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A simple pendulum is suspended from the roof of a school bus which moves in a horizontal direction with an acceleration a, then the time period is - Physics

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प्रश्न

A simple pendulum is suspended from the roof of a school bus which moves in a horizontal direction with an acceleration a, then the time period is

विकल्प

  • `"T" ∝ 1/("g"^2 + "a"^2)`

  • `"T" ∝ 1/sqrt("g"^2 + "a"^2)`

  • `"T" ∝ sqrt("g"^2 + "a"^2)`

  • `"T" ∝ ("g"^2 + "a"^2)`

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उत्तर

`"T" ∝ 1/sqrt("g"^2 + "a"^2)`

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  क्या इस प्रश्न या उत्तर में कोई त्रुटि है?
अध्याय 10: Oscillations - Evaluation [पृष्ठ २१८]

APPEARS IN

सामाचीर कलवी Physics - Volume 1 and 2 [English] Class 11 TN Board
अध्याय 10 Oscillations
Evaluation | Q I. 4. | पृष्ठ २१८

संबंधित प्रश्न

State the differential equation of linear simple harmonic motion.


A particle executing simple harmonic motion comes to rest at the extreme positions. Is the resultant force on the particle zero at these positions according to Newton's first law?


Can a pendulum clock be used in an earth-satellite?


Figure represents two simple harmonic motions.

The parameter which has different values in the two motions is


Select the correct statements.
(a) A simple harmonic motion is necessarily periodic.
(b) A simple harmonic motion is necessarily oscillatory.
(c) An oscillatory motion is necessarily periodic.
(d) A periodic motion is necessarily oscillatory.


A uniform rod of length l is suspended by an end and is made to undergo small oscillations. Find the length of the simple pendulum having the time period equal to that of the road.


A particle is subjected to two simple harmonic motions, one along the X-axis and the other on a line making an angle of 45° with the X-axis. The two motions are given by x = x0 sin ωt and s = s0 sin ωt. Find the amplitude of the resultant motion.


A spring is stretched by 5 cm by a force of 10 N. The time period of the oscillations when a mass of 2 kg is suspended by it is ______


Displacement vs. time curve for a particle executing S.H.M. is shown in figure. Choose the correct statements.

  1. Phase of the oscillator is same at t = 0 s and t = 2s.
  2. Phase of the oscillator is same at t = 2 s and t = 6s.
  3. Phase of the oscillator is same at t = 1 s and t = 7s.
  4. Phase of the oscillator is same at t = 1 s and t = 5s.

Which of the following expressions corresponds to simple harmonic motion along a straight line, where x is the displacement and a, b, and c are positive constants?


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