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A pilot, whose mass is 72.0 kg, makes a loop-the-loop in a fast jet. Assume that the jet maintains a constant speed of 185 m/s and that the radius of the loop-the-loop is 1.570 km. What is the apparent weight that the pilot feels (i.e., the force with which the pilot presses against the seat) at the bottom of the loop-the-loop?
What is the pilot's apparent weight at the top of the loop-the-loop?
Two train cars are on a straight, horizontal track. One car starts at rest and is put in motion with a constant acceleration of 1.80 m/s2. Where will the cars collide
A pendulum consists of a 3.1 kg stone swinging on a 4.2 m string of negligible mass. The stone has a speed of 7.9 m/s when it passes its lowest point. what is the total mechanical energy of the system
In a Young's double-slit experiment, the wavelength of the light used is 535 nm (in vacuum), Determine the angle in degrees that locates the second dark fringe
A spherical capacitor with a 1.20 mm gap between the spheres has a capacitance of 60.0 pf. What are the diameters of the two spheres
A plane mirror is lying flat in the x-y plane with its reflecting surface facing up. A point source of light is located at (x=0.0 m, y=2.0 m, z=3.0 m). What is the distance from the object to the image
How far from the dog would the suitcase land? You can ignore air resistance.
A plane accelerates from rest at a constant rate of 5.00m/s2 along a runway that is 1800m long. What is the time tTO needed to take off
A person with a weight of 241 lb stands on two feet with their weight equally distributed between the two shoes, What is the pressure on each shoe independently
Consider a constant net force of 15.0 N acting on 22 degrees below the x-axis, find the work done by the net force.
A 1.9 kg mass, m2, on a theta = 33.6o incline is connected to a 5.4 kg mass, m1, on a horizontal surface. find the magnitude of the tension in the connecting cord
Assume all temperatures to be exact, and neglect significant figures for small changes in dimension. What is the corresponding change on the Fahrenheit scale
q1. every day our earth receives 1.55times1022 j energy from the sun. if we were able to use 0.85 percent of this
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