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A motorist drives along a straight road at a constant speed of 15.0m/s. Just as she passes a parked motorcycle police officer,the officer starts to accelerate at 2.00m/s2. Assuming the officer maintains this acceleration,
(a) determine the time it takes the police officer to reachthe motorist.
(b) Find the speed of the officer as they overtake themotorist.
(c) Find the total displacement of the officer as theyovertake the motorist.
Calculate the edge length of a cube that has the same volume as a sphere of radius 4.0 cm. How much greater is the surface area of the cube than that of the sphere
An ac series R-L-C circuit contains a 120 ohm resistor, a 2.00 uf capacitor, and a 5.00 mH inductor. Find the resonance angular frequency
in the bohr model of the hydrogen atom an electron in the 4th excited state moves at a speed of 1.37 105 ms in a
catching a wave a 71 kg surfer starts with a speed of 1.3 ms drops through a height of 1.95 m and ends with a speed of
Please solve this problem for me: A large cruise ship of mass 7.00 107 kg has a speed of 10.0 m/s at some instant. How much work is required to stop it
A rock is suspended from the string and moves downward at constant speed. Which statement is true concerning the tension in the string if air resistance is ignored.
Electrons are accelerated through a potential difference of 39.0 V. The beam of electrons then passes through a single slit. estimate the width of the slit
A thin hemispherical shell of radius R has a uniform surface charge, Find the electric field at the center of the base of the hemispherical shell
A spherical weather balloon os filled with Hydrogen until itsradius is 3m. Total mass including instruments is 15kg. Find buoyant force acting on the balloon
Water enters a pipe with a cross sectional area of 3.0 cm2 with a velocity of 3.0 m/s. What is the cross sectional area of the constricted portion of the pipe
This problem introduces the concept of tension. The instance is a rope, oriented vertically, that is being pulled from both ends. Let and (with u for up and d for down) represent the magnitude of the forces acting on the top and bottom of the rope..
a particle is thrown upwards from the ground. it experiences constant air resistance which produces a retardation of 2
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