Determine the tension P in the cable which will give the 107-lb block a steady acceleration of 4.4 ft/sec2 up the incline. 39° 107 Ib Hi -0.40 36° Part 1 Write the equations of motion in the x- and y-directions. 4.4 ft/sec? 107 lb 39° 36° Answers: EF, : FN + P+ i Ib = ( i i EFy : FN+ i P+ i Ib = 0 i
Determine the tension P in the cable which will give the 107-lb block a steady acceleration of 4.4 ft/sec2 up the incline. 39° 107 Ib Hi -0.40 36° Part 1 Write the equations of motion in the x- and y-directions. 4.4 ft/sec? 107 lb 39° 36° Answers: EF, : FN + P+ i Ib = ( i i EFy : FN+ i P+ i Ib = 0 i
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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Transcribed Image Text:Determine the tension P in the cable which will give the 107-lb block a steady acceleration of 4.4 ft/sec2 up the incline.
39°
107 Ib
Hi -0.40
36°
Part 1
Write the equations of motion in the x- and y-directions.
4.4 ft/sec?
107 lb
39°
36°
Answers:
EF, :
FN +
P+ i
Ib = ( i
i
EFy :
FN+ i
P+ i
Ib = 0
i
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