A Physical pendulum consisting of a uniform solid disc of mass 563g and radius 14.4 cm supported in a vertical plane by a pivot located distance 10.2 cm from the center of the disk. The disk is displaced by small angle and released. Find the period of the resulting SHM.
Q: An M = 12.3 kg mass is suspended on k = 273000 N/m spring. The mass oscillat up-and-down from the…
A:
Q: Create a function of time of the acceleration of a mass on a spring. The mass on the spring is 210…
A: Mass of the spring (m)=210 g Amplitude of its motion (A)=8 cm Maximum speed of the motion…
Q: A 2.2 kg mass is attached to a horizontal spring with spring contant k= 4400 N/m. The spring is…
A: Given: The mass of the object is 2.2 kg. The spring constant is 4400 N/m. The spring is stretched 11…
Q: amplitude, angular frequency and initial phase of the oscillation
A: Since you have posted a question with multiple sub-parts, we will solve first three sub-parts for…
Q: A pendulum that consists of two uniform rings, the first ring hasradius R = 12.0 cm and mass 2.50…
A:
Q: A block of unknown mass is attached to a spring with a spring constant of 5.00 N/m and undergoes…
A:
Q: An object undergoes simple harmonic motion with a maximum velocity of vmax = 6.64 m/s. If it takes…
A: The equation for maximum velocity can be given by vmax=Aωvmax=A2πT
Q: A bungee jumper with a mass of 65.0 kg jumps from a high bridge. After reaching his lowest point, he…
A:
Q: A 0.223 kg body undergoes simple harmonic motion of amplitude 7.22 cm and period 0.500 s. (a) What…
A: (a)The maximum force on the body is,
Q: A rectangular block, with face lengths a = 35 cm and b = 45 cm, is to be suspended on a thin…
A:
Q: small rowboat has a mass of 51.6 kg. When a 82.9-kg person gets into the boat, the boat floats 8.00…
A:
Q: A uniform circular disk whose radius R is 19.8 cm is suspended as a physical pendulum from a point…
A:
Q: A 0.207-kg particle undergoes simple harmonic motion along the horizontal x-axis between the points…
A:
Q: A bungee jumper with mass 65.0 kg jumps from a high bridge. After arriving at her lowest point, she…
A: Frequency in SHM is defined as f=12πkm Here f is frequency, k is spring constant and m is mass.…
Q: Find the frequency, f, the equilibrium position, x, the amplitude, A, the maximum speed, vmax, the…
A:
Q: A particle with mass 2.89 kg oscillates horizontally at the end of a horizontal spring. A student…
A: Given, Mass of the particle (m)=2.89 kg Amplitude of Oscillation (A)=0.963 m Time duration (t)=127 s…
Q: An object of mass 1.20 kg is suspended by a spring which stretches 12.0 cm when the object is…
A: Given data: The mass of object is m=1.2 kg. The initial displacement is x=12 cm×1 m100 cm=0.12 m.…
Q: A particle starts from its equilibrium position and oscillates with an amplitude of 18.0 cm and a…
A: Given:Amplitude, A = 18 cmperiod, T = 24 s Solution:We know that angular velocity is given as:ω =…
Q: A 22 kg mass connected to a spring of force constant 178 N/m oscillates on a horizontal,…
A: According to conservation of energy Kinetic energy +potential energy is constant
Q: A block of unknown mass is attached to a spring of spring constant 10.1 N/m and undergoes simple…
A:
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 uniform circular disk whose radius R is 17.8 cm is suspended as a physical pendulum from a point…
A: (b) Given: The radius of the circular disk is 17.8 cm. Introduction: A time period is a time taken…
Q: A 0.45 kg block rests on a frictionless horizontal countertop, where it is attached to a massless…
A:
Q: A 0.110 kg body undergoes simple harmonic motion of amplitude 7.19 cm and period 0.500 s. (a) What…
A: (a)The angular frequency of the body is,Substitute the values,
Q: In the figure, block 2 of mass 1.80 kg oscillates on the end of a spring in SHM with a period of…
A: Given m2=1.8 kg m1=3.6 kg T=24ms t=6ms v1=7.8m/s
Q: A 0.369 kg body undergoes simple harmonic motion of amplitude 7.85 cm and period 0.250 s. (a) What…
A: Ans:- Image-1
Q: A mass-spring system oscillates with an amplitude of 4.00 cm. If the spring constant is 241 N/m and…
A: Given data: Amplitude (A) = 4.00 cm = 4.00×10-2 m Spring constant (k) = 241 N/m Mass (m) = 472 g =…
Q: 5.15 kg mass attached to a spring oscillates with a period of 0.410 s and an amplitude of 22.0 cm.…
A:
Q: particle with mass 2.57 kg2.57 kg oscillates horizontally at the end of a horizontal spring. A…
A:
Q: A vertical spring stretches 8.2 cm when a 1.6 kg block is hung from its end. (a) Calculate the…
A:
A Physical pendulum consisting of a uniform solid disc of mass 563g and radius 14.4 cm supported in a vertical plane by a pivot located distance 10.2 cm from the center of the disk. The disk is displaced by small angle and released. Find the period of the resulting
![](/static/compass_v2/shared-icons/check-mark.png)
Step by step
Solved in 2 steps
![Blurred answer](/static/compass_v2/solution-images/blurred-answer.jpg)
- A block is attached to a spring with a sping constant of 7.6 N/m and it undergoes simple harmonic motion. The amplitude of the blocks motion is 6.30 cm. When the block is halfway between its equilibrium position and the end point of it's motion, its speed is measured to be 28.9 cm/s. Calculate : (a) the mass of the block, (b) the period of the motion, and (c) the maximum acceleration of the block.A uniform stick of length L and mass m is pivoted at one of its ends. Derive an equation for the period of oscillation when the stick is set into small oscillation. Answer in terms of m, g, and L as needed.A piston in a gasoline engine oscillates with simple harmonic motion. The displacement of the piston varies according to x(t) = (6.00 cm) cos (2t + ), where x is in cm and t is in seconds. At t= 0, find: i) the position of the particle, ii) its velocity, iii) its acceleration, iv) the period, and v) the amplitude.
- The position of an oscillating object in cm is described by x = (3) cos 8πt, where t is in seconds. Find the first time the particle reaches the equilibrium position after the oscillation has started.A 2.00 kg mass attatched to a spring oscillates with a period of 0.400 s and an amplitude of 20.0 cm. Find: (a) the total mechanical energy of the system (b) the maximum speed of the massAn object oscillating with an amplitude of 3.50 cm reaches a maximum speed of 26.0 cm/s. Find its speed when the displacement is 1.75 cm.
- The magnitude of the maximum velocity of a mass attached to a spring in SHM is 4.85 m/s. The period of the motion is 0.328 s. (a) What is the amplitude of the oscillation? (b) Assuming at t = 0 x has its maximum value, what is the velocity of the mass 2.50 s after its motion began?A0.366 kg body undergoes simple harmonic motion of amplitude 6.08 cm and period 0.500 s. (a) What is the magnitude of the maximum force acting on it? (b) If the oscillations are produced by a spring, what is the spring constant? (a) Number i Units (b) Number i UnitsLet the spring have a mass of 191.3 +/- 01g. A 75+/- 01 g mass is attached to the spring. The mass is displaced 1/2 inch and released from rest. After fitting the position data with a sine fit, the position amplitude is found to be 0.0146+/- 0.0003 M. A) calculate the angular frequency of the mass (with uncertainty) b) Determine the amplitude of the velocity of the mass (with uncertainty) c) Find the amplitude of the acceleration (with uncertainty)
- A mass 566g is attached to an ideal spring. Once set in motion the mass-spring system is a harmonic oscillator. This mass spring system has a total mechanical energy of 226.J. If the oscillation amplitude is 9.318cm, what is the maximum speed of the mass (in)?A vertical spring stretches 13 cm when a 3.4 kg block is hung from its end. (a) Calculate the spring constant. This block is then displaced an additional 3.7 cm downward and released from rest. Find the (b) period, (c) frequency, (d) amplitude, and (e) maximum speed of the resulting SHM.A 500 g mass is hung from a vertical spring and allowed to come to rest or its equilibrium position. As a result, the spring is stretched by 10 cm. The mass is then pulled down an additional 15 cm and released so that it oscillates in a SHM. Find the amplitude and frequency of the SHM and write down the equation of the position as a function of time.