Vector Mechanics For Engineers
Vector Mechanics For Engineers
12th Edition
ISBN: 9781259977305
Author: BEER, Ferdinand P. (ferdinand Pierre), Johnston, E. Russell (elwood Russell), Cornwell, Phillip J., SELF, Brian P.
Publisher: Mcgraw-hill Education,
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Chapter 11.5, Problem 11.161P
To determine

(a)

Velocity and acceleration of robot tip A.

Expert Solution
Check Mark

Answer to Problem 11.161P

We got,

Final velocity, v=3.927 ft/s

Final acceleration, a=5.994 ft/s2

Explanation of Solution

Given information:

Time t=3 s

r=3+0.5cos(4θ)

θ=π4t2+πt

Concept used:

Velocity vr=r˙, vθ=rθ˙

Acceleration ar=r¨rθ˙2, aθ=rθ¨+2r˙θ˙

Calculation:

Velocity,

vr=r˙vr=drdt=drdθ×dθdtvr=ddθ(3+0.5cos(4θ))×ddt(π4t2+πt)

vr=(2sin(4θ))×(π2t+π)vr=(2cos(4(π4t2+πt)))×(π2t+π)Put t=3 svr=(2sin(4(π432+3π)))×(3π2+π)vr=0

And,

vθ=rθ˙vθ=r×dθdtvθ=(3+0.5cos(4θ))×ddt(π4t2+πt)

vθ=(3+0.5cos(4θ))×(π2t+π)vθ=(3+0.5cos(4(π4t2+πt)))×(π2t+π)Put t=3 svθ=(3+0.5cos(4(π432+3π)))×(3π2+π)vθ=3.927

Final velocity,

v=vr2+vθ2v=02+(3.927)2v=3.927

Radial acceleration,

ar=r¨rθ˙2ar=ddtr˙rθ˙2

ar={ddt[(2cos(4(π4t2+πt)))×(π2t+π)][(3+0.5cos(4(π4t2+πt)))×(π2t+π)2]}t=3

ar={[(2cos(4(π4t2+πt)))×ddt(π2t+π)]+[ddt(2cos(4(π4t2+πt)))×(π2t+π)][(3+0.5cos(4(π4t2+πt)))×(π2t+π)2]}t=3

ar={[πcos(4(π4t2+πt))]+[(8sin(4(π4t2+πt)))×(π2t+π)2][(3+0.5cos(4(π4t2+πt)))×(π2t+π)2]}t=3

ar={[πcos(4(π432+3π))]+[(8sin(4(π432+3π)))×(π23+π)2][(3+0.5cos(4(π432+3π)))×(π23+π)2]}

ar=0.78 ft/s2

Transverse acceleration,

aθ=rθ¨+2r˙θ˙

aθ=rθ¨+2r˙θ˙aθ=[{(3+0.5cos(4(π4t2+πt)))×(π2)}+2{(2cos(4(π4t2+πt)))×(π2t+π)×(π2t+π)}]t=3aθ=[{(3+0.5cos(4(π432+3π)))×(π2)}+2{(2cos(4(π432+3π)))×(π23+π)×(π23+π)}]t=3aθ=5.9426 ft/s2

Final acceleration,

a=ar2+aθ2a=0.782+(5.9426)2a=5.994 ft/s2

Conclusion:

We got,

Final velocity, v=3.927 ft/s

Final acceleration, a=5.994 ft/s2

To determine

(b)

To plot: the path of tip.

Expert Solution
Check Mark

Explanation of Solution

Given information:

Time 0t4 s

r=3+0.5cos(4θ)

θ=π4t2+πt

Concept used:

MS Excel shall be used to plot the path.

Calculation:

We know

r=3+0.5cos(4θ)r=3+0.5cos{4(π4t2+πt)}

Following table is being made,

Vector Mechanics For Engineers, Chapter 11.5, Problem 11.161P , additional homework tip  1

Vector Mechanics For Engineers, Chapter 11.5, Problem 11.161P , additional homework tip  2

Conclusion:

Plot has been shown above.

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Chapter 11 Solutions

Vector Mechanics For Engineers

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