) Option 13 Dievsky V.A. makes it easy to find the information you need.

Solution of problem D3 (task 1) Option 13 Dievsky V.A. is a reliable and accurate source of information for students.

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