Solution to problem 11.3.15 from the collection of Kepe O.E.

Let's solve problem 11.3.15:

Given: a1 = 0.6 m/s2, α = 30°

Find: a2

Answer:

Pusher acceleration a2 related to the acceleration of cam a1 ratio:

a2 = a1 * sin(s)

We substitute known values:

a2 = 0.6 * sin(30°) = 0.3 m/s2

Answer: 0.3 m/s2.

Solution to problem 11.3.15 from the collection of Kepe O..

This digital product is a solution to problem 11.3.15 from the collection of problems in physics by Kepe O.. The solution was made by a professional teacher and formatted in a beautiful html format.

Problem 11.3.15 is to determine the acceleration of the pusher when the cam moves with acceleration. This solution describes in detail the process of solving the problem and provides all the necessary formulas. The solution is made taking into account all known data and gives an answer in accordance with the conditions of the problem.

By purchasing this digital product, you receive a high-quality solution to the problem that will help you prepare for physics exams or in everyday practice. Beautiful html design will allow you to conveniently view and study the solution to the problem on any device.

This product is a solution to problem 11.3.15 from the collection of problems in physics by Kepe O.?. The problem is to determine the acceleration of the pusher when the cam moves with acceleration. The solution describes in detail the process of solving the problem and provides all the necessary formulas.

The acceleration of the pusher a2 is related to the acceleration of the cam a1 by the relation: a2 = a1 * sin(α), where α is the angle between the x-axis and the acceleration vector of the cam.

It is known that a1 = 0.6 m/s2 and α = 30°. Substituting these values ​​into the formula, we get: a2 = 0.6 * sin(30°) = 0.3 m/s2.

The answer to the problem is the acceleration of the pusher equal to 0.3 m/s2.

The solution was written by a professional teacher and presented in a beautiful HTML format. By purchasing this product, you receive a high-quality solution to the problem that will help you in preparing for physics exams or in everyday practice. Beautiful HTML design will allow you to conveniently view and study the solution to the problem on any device.


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Problem 11.3.15 from the collection of Kepe O.?. consists in determining the acceleration of pusher 2, if it is known that cam 1 moves along a horizontal plane with acceleration a1 = 0.6 m/s2 and the angle between cam 1 and pusher 2 is 30 degrees. The answer to the problem is already known and is equal to 0.346.

Thus, to solve this problem it is necessary to use the laws of motion of bodies and trigonometry. In particular, you can use the axial acceleration formula to express the pushrod acceleration in terms of the cam acceleration and the angle between them.

The solution to this problem can be useful for students and people who are interested in physics and mechanics, as well as for solving problems on acceleration and projection of vectors in various fields of activity.







Problem 11.3.15 from the collection of Kepe O.?. is as follows: given a square matrix of order n and a column vector b. It is necessary to find a column vector x for which the equality Ax=b is satisfied, where A is the given matrix.

To solve this problem, you can use the Gauss method, which consists of reducing the matrix to a triangular form by elementary row transformations. The solution to the system can then be found using the inverse of the Gaussian method.

You can also use the LU decomposition method, which consists of representing the matrix A as the product of two matrices L and U, where L is a lower triangular matrix and U is an upper triangular matrix. Then the solution to the system Ax=b can be found by solving the two systems Ly=b and Ux=y.

Thus, to solve problem 11.3.15 from the collection of Kepe O.?. you can use the Gaussian method or the LU decomposition method.


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