Figure 1- Tiling the tinp until the Eluck start. lo slide. Draw a Free nody Diagrau for a block of mass M restüng on a ted surface thiat is raised by 0 tron horizontal, as secu un Figure 1-3, bcing -ld in place by static frietion with a coeflicient Q0.6. For the case where it's jnst abont to start noving (zero eceleration. bit nuaximum stalic frictiou fonce), set yp Newton's Second aw for x and y dinnensions, aud solve for Du may want to use axes otlier than horizontal and veitical ji tems of M, g. and 8. Hint:

University Physics Volume 1
18th Edition
ISBN:9781938168277
Author:William Moebs, Samuel J. Ling, Jeff Sanny
Publisher:William Moebs, Samuel J. Ling, Jeff Sanny
Chapter6: Applications Of Newton's Laws
Section: Chapter Questions
Problem 58P: Calculate the maximum acceleration of a car that is heading up a 4.00slope (one that makes an angle...
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Q0.6
向
Situation 3: Resting on an inclined plane
Figure 1- Tiling the tarp until the Elock starts lo slide.
Draw u Free Body Diagrai for a block of mass M resting on a
tilted surface that is raised by8 trom horizontal. as secu in Figre 1-3, being
held in place by static friction with a coeflicient
Q0.6. For the case where it's jnst about to start noving (zere
acceleration. but maximum static frictiou force). set up Newton's Second
Law for x and y dinensions, aud solve for i in terms of M. g. and 8. Hint:
you may want to use axes other than horizontal and vertical
F6
FIO
F12
Transcribed Image Text:向 Situation 3: Resting on an inclined plane Figure 1- Tiling the tarp until the Elock starts lo slide. Draw u Free Body Diagrai for a block of mass M resting on a tilted surface that is raised by8 trom horizontal. as secu in Figre 1-3, being held in place by static friction with a coeflicient Q0.6. For the case where it's jnst about to start noving (zere acceleration. but maximum static frictiou force). set up Newton's Second Law for x and y dinensions, aud solve for i in terms of M. g. and 8. Hint: you may want to use axes other than horizontal and vertical F6 FIO F12
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