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A 3.75-kg box is pulled up a ramp that is inclined at an angle of 33.0° with respect to the horizontal, as shown below. The coefficient of kinetic friction between the box and the ramp is 0.135, and the rope pulling the box is parallel to the ramp. If the box accelerates up the ramp at a rate of 2.09 m/s2, what must the tension FT in the rope be? Use g = 9.81 m/s2 for the acceleration due to gravity
Assume that you release a small ball from rest at a depth d below the surface in a pool of water and the ball rises and because the ball emerges from the water it shoots up a distance 3d above the water.
The frequency at the other end of the broadcast band is 0.538MHz . What is the maximum capacitance of the capacitor if the oscillation frequency is adjustable over the range of the broadcast band
An arrow is shot straight up from a pit 12 m below ground at 38 m/s. Find its max height above ground
Charge at Center of Cube A point charge of4.0 µC is at the center of a cubical Gaussian surface 39 cm on edge. What is the net electric flux through the surface?
A series RLC circuit with L = 5 mH, C = 3.0 μF, and R = 6.8 ohm is driven by an Ideal ac voltage source that has a peak emf of 80 V and a variable angular frequency w. Find the Q factor. Find the resonance width for the circuit.
Light traveling in water strikes the boundary between two mediums at an angle of 35 degrees. what is the wavelength of the refracted light traveling at 1.85x10^8m/s
What is the instantaneous power, at a time of 0.00700 seconds, dissipated by a 200 ohm resistor in a resonant AC circuit powered by a generator with a 21.0 V highest potential difference operating at 5000 rad/s .
How long will it take a 1,000W electric plate to bring 0.5kg of water to boil from a temperature of 20 degrees celcius? Assume all of the heat produced by the electric plate goes into heating the water.
three charges q1 q2 and q3 are located at the corners of an equilateral triangle with side length of 1.11 m. find the
An object of mass 3.0 kg and travelling at 2.0 m/s collides head-on with a 2.0 kg object travelling in the opposite direction at 3.0 m/s. Determine the velocity of each object after impact
q1. the potential at location a is 419 v. a positively charged particle is released there from rest and arrives at
a 1000 kg rollercoaster moves in a vertical circular loop of radius 10m as illustrated below. what is the magnitude of
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