<span>The first "plan of government" that the United States operated under was a document known as the Articles of Confederation. After getting rid of the tyranny that we, as a nation, faced under British rule, we wanted to avoid a strong central figure as much as possible. This government plan was supposed to give the majority of the power to the states. This seemed like a wonderful idea to some, but unfortunately, nothing was getting done because it was too difficult to get anything done. This is why the federal government does need some power. It is important for the state, which is closer to its people, to have power because not all situations apply in all 50 states. In conclusion, it is important for federal and state government to share powers because otherwise there simply is no balance. So yeah.</span>
Answer:
![Acceleration = 2m/s^2](https://tex.z-dn.net/?f=Acceleration%20%3D%202m%2Fs%5E2)
Explanation:
Given
![Force = 124N](https://tex.z-dn.net/?f=Force%20%3D%20124N)
![Mass = 62\ kg](https://tex.z-dn.net/?f=Mass%20%3D%2062%5C%20kg)
Required
Determine the acceleration
This will be calculated using force formula:
![Force = Mass * Acceleration](https://tex.z-dn.net/?f=Force%20%3D%20Mass%20%2A%20Acceleration)
Substitute values for Force and Mass
![124N = 62kg * Acceleration](https://tex.z-dn.net/?f=124N%20%3D%2062kg%20%2A%20Acceleration)
Divide both sides by 62kg
![Acceleration = \frac{124N}{62kg}](https://tex.z-dn.net/?f=Acceleration%20%3D%20%5Cfrac%7B124N%7D%7B62kg%7D)
![Acceleration = 2m/s^2](https://tex.z-dn.net/?f=Acceleration%20%3D%202m%2Fs%5E2)
<em>Hence, the wave boarder accelerates at </em>
<em></em>
Answer:
A sheave keeps an elevator from moving side to side and further details in discussed below in detail.
Explanation:
A sheave is a lifter with a grooved edge surface, at the head of the elevator shaft. ... The cords that uplift the car are also joined to a counterweight, which stretches down on the other front of the sheave [and typically estimates about the mass of the car itself plus 42–50 percent of the complete weight it can sustain.