Solution to problem 14.2.1 from the collection of Kepe O.E.

Let us consider a body that is acted upon by a constant force F for 10 seconds, the projections of which on the coordinate axes are equal to Fx = 3 N and Fy = 4 N. Let us find the modulus of the impulse of this force for the specified period of time. To solve the problem, we use the formula for the impulse modulus: p = F * Δt, where F is the force, Δt is the time of action of the force. Let's find the force modulus using the Pythagorean theorem: F = sqrt(Fx^2 + Fy^2) = sqrt(3^2 + 4^2) = 5 N. Now we can find the momentum modulus: p = F * Δt = 5 N * 10 s = 50 N s. Answer: 50. In our digital goods store you can purchase the solution to problem 14.2.1 from the collection of Kepe O.. - an excellent digital product for students who study physics. The solution to the problem is presented in a beautiful html format and contains a detailed description of the method for solving it, as well as a step-by-step calculation using the necessary formulas. You can easily and quickly purchase this digital product from our store and start learning this task right now. Our digital version of the solution to problem 14.2.1 from the collection of Kepe O.. is a convenient and accessible solution for anyone who wants to improve their knowledge in the field of physics and prepare for exams or testing.

Solution to problem 14.2.1 from the collection of Kepe O.?. is a digital product that is intended for students studying physics. The solution to the problem is presented in a beautiful html format and contains a detailed description of the method for solving it, as well as a step-by-step calculation using the necessary formulas.

In this problem, we consider a body that is subjected to a constant force F for 10 seconds, the projections of which on the coordinate axes are equal to Fx = 3 N and Fy = 4 N. To find the modulus of the impulse of this force for the specified period of time, we use the formula for the modulus of the impulse: p = F * Δt, where F is the force, Δt is the time of action of the force.

First we need to find the force modulus using the Pythagorean theorem: F = sqrt(Fx^2 + Fy^2) = sqrt(3^2 + 4^2) = 5 N. Then we can find the momentum modulus: p = F * Δt = 5 N * 10 s = 50 N s.

Our digital version of the solution to problem 14.2.1 from the collection of Kepe O.?. is a convenient and affordable solution for anyone who wants to improve their knowledge in the field of physics and prepare for exams or testing. You can easily and quickly purchase this digital product from our store and start learning this task right now.

In our digital goods store you can purchase the solution to problem 14.2.1 from the collection of Kepe O.?. in physics. To solve the problem, it is necessary to find the modulus of the impulse of the force acting on the body for 10 seconds, if the projections of this force on the coordinate axes Fx = 3 N and Fy = 4 N are known. The solution to the problem is based on the use of the formula for the modulus of the impulse p = F * Δt, where F is the force, Δt is the time of action of the force. First you need to find the force modulus using the Pythagorean theorem: F = sqrt(Fx^2 + Fy^2) = sqrt(3^2 + 4^2) = 5 N. Then we find the momentum modulus: p = F * Δt = 5 N * 10 s = 50 N s. Our digital product provides a detailed description of the method for solving the problem, as well as step-by-step calculations using the necessary formulas. The solution to the problem is presented in a beautiful html format and is a convenient and accessible solution for anyone who studies physics and wants to improve their knowledge in this area. You can access our digital product quickly and easily by placing an order on our website.


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Solution to problem 14.2.1 from the collection of Kepe O.?. consists in finding the modulus of the impulse of the force acting on the body for 10 seconds, if the projections of the force on the coordinate axes are known: Fx = 3 N and Fy = 4 N.

To solve the problem, you need to find the force modulus F using the formula:

F = sqrt(Fx^2 + Fy^2)

where Fx and Fy are projections of force on the coordinate axes.

After finding the force modulus F, you can find the momentum modulus using the formula:

p = F * t

where t is the time of action of the force on the body, in this case equal to 10 seconds.

Substituting the values ​​of the force projections and solving the equations, we obtain:

F = sqrt(3^2 + 4^2) = 5 N

p = F * t = 5 * 10 = 50 N*s

Answer: the magnitude of the force impulse in 10 seconds is 50 N*s.


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