The 19 g head of a bobble-head doll oscillates in SHM at a frequency of 5.8 Hz.
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Q: A 0.3kg object undergoes SHM. At 2.40cm from its equilibrium position, its speed is 0.8ms^-1 and has…
A: Hi ! I have answered the question with detailed explanations and calculations. All the…
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Q: When responding to sound, the human eardrum vibrates about its equilibrium position. Suppose an…
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Q: A sewing machine needle moves with a rapid vibratory motion, rather like SHM, as it sews a seam.…
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Q: An object is undergoing a simple harmonic motion with a period of 0.9 s and an amplitude of 0.32 m.…
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Q: A pitcher's forearm moves up and down in simple harmonic motion with an amplitude of 8.77 cm and a…
A: Given Amplitude of the simple harmonic motion is A=8.77 cm=8.77×10-2 m Frequency of motion is given…
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A: Given: The amplitude of the eardrum = 6 x 10-7 m Maximum speed = 2.6 x 10-3 m/s Maximum acceleration…
Q: When responding to sound, the human eardrum vibrates about its equilibrium position. Suppose an…
A: Given data: Amplitude, A=6.0×10-7m Maximum speed, vmax=2.6×10-3m/s
Q: A machine part is undergoing SHM with a frequency of 4.40 HzHz and amplitude 1.80 cmcm. How long…
A: Given: Frequency f=4.40 Hz Amplitude: A=1.80 cm We need to find the time it will take to go from x=0…
Q: A block attached to a horizontal spring of spring constant 85 N/m undergoes SHM with an amplitude of…
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Q: On the end of a very long spring with a spring constant of 1.00 N/m is fixed on a wall, the other…
A: This question is based on Simple Harmonic Motion topic. Formula of Spring potential Energy Spring…
Q: A particle with a mass of 2.5 x 10-20 kg is oscillating with simple harmonic motion with a period of…
A: To be given that,mass, m=2.5×10-20 kgT=2.4×10-5 svmax=3.4×103 ms
Q: A particle undergoes SHM according to the law x= - (5 cm)cos[(4 s -1 )t + π]. Find the amplitude,…
A: It is given that a body undergoes SHM. Its position is given as,
Q: The amplitude of a system moving with simple harmonic motion is doubled. The total energy will then…
A: In simple harmonic motion, the kinetic energy and potential energy of the particle performing SHM…
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- If a particle undergoes a SHM with an amplitude of 0.18 m, what is the total distance it travels in one period?An apple weighs 1.04 NN. When you hang it from the end of a long spring of force constant 1.54 N/mN/m and negligible mass, it bounces up and down in SHM. If you stop the bouncing and let the apple swing from side to side through a small angle, the frequency of this simple pendulum is half the bounce frequency. (Because the angle is small, the back and forth swings do not cause any appreciable change in the length of the spring.) What is the unstretched length of the spring (i.e., without the apple attached)? Express your answer with the appropriate units.A graduate student taking a test was given a 0.298 cm long spring with constant K =10.9 N/m. She attatched 84 g mass to the spring. Setting the equilibrium position to y=0.0 cm. The spring mass system undergoes SHM between points Ymax=-10.2 cm and Ymin=10.2 cm. Where is the mass located when it's kinetic energy is minimum?
- The human eardrum responds to sound by vibrating. If the eardrum moves in simple harmonic motion at a frequency of 4.22 kHz and an amplitude of 0.110 nm (roughly the diameter of a single hydrogen atom), what is its maximum speed of vibration? (Amazingly, the ear can detect vibrations with amplitudes even smaller than this!) μm/sA 0.400 kgkg object undergoing SHM has axaxa_x = -1.80 m/s2m/s2 when xxx = 0.400 mm. What is the time for one oscillation? Express your answer with the appropriate units.. A mass is placed on a frictionless, horizontal table. A spring (k=99 N/m) which can be stretched or compressed, is placed on the table. A 6 kg mass is attached to one end of the spring, the other end is anchored to the wall. The equilibrium position is marked at zero. A student moves the mass out to x= 3 cm and releases it from rest. The mass oscillates in SHM. (a) Determine the equations of motion in terms of the amplitude 'A', the angular velocity 'w', and the time 't'. Use the initial conditions to find the value of in the equations. Hint: Use the equation editor (orange button in the answer box) and find w in the greek letters. DO NOT USE numerical values for A and @ for part (a). For example, a equation could be x(t)= Asin (wt). x(t)= m v(t)= a(t)= m/s m/s² (b) Calculate for this spring-mass system. @= rad/ s (c) Find the position, velocity, and acceleration of the mass at time t=2.8 s. Use @ up to 4 significant figures in the calculation. Note: Should you set your calculator in…