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Three forces acting on an object are given by F1 = (-2.00i + 2.00j) N, F2 = (5.00i -3.00j) N, and F3 = (-45.oi) N. The object experiences an acceleration of magnitude 3.75 m/s2. What is the direction of the acceleration? Whats is the mass of the object? If the object is intially at rest, what is the speed after 10.0 s? What are the velocity components of the object after 10.0 s?
Estimate the capacitance of the series combination of capacitors shown.
Refer to Interactive Solution 19.25 to review one way in which this problem can be solved, What is the distance of closest approach
an electron is accelerated by a constant electric field of magnitude 290 nc. a find the acceleration of the electron. b
A cylindrical tank with a large diameter is filled with water to a depth D = 0.310 m. What is the rate at which water flows out, in cubic meters per second
Water at a pressure of 3.8 atm at street level flows into an office building at a speed of 0.55 m/s through a pipe 4.4 cm in diameter. The pipes taper down to 2.6 cm in diameter by the top floor, 20 m above .
suppose a single electron orbits about a nucleus containing two protons 2e as would be the case for a helium atom from
An object is located 14.0 cm in front of a convex mirror, the image being 7.50 cm behind the mirror. A second object, twice as tall asthe first one, is placed in front of the mirror, but at a different location.
A bicycle with wheels 48 cm in radius travels down the street with an initial speed of 7.00 m/s. What is the initial angular velocity of the wheels
A resonant circuit using a 220 nF capacitor is to resonate at 18.0 kHz. The inductor in the circuit is to be a solenoid, How many loops will the inductor contain?
Consider a spherical conducting shell where the conductor has a netcharge Q on it with no charges in the cavity. Does the voltage varywithin the cavity from place to place? Explain why or why not.
Starting with the three particle system, find the change in electric potential energy if the alpha particle is allowed to escape to infinity while the two protons remain fixed in place. (Throughout, neglect any radiation effects.)
Two blocks are attached by a light string with one resting on a rough table and the other hanging over the edge via a frictionless pulley. If the blocks are initially at rest, the tension force is equal to the hanging weight.
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