Please do not place your response in a .pdf or .cdx format, but Word documents are okay. Thanks! Here's the actual problem: Does the mass of a pendulum (brass vs aluminum) affect the period? Explain.
Please do not place your response in a .pdf or .cdx format, but Word documents are okay. Thanks! Here's the actual problem: Does the angle a pendulum is displaced affect the period? Explain.
Conservation of Energy of a Pendulum
Please do not place your response in a .pdf or .cdx format, but Word documents are okay. Thanks! Here's the actual problem: Discuss conservation of energy as it applies to the period of a pendulum, state any relative equations, and define your variables.
Restoring Force, Damping Force, and Effective Spring Constant
Please do not place your response in a .pdf or .cdx format, but Word documents are okay. Thanks! Here's the actual problem: A) What is a restoring force? B) What is a damping force? C) What is an effective spring constant?
Damped Harmonic Position vs. Time Graph
Please do not place your response in a .pdf or .cdx format, but Word documents are okay. Thanks! Here's the actual problem: Sketch a damped simple harmonic position vs. time graph, as produced from a cart oscillating between two springs. State the mathematical relation that describes the graph and define your variables.
Please do not place your response in a .pdf or .cdx format, but Word documents are okay. Thanks! Here's the actual problem: Describe how the spring constant of a spring is related to the force exerted by the spring.
Please, find the answer from the chose and show me how you got the answer. Thanks
1. Calculate the number of half-wavelength in a ruby laser operating at a wavelength of 694.3 nm in air, given that the ruby rod, silvered on the ends, is exactly 10.0 cm long. The index of refraction of ruby is 1.69 a. 4.97 billion b. 9.94 billion c. 2.49 billion d. 1.00 billion 2. What is the energy of ...continues
32. A 0.50-kg mass oscillates in simple harmonic motion on a spring with a spring constant of 200 N/m. What are: a) The period? b) The frequency of the oscillation? 48. The equation of motion of a particle in vertical SHM is given by y = (10 cm) sin 0.50t. What are the particle's: a) Displacement? b) Velocity? c) Acc ...continues
a) find the power input of a force F acting om a particle that moves with a velocity v for F=(6N)i - (5N)j and v = (-5 m/s)i + (4 m/s)j b) what is the angle between them?
A block of mass m=2.0kg is held in equilibrium on an incline of angle=60 degrees by the horizontal force F. a)determine the value of F b)determine the normal force exerted by the incline on the block (ignore friction).