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Calculate stopping distance from 62 mph for a vehicle with a tire/road friction coefficient equal to 0.6, 0.8 and 1.0, successively. Assume the vehicle can be modeled using particle dynamics. Also, calculate the car's maximum forward velocity for each coefficient when driven continuously around a 100 ft. radius skid pad.
A criminal is escaping across a rooftop and runs off the roof horizontally at a speed of 5.9 m/s, hoping to land on the roof ofan adjacent building. Air resistance is negligible.
A disk spinning with angular velocity , w=12 rad/s slows down to a stop in 4 seconds. What is the angular displacement delta theta
A tennis player receives a shot with the ball (0.060 0 kg) traveling horizontally at 55.5 m/s and returns the shot with the ball traveling horizontally at 36.0 m/s in the opposite direction. find the impulse delivered to the ball by the tennis racq..
A defibrillator consists of a 16.7-µF capacitor that is charged to 9.0 kV. how much charge passes through the body tissues
What is the maximum speed of the car (in km/hr) in the similar turn in the rain, when the coefficient of static friction is reduced to 0.720.
A coil of 150 turns of wire is in the form of a circle, carries a current of 63 mA, and sits in the center of a dipole magnet, What is the radius of the coils
What is the electric potential energy in joules of two electrons separated by 1.33 nm, What would be it be if the separation was doubled
You are studying guitar strings and are able to measure a few of (but not all) the standing wave frequencies for a particular string. what is the highest possible value for the fundamental frequency
To understand how to apply the equations for one-dimensional motion to the x and y directions separately in order to derive standard formulas for the range and height of a projectile
how much time passes before the brick lands on the ground.
q1. a certain kind of glass has an index of refraction of 1.660 for blue light of wavelength 420 nm and an index of
a 327 kg satellite is in circular orbit around the earth and moving at a speed of 2.61 kms. how much work must be done
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