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You walk for 6.44 km with at a constant velocity of 2.55 m/s due west, turn around, and then walk with an average velocity of 0.465 m/s due east. From your starting point to your destination, your overall average velocity is 1.21 m/s due west. During the trip, how far east did you walk?
What is the maximum magnetic field of this wave? (c = 3.0 Af- 108 m/s)
A block is released from rest at the top of an incline, which makes a 30° angle with the horizontal. The incline is 12m long and it takes the block 25 seconds to reach the bottom. What is the coefficient of kinetic friction, μk, between the block ..
A long wire has a charge per unit length of 2.80. Find what is the voltage a perpendicular distance of 12.90 centimeter away
four long parallel wires pass through the corners of a square with side 0.12 m. all four wires carry the same magnitude
Heat is added to an open pan of water at 100.0?C, vaporizing the water. How much energy is transferred to the system as heat
A 25.0-g object moving to the right at 16.0 cm/s overtakes and collides elastically with a 9.0-g object moving in the same direction at 15.0 cm/s
A car plus its driver has a mass of 1400 kg. when the driver takes his foot off the accelerator, the car slows from 30 m s^-1 to 20 m s^-1 in 20 s. how much work was done by dissipative forces
The vehicle is released from rest with a restraining force T of 500 N n the control cable which passes around the drum and is secured at D. The wheels roll without slipping. Calculate the inertia of wheel A about its centre in kg.m^2
Suppose that subsequent to this heating, 2.00 104 J of thermal energy is removed from the gas isothermally. Find the final volume in terms of the initial volume of the example
consider three identical metal spheres a b and c. sphere a carries a charge of 4q. sphere b carries a charge of -7q.
Two students decided to fling balloons filled with M1=68.1grams of ice water at coeds who are sun batheing on the roof of asorority house two blocks east of the physics bulding. Calculate the mass of the lead sphere
A sled slides without friction down a small, ice-covered hill. If the sled starts from rest at the top of the hill, its speed at the bottom is 9.00 m/s. Evaluate the speed of the sled at the bottom of the hill after the second run
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