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My name is Ann [436]
3 years ago
15

A 10-kg weight is suspended from the ceiling by a spring. The weight-spring system is at equilibrium with the bottom of the weig

ht about 1 m above the floor. The spring is then stretched until the weight is just above the eggs. When the spring is released, the weight is pulled up by the contracting spring and then falls back down under the influence of gravity. On the way down it
A) Reverses its direction of travel well above the eggsB) Reverses its direction of travel precisely as it reaches the eggsC) Makes a mess as it crashes into the eggs
Physics
1 answer:
IgorC [24]3 years ago
4 0

Answer:

A

Explanation:

The damping of motion will occur due to air resistance due to which the maximum downward distance traveled will reduce. Also, when spring was stretched it had two downward forces: the applied force and the weight. During the downward motion after the spring is released there is only one force that is weight. So, the weight will reverse its direction of travel well above the eggs on the way down

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In each case, lifting or pushing, why must you exert a force to move the object? Q1-2: How much more effort is required to lift
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A force is required to move an object because the object will stay at rest until a force is applied.

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The effort required to lift or push two masses instead of one depends on the desired effect. For the same kinetic energy, no more effort is required. For the same momentum, half the effort is required for two masses. For the same velocity, double the effort is required.

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In a ruby laser, an electron jumps from a higher energy level to a lower one. if the energy difference between the two levels is
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To calculate the wavelength of the photon we are using the formula,

\triangle E= \frac{h\times c}{\lambda}

Or,\lambda= \frac{h\times c}{\triangle E}

We are given here,

\triangle E= The energy difference between the two levels = 1. 8 ev= 1.8\times 1.6 \times 10^{-19} C.

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Or,\lambda= \frac{6.626\times 10^{-34}\times 3\times 10^8}{1.8\times 1.6 \times 10^{-19}}

Or,\lambda= 690\times 10^{-9} m

Or,\lambda=690 nm.

From the above calculation we can conclude that the wavelength of the emitted photon is 690nm.

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2.2 kg box is being dragged to right with 31.06 N force and accelerating at 3.2 m/s^2 how strong is force of friction acting on
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Force = 7.04 N

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