Design a pendulum: Assuming the mass of the bob to be 0.20 kg and the initial angle to be 15 degrees, what length must the pendulum have in order to obtain a 1.00 second period?

Design a pendulum: Assuming the mass of the bob to be 0.20 kg and the initial...
A simple pendulum has a rod of length LL with a bob of mass
m=0.100 kg at the end of the rod. The rod is supposed to be very
light and all the mass is imagined to be concentrated in the
bob.
A) What is the tension in the string when the pendulum swings by
an angle θ=5.00∘?
B) What is the magnitude of the restoring force on the bob when
θ=5.00∘?
C) If you drop a perpendicular from the...
A simple pendulum has a mass 6.7 kg and a length 2.51 meters. How much initial velocity v in m/s must be given to the mass with the pendulum if it is initially hanging vertically downward in order for it to later reach an angle of 39.7 degrees?
A simple pendulum has a mass 7.2 kg, length 1.96 meters, and initial velocity 2.3 in meters/second when the pendulum is vertical downward. What is the largest angle \thetaθ in degrees that the mass will later reach?
A simple pendulum has a mass 6.3 kg, length 2.42 meters, and initial velocity 4.8 in meters/second when the pendulum is vertical downward. What is the largest angle \theta θ in degrees that the mass will later reach?
In a ballistic pendulum, an object of mass m is fired with an initial speed v0 at a pendulum bob. The bob has a mass M, which is suspended by a rod of length L and negligible mass. After the collision, the pendulum and
object stick together and swing to a maximum angular displacement θ as shown.A. Find an expression for v0, the initial speed of the fired object.Express your answer in terms of some or all of the variables m, M, L, and...
A pendulum with a bob of mass 0.400 kg ball is released from an angle of 10.00°. You find that the time for 10 oscillations is 12.0 s. What is the length of the string?
A pendulum is 0.864 m long and the bob has a mass of 1.04 kg. When the string makes an angle of θ= 14.8 degrees with the vertical, the bob is moving at 1.44 m/s. Find the tangential and radial acceleration components and the tension in the string. (Hint: Draw an FBD for the bob. Choose the x-axis to be tangential to the motion of the bob and the y-axis to be radial. Apply Newton's second law.) at = ______...
Consider a conical pendulum with a bob of mass m = 78.0 kg on a string of length L = 10.0 m that makes an angle of θ = 7.00° with the vertical. (Consider +î to be towards the center of the circular path and +ĵ to be upward.) (a) Determine the horizontal and vertical components of the force exerted by the string on the pendulum. (b) Determine the radial acceleration of the bob.
The length of a simple
pendulum is 0.66 m, the pendulum bob has a mass of 305 grams, and
it is released at an angle of 11° to the vertical. (a) With what
frequency does it vibrate? Assume SHM. Hz (b) What is the pendulum
bob's speed when it passes through the lowest point of the swing?
m/s (c) What is the total energy stored in this oscillation,
assuming no losses? J
My Notes Ask Your Teacher 8. -13 points...
On the planet Newtonia, a simple pendulum having a bob with a mass of 1.31 kg and a length of 188.2 cm takes 1.58 s , when released from rest, to swing through an angle of 11.5 ∘, where it again has zero speed. The circumference of Newtonia is measured to be 5.14×104 km . What is the mass of the planet Newtonia? (in kg)