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Thepotemich [5.8K]
4 years ago
5

A pendulum is dropped 0.50 m from

Physics
1 answer:
lana [24]4 years ago
5 0
-- When the ball is at the top, before it's dropped, it has potential energy above the equilibrium position.

Potential energy = (mass) x (gravity) x (height) = (mass) x (G) x (0.5)

As it passes through the equilibrium position, it has kinetic energy.

Kinetic energy = (1/2) x (mass) x (speed)²

How much kinetic energy does it have at the bottom ?
EXACTLY the potential energy that it started out with at the top !
THAT's where the kinetic energy came from.
So the two expressions for energy are equal.
K.E. at the bottom = P.E. at the top.

(1/2) x (mass) x (speed)² = (mass) x (G) x (0.5)

Divide each side by (mass) . . .
(the mass of the ball goes away, and has no effect on the answer !)

(1/2) x (speed)² = (G) x (0.5)

Multiply each side by 2 :

(speed)² = G

speed = √G = √9.8 = <u>3.13 meters per second</u>, regardless of the mass of the ball !

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A new ride being built at an amusement park includes a vertical drop of 126.5 meters. Starting from rest, the ride vertically dr
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Answer:

Speed at the bottom of the roller coaster = 49.79 m/s

Explanation:

A new ride being built at an amusement park includes a vertical drop of 126.5 meters. Starting from rest, the ride vertically drops that distance before the track curves forward.

We have to find the speed at the bottom.

Here the gravitational energy fully converts to kinetic energy, so we equate it.

Gravitational energy = m\times g\times h

Kinetic energy = 0.5 \times m\times v^{2}

m\times g\times h = 0.5 \times m\times v^{2}

9.8\times 126.5 = 0.5\times v^{2}

v^{2} = 2479.4

Velocity, v = 49.79 m/s

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3 years ago
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4 years ago
What is 3.75 x 10^-7?
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Answer:

Explanation:

3.75 * 10^-7

=3.75 * 1/10^7

=3.75/10000000

=3/800000000

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8 0
3 years ago
A proton is released from rest at the positive plate of a parallelplatecapacitor. It crosses the capacitor and reaches the negat
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Answer:

2.1406 ×10^6 m/sec

Explanation:

we know that energy is always conserved

so from the law of energy conservation

qV=\frac{1}{2}mv^2

here V is the potential difference  

we know that mass of proton = 1.67×10^{-27} kg

we have given speed =50000m/sec

so potential difference V=\frac{\frac{1}{2}\times 1.67\times 10^{-27}50000^2}{1.6\times 10^{-19}}=13.045

now mass of electron =9.11×10^{-31}

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\frac{1}{2}\times 9.11\times 10^{-31}v^2=1.6\times 10^{-19}\times 13.045=2.1406\times 10^6 m/sec

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3 years ago
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