If a car has a suspension system with a force constant of 5.00 × 10ª N/m, how much energy must the car's shocks remove to dampen an oscillation starting with a maximum displacement of 0.09 m? E = J

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Chapter15: Oscillations
Section: Chapter Questions
Problem 53P: If a car has a suspension system with a force constant of 5.00104 N/m , how much energy must the...
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If a car has a suspension system with a force constant of 5.00×104 N/m5.00×104 N/m, how much energy must the car's shocks remove to dampen an oscillation starting with a maximum displacement of 0.09 m?

E =  J

If a pendulum-driven clock gains 6.65 s/day, what fractional change in pendulum length must be made for it to keep perfect time? Express your answer as a percentage change; keep sufficient significant figures.

Note: this problem may seem a little intimidating, but you can do it! Read both of the hints carefully, and think about what quantities are changing and which are not.

dll=dll= %

If a car has a suspension system with a force constant of 5.00 x 104 N/m, how much energy must the
car's shocks remove to dampen an oscillation starting with a maximum displacement of 0.09 m?
E =
J
Transcribed Image Text:If a car has a suspension system with a force constant of 5.00 x 104 N/m, how much energy must the car's shocks remove to dampen an oscillation starting with a maximum displacement of 0.09 m? E = J
If a pendulum-driven clock gains 6.65 s/day, what fractional change in pendulum length must be made for
it to keep perfect time? Express your answer as a percentage change; keep sufficient significant figures.
Note: this problem may seem a little intimidating, but you can do it! Read both of the hints carefully, and
think about what quantities are changing and which are not.
dl
Transcribed Image Text:If a pendulum-driven clock gains 6.65 s/day, what fractional change in pendulum length must be made for it to keep perfect time? Express your answer as a percentage change; keep sufficient significant figures. Note: this problem may seem a little intimidating, but you can do it! Read both of the hints carefully, and think about what quantities are changing and which are not. dl
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