We present to your attention the solution to problem 13.2.21 from the collection of Kepe O.?. This is a digital product that will allow you to easily and quickly solve this physics problem.
The problem considers the movement of a point of mass m along the Ox axis under the influence of a force Fx = 6m sin 2t. The initial speed of the point is v0x = 3 m/s. By solving the velocity equation and using the initial condition, the constant of integration in the velocity equation can be determined. The answer to the problem is 6.
Our solution is carried out by a qualified specialist and tested for correctness. You can be confident in its accuracy and use it for your purposes.
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Price: 99 rubles.
Our digital goods store offers a solution to problem 13.2.21 from the collection of Kepe O.?. This product is a digital product that will help you solve this physics problem quickly and easily. The problem considers the movement of a point of mass m along the Ox axis under the influence of a force Fx = 6m sin 2t. The initial speed of the point is v0x = 3 m/s. By solving the velocity equation and using the initial condition, the constant of integration in the velocity equation can be determined. The answer to the problem is 6.
Our solution is carried out by a qualified specialist and tested for correctness. We guarantee its accuracy and usefulness for solving the problem. By purchasing our digital product, you can save your time and get access to a high-quality solution to the problem.
We offer this product for 99 rubles. Don't miss the opportunity to simplify your life and purchase a high-quality solution to your problem!
We present to your attention a digital product - a solution to problem 13.2.21 from the collection of Kepe O.?. This product will help you solve this physics problem quickly and easily.
The problem considers the movement of a point of mass m along the Ox axis under the influence of a force Fx = 6m sin 2t. The initial speed of the point is v0x = 3 m/s.
To solve the problem, it is necessary to solve the velocity equation and determine the integration constant using the initial condition. The answer to the problem is 6.
Our solution was carried out by a qualified specialist and checked for correctness. We guarantee its accuracy and usefulness for solving the problem.
By purchasing our digital product, you can save your time and gain access to a high-quality solution to the problem. We offer this product for 99 rubles. Don't miss the opportunity to simplify your life and purchase a high-quality solution to your problem!
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Solution to problem 13.2.21 from the collection of Kepe O.?. consists in determining the integration constant in the velocity equation of a point with mass m moving along the Ox axis under the influence of the force Fx = 6m sin 2t. At the initial moment of time, the speed of the point is v0x = 3 m/s.
To solve the problem, you need to use the equation of body motion:
m * a = F
where m is the mass of the body, a is the acceleration, and F is the force.
In this problem, the acceleration of the body on the Ox axis is equal to the derivative of the speed with respect to time:
a = dvx/dt
The force acting on the body is 6m sin 2t.
Thus, the equation of motion can be written as:
m * dvx/dt = 6m sin 2t
To solve the equation, it is necessary to integrate both sides over time t in the range from zero to t:
∫(0→t) m * dvx/dt dt = ∫(0→t) 6m sin 2t dt
After integration we get:
mvx - mv0x = -3m cos 2t + 3m
where vx is the speed of the body at time t, and v0x is the initial speed of the body.
It is necessary to determine the integration constant in the velocity equation, which can be found from the initial conditions:
mv0x - mv0x = -3m cos 2*0 + 3m
mv0x - mv0x = 3m
It follows that the constant of integration is 3. Answer: 6.
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