## Energy - MCQ - Basic Level

Physics is an important subject in preparation for various Competitive exams. To keep a track of your preparation we have designed a small quiz of Basic Level Questions on Energy. You have 10 minutes to solve the quiz, click the start timer button in order to start the timer and then click on submit button at the end to submit the quiz and view your scores and correct answers.

Q1.  The total energy of a particle, executing simple harmonic motion is
Where x is the displacement from the mean position

•  ∝ x
•  ∝ x2
•  Independent of x
•  ∝ x1/2

Q2. The potential energy of a simple harmonic oscillator when the particle is half way to its end point is (where E is the total energy)

•  1/8 E
•  1/4 E
•  1/2 E
•  2/3 E

Q3. The total energy of a particle executing S.H.M. is proportional to

•  Displacement from equilibrium position
•  Frequency of oscillation
•  Velocity in equilibrium position
•  Square of amplitude of motion

Q4. When the displacement is half of the amplitude, then what fraction of total energy of a simple harmonic oscillator is kinetic

•  3/4th
•  2/7th
•  5/7th
•  2/9th

Q5. When the displacement is half the amplitude, the ratio of potential energy to the total energy is

•  1/2
•  1/4
•  1
•  1/8

Q6. The potential energy of a particle executing S.H.M. is 2.5 J, when its displacement is half of amplitude. The total energy of the particle be

•  18 J
•  10 J
•  12 J
•  2.5 J

Q7. There is a body having mass m and performing S.H.M. with amplitude a. There is a restoring force F = -Kx The total energy of body depends upon

•  K,x
•  K,a
•  K,a,x
•  K,a,v

Q8. Two springs with spring constants K1 = 1500 N/m and K2 = 1500 N/m are stretched by the same force. The ratio of potential energy stored in spring will be

•  2:1
•  1:2
•  4:1
•  1:4

Q9. A body is executing Simple Harmonic Motion. At a displacement x its potential energy is E1 and at a displacement y its potential energy is E2. The potential energy E at displacement (x+y) is

•  √E = √E1 - √E2
•  √E = √E1 + √E2
•  E = E1 + E2
•  E = E1 - E2

Q10. A particle is vibrating in a simple harmonic motion with an amplitude of 4 cm. At what displacement from the equilibrium position, is its energy half potential and half kinetic energy

•  1 cm
•  √2 cm
•  3 cm
•  2√2 cm

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