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shtirl [24]
2 years ago
3

Suppose you charge a 1.0 f capacitor with two 1.5 volt batteries. how much charge was on each plate?

Physics
1 answer:
Ber [7]2 years ago
5 0
The charge on each plate of the capacitor is given by:
Q=C \Delta V
where C is the capacitance of the capacitor, while \Delta V is the potential difference applied on the two plates. Since we are using two batteries of 1.5 V, the total voltage applied is (assuming the two batteries are in series) 1.5 V+1.5 V= 3.0 V. Therefore, the charge on each plate is
Q=(1.0 F)(3.0 V)=3.0 C
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A 0.20 kg mass on a horizontal spring is pulled back 2.0 cm and released. If, instead, a 0.40 kg mass were used in this same exp
KIM [24]

Answer:

The total mechanical energy does not change if the value of the mass is changed. That is, remain the same

Explanation:

The total mechanical energy of a spring-mass system is equal to the elastic potential energy where the object is at the amplitude of the motion. That is:

E=U=\frac{1}{2}kA^2       (1)

k: spring constant

A: amplitude of the motion = 2.0cm

As you can notice in the equation (1), the total mechanical energy of the system does not depend of the mass of the object. It only depends of the amplitude A and the spring constant.

Hence, if you use a mass of 0.40kg the total mechanical energy is the same as the obtained with a mas 0.20kg

Remain the same

8 0
2 years ago
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Radda [10]

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Explanation:

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5 0
2 years ago
explain why the impact of one heavy stone would produce waves with higher amplitude than the impact of the light stone would
DerKrebs [107]
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sashaice [31]
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Hope this helps! :)
7 0
2 years ago
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ANEK [815]

Ans    4 more to be exact

Explanation:

7 0
2 years ago
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