The mass and the radius of a planet are twice that of earth. Then, period of oscillation of a second pendulum on that planet will be ___________a) 1/√2sb) 2√2sc) 2sd) 1/2s
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The mass and the radius of a planet are twice that of earth. Then, period of oscillation of a second pendulum on that planet will be ___________a) 1/√2sb) 2√2sc) 2sd) 1/2s
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- 23) A simple pendulum of length 2.58 m is used to measure the acceleration of gravity at the surface of a distant planet. If the period of such a pendulum is 9.18 seconds, what is the acceleration of gravity? A) 23.7 m/s2 B) 1.21 m/s2 c) 1.77 m/s2 d) 0.83 m/s2 e) 2.42 m/s2You have a stationary mass attached to a compressed spring that is facing horizontal (on a frictionless plane). You give the mass a quick whack with a hammer, such that the mass has an initial velocity of 6.0 m/s. The amplitude of the oscillation of the mass is 4.0 m. How far is the mass from its starting position after 2.0 s? A) 0.50 m B) 0.56 m C) 0.78 m D) 1.0 m E) 1.1 m F) 2.0 m G) 2.3 m H) 4.0 mA mass oscillates on a spring, bouncing up and down 20 times per second. From the highest position to the lowest position of the mass is a distance of 8cm. A) What is the amplitude of the oscillation? B) What is the frequency? C) What is the period of oscillation? D) How many times will the mass oscillate in 12 seconds?
- 5 kilogram object is suspended from a string. The string is 4 meters long. What is the period of the object ting as a pendulum? Express your answer a number of seconds, omitting the unit.If you increase the value of the oscillating mass, does the frequency of oscillation increase of decrease? Explain.A mass on a spring oscillates with an amplitude 0.12 m and a period of 1.0 s. What will be the acceleration of the mass at t = 0.50s? A) 4.7 m/s² B) -4.7 m/s² C) 0.12 m/s² D) 0 m/s?
- What three variables might determine the period of a pendulum? a) b) c) If the mass of a simple pendulum of period t, is doubled, the period of the pendulum becomes a) b) 2 to 0.5 to c) d) 1, V0.5 e) to In a simple pendulum experiment, the following data was collected: Theoretical Measured Length (m) Ball Angle Period (sec) Period (sec) Metal 7° 0.800 1.8196 Calculate the theoretical period to:A simple pendulum makes 132 complete oscillations in 2.90 min at a location where g = 9.80 m/s2. (a) Find the period of the pendulum. ________ seconds (b) Find the length of the pendulum. ______ m