Answered step by step
Verified Expert Solution
Link Copied!

Question

1 Approved Answer

Hello, I need help with this lab questions. here's the table and graph. Would you please answer asap? it's urgent. Thanks in advance. Copy of

Hello, I need help with this lab questions. here's the table and graph. Would you please answer asap? it's urgent. Thanks in advance.

image text in transcribedimage text in transcribedimage text in transcribedimage text in transcribedimage text in transcribedimage text in transcribed
Copy of 6. Static and Kinetic Friction on a Ramp Show Split Question View Atia Rahman Score: 0 / 45 (0.00%) Save & Close Submit for Grading Position, velocity vs Time 0.25 0.2 0.15 Position (m), velocity (m/s) 0. 1 0.05 0.05 0. 1 0.15 0.2 0.25 0.3 0.35 Time (s) Display Curve Fit Uncertainties Position Curve: velocity Curve: O 9 ASUS VivoBook0.05 0.1 Display Curve Fit Uncertainties Position Curve: velocity Curve: y = Ax' + Bx +C y = Ax + B A : 0.501 m A : 0.517 m/ s S )2 S B : 0.0548 m B : 0.0486 m/s C : 0.000378m RMSE : 0.00541 m/ s RMSE : 0.00106 m r : 0.996Score: 0/ 15 2. Use measurements from the video to determine Einstein's acceleration, a , and the coefficient of kinetic friction between the doll and the ramp, /k . Hint: Once Einstein starts moving, the friction between him and the board is determined by the kinetic coefficient of friction, Uk. You can modify the FBD and equations from the previous question to include an acceleration along the ramp. BIUBEEE Score: 0/ 15Conclusion 1. Which of the two coefficients is greater, / or uk ? Do your results agree with the literature? BIUBEEE Of Score: 1 5 ASUS VivoBook

Step by Step Solution

There are 3 Steps involved in it

Step: 1

blur-text-image

Get Instant Access with AI-Powered Solutions

See step-by-step solutions with expert insights and AI powered tools for academic success

Step: 2

blur-text-image

Step: 3

blur-text-image

Ace Your Homework with AI

Get the answers you need in no time with our AI-driven, step-by-step assistance

Get Started

Recommended Textbook for

Introduction To Corporate Finance

Authors: Laurence Booth, Sean Cleary

3rd Edition

978-1118300763, 1118300769

Students also viewed these Physics questions

Question

Is there something else less expensive that would be just as good?

Answered: 1 week ago