1) What average force is required to stop a 150-kg bike in 2.0 s if it is traveling at 25 km/h (**Needs to be in m/s)
2) What average force is required to stop a 950-kg car in 9.2 s if the car is traveling at 95 km/h (**Needs to be in m/s)

1) What average force is required to stop a 150-kg bike in 2.0 s if it...
What average force is required to stop a 950 -Kg car at 95 Km/h?
What average force is required to stop a 1700 kg car in 9.0 s if the car is traveling at 85 km/h ? Express your answer to two significant figures and include the appropriate units. Enter positive value if the direction of the force is in the direction of the initial velocity and negative value if the direction of the force is in the direction opposite to the initial velocity.
What average force is required to stop a 1900 kg car in 8.0 s if the car is traveling at 100 km/h ? Express your answer to two significant figures and include the appropriate units. Enter positive value if the direction of the force is in the direction of the initial velocity and negative value if the direction of the force is in the direction opposite to the initial velocity.
What is the magnitude of the average force required to stop in 1800
kg car in 7.0 seconds if the car is traveling at 95 km/hours?
Express your answer using two significant figures.
Could you please look at my problem that I attempted to solve
(attached) and advise what I did wrong.
d 11000 Dou 1oo0 End
Questions about a 700 kg car: 1.) What is the work required (in J) to stop the car if it is going 20 m/s and stops in a distance of 35m? 2.) Now suppose the car were traveling 40 m/s. What is the work required (in J) to stop it? 3.) What distance (in m) is required for the car in the previous provlem to stop when traveling 40 m/s? Thanks
What is the distance required to stop an average passenger car when brakes are applied on a 3.3% downgrade if that vehicle was originally traveling at 56 km/h?
What average net force is required to bring to rest a 1000 kg car that is initially moving at 100 km / h over a distance of 45.0 m?
A car of mass 2.0 x 103 kg is initially moving at 75 km/h when the brakes are applied and the car is brought to a stop in 25 m. Assuming the force that stops the car is constant, find the magnitude of that force that stop the car. A. - 15.73x103 N B. -17.3x103 N C. 16.73x103 N D. 12.73x103 N
In order to stop a 1500 kg car that is originally moving at 25 m/s, and if the car stops over a distance of 50 m, what average force must act on the car?
1a . A constant force of 32.3 N pulls on a 20 kg block on a horizontal surface. The force is directed at 30o above the horizontal. A friction force impedes the motion. If at the start of the motion the block was at rest and after 11 meters it has a velocity of 3, what is the coefficient of friction? 1b. What is the work done by the constant force when the block is moved 8 meters? 2.What constant,...