2. Maria and Rory are using a spring launcher to move a 125 g block to the top of a ramp. The spring launcher is at the base of the ramp and consists of a platform and a spring with a force constant of 420 N/m. The horizontal surface at the base of the ramp is smooth and frictionless. They compress the spring by 0.12 m with the block resting against the spring launcher. Once they let go, the block travels up the 1.4 m ramp and comes to rest at the top of the ramp. The top of the ramp is 1.0 m above the ground. Ramp Experiment Ad= 1.4 m smooth frictionless surface What is the average frictional force acting on the block as it moves up the ramp? Ah=1.0 m
2. Maria and Rory are using a spring launcher to move a 125 g block to the top of a ramp. The spring launcher is at the base of the ramp and consists of a platform and a spring with a force constant of 420 N/m. The horizontal surface at the base of the ramp is smooth and frictionless. They compress the spring by 0.12 m with the block resting against the spring launcher. Once they let go, the block travels up the 1.4 m ramp and comes to rest at the top of the ramp. The top of the ramp is 1.0 m above the ground. Ramp Experiment Ad= 1.4 m smooth frictionless surface What is the average frictional force acting on the block as it moves up the ramp? Ah=1.0 m
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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![2. Maria and Rory are using a spring launcher to move a 125 g block to the top of a ramp. The
spring launcher is at the base of the ramp and consists of a platform and a spring with a
force constant of 420 N/m. The horizontal surface at the base of the ramp is smooth and
frictionless.
They compress the spring by 0.12 m with the block resting against the spring launcher. Once
they let go, the block travels up the 1.4 m ramp and comes to rest at the top of the ramp.
The top of the ramp is 1.0 m above the ground.
Ramp Experiment
Ad= 1.4 m
smooth
frictionless
surface
What is the average frictional force acting on the block as it moves up the ramp?
Ah=1.0 m](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fa7634a6a-5ecc-40e2-9892-46ba7a4cefd4%2Fdc098abf-962c-4d94-800e-f961089f5692%2F2hi0qz_processed.jpeg&w=3840&q=75)
Transcribed Image Text:2. Maria and Rory are using a spring launcher to move a 125 g block to the top of a ramp. The
spring launcher is at the base of the ramp and consists of a platform and a spring with a
force constant of 420 N/m. The horizontal surface at the base of the ramp is smooth and
frictionless.
They compress the spring by 0.12 m with the block resting against the spring launcher. Once
they let go, the block travels up the 1.4 m ramp and comes to rest at the top of the ramp.
The top of the ramp is 1.0 m above the ground.
Ramp Experiment
Ad= 1.4 m
smooth
frictionless
surface
What is the average frictional force acting on the block as it moves up the ramp?
Ah=1.0 m
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