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A block of mass 6.00 kg is placed on a horizontal surface. A string attached to the block is pulled horizontally resulting in a 2.00 m/s2 acceleration by the block. The sliding kinetic friction force on the block is 12.0 N. What is the tension in the string? (g=9.8 m/s^2)
At what angle should the road bank on the curve so that no frictional force is required by a vehicle travelling around the curve at the speed limit.
When the brakes of a certain car are applied, a deceleration of 6.0 m/s^2 is produced. How far will it travel in that time
A point charge q1=4nC is placed at the origin, and a second point charge q2= -3nC is placed on the x-axis at x= 20 cm. A third point charge q3=2.00 nC is to be placed on the x-axis between q1 and q2.
question1a carnot engine operates with an effectiveness of 24.0 percent as the temperature of its cold reservoir is 290
Two equal diverging lenses are separated by 17 centimeter. The focal length of each lens is -8 centimeter. Find the final image distance relative to lens on the right
A firehose 15 m long is uncoiled by pulling the nozzle end horizontally along a frictionless surface at the steady speed of 2.9 m/s. How much work has been done on the hose
a 0.41 kg soccer ball approaches a player horizontally with a velocity of 17 m/s to the north. what impulse was delivered to the ball by the player
A 2400 kg satellite is in a circular orbit around a planet. The satellite travels with a constant speed of 6.67X10^3 m/s. What is the acceleration of the satellite
A 0.042 kg aluminum bullet traveling at 456 m/s strikes an armor plate and comes to a stop. what is the bullet's temperature change in degrees Celsius
Although both stars probably formed from the same clump of gas, more massive one must have had its birth slowed so that it became a key -sequence star millions of years later than its less massive companion.
A spring oscillator is designed with a mass of 0.258 kg. It operates while immersed in a damping fluid, selected so that the oscillation amplitude will decrease to 1.00% of its initial value in 8.34 s
A positively charged particle moves in the positive z-direction. The magnetic force on the particle is in the positive y-direction. What can you conclude about the x-component of the magnetic field at the particle’s position? A. Bx > 0 B. Bx = 0 C. B..
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