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Two car approach an intersection at a right angle to each other. If an inelastic collision occurs at the intersection, determine the x component of the final momentum of the combined vehicles. Car 1 of mass 882.7 kg approaches the intersection from the left with a speed of 28.45 m/s. Car 2 of mass 1,778.35 kg approaches the intersection from the south with a speed of 10.68 m/s.
A current of 7.93 A in a solenoid of length 14.2 cm creates a 0.327-T magnetic field at the center of the solenoid. How many turns does this solenoid contain
A net force of 7 newtons acts on an object that weighs 49 newtons. What is the resulting acceleration
A small block of mass m = 1.8 kg slides, without friction, along the loop-the-loop track shown. What is the kinetic energy of the mass at the point A on the loop
X-rays with a wavelength of 7.02 x 10^-12 m strike a stationary electron and the reflected photon is scattered 75 degrees relative to the incident photon
two wires each having a weight per unit length of 1.00 times10-4 n m are parallel with one directly above the other.
A pair of speakers separated by 0.700m are driven by the same oscillator at a frequency if 690Hz. an observer originally positioned at one of the speakers begins to walk along a line perpendicular to the line joining the speakers.
A car is moving with constant velocity v, and has wheels of radius R. At what angle does the piece of mud drop off the wheel
A proton moving at v1 = 7.9Mm/s collides elastically and head-on with a second proton moving in the opposite direction at v2 = 8.6Mm/s. Find the velocity of the first proton after the collision
A small, 1.90-mm-diameter circular loop with R = 1.40×10?2? is at the center of a large 110-mm-diameter circular loop. What is the induced current in the inner loop
A body is displaced (1.5i - 2.0j) m while being acted on by the force (2.0i - 3.0j) N. How much work is done on the body by the force
A crate of mass 10.2 kg is pulled up a rough incline with an initial speed of 1.60 m/s. What is the change in kinetic energy of the crate
An ideal gas expands at a constant pressure of 2.1 atm from 457 mL to 713 mL. Heat then flows out of the gas, at constant volume, What is the total heat flow into the gas
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