Vector Mechanics for Engineers: Statics and Dynamics
Vector Mechanics for Engineers: Statics and Dynamics
12th Edition
ISBN: 9781259638091
Author: Ferdinand P. Beer, E. Russell Johnston Jr., David Mazurek, Phillip J. Cornwell, Brian Self
Publisher: McGraw-Hill Education
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Chapter 3.1, Problem 3.20P

Determine the moment about the origin O of the force F = 4i + 10j + 6k that acts at a point A. Assume that the position vector of A is (a) r = 2i – 3j + 4k, (b) r = 2i + 6j + 3k, (c) r = 2i + 5j + 6k.

(a)

Expert Solution
Check Mark
To determine

The moment about origin O.

Answer to Problem 3.20P

The moment about origin O is (58)i+(4)j+(32)k.

Explanation of Solution

Write an expression to calculate the moment of the force at the origin O due to the force acting at point A.

MO=|r×F| (I)

Here MO is the magnitude of the moment of the force at the origin O due to the force acting at point A, r is the point vector of point A directing from the origin and F is the force vector acting at point A.

Write an expression to represent force vector.

F=Fxi+Fyj+Fzk (II)

Here, Fx is the x component of the force vector, Fy is the y component of the force vector and Fz is the z component of the force vector.

Write an expression to represent position vector of point A.

r=rxi+ryj+rzk (III)

Here, rx is the x component of the position vector, ry is the y component of the position vector and rz is the z component of the position vector.

Write an expression to calculate the moment of force.

r×F=|ijkrxryrzFxFyFz| (IV)

Conclusion:

Substitute (4)i+(10)j+(6)k for F and (2)i+(3)j+(4)k for r in equation (IV) to find MO.

MO=((2)i+(3)j+(4)k)×((4)i+(10)j+(6)k)=|ijk2344106|=(1840)i+(1612)j+(20+12)k=(58)i+(4)j+(32)k

Thus, the moment about origin O is (58)i+(4)j+(32)k.

(b)

Expert Solution
Check Mark
To determine

The moment about origin O.

Answer to Problem 3.20P

The moment about origin O is (6)i+(4)k.

Explanation of Solution

Write an expression to calculate the moment of the force at the origin O due to the force acting at point A.

MO=|r×F| (V)

Write an expression to represent force vector.

F=Fxi+Fyj+Fzk (VI)

Write an expression to represent position vector of point A.

r=rxi+ryj+rzk (VII)

Write an expression to calculate the moment of force.

r×F=|ijkrxryrzFxFyFz| (VIII)

Conclusion:

Substitute (4)i+(10)j+(6)k for F and (2)i+(6)j+(3)k for r in equation (VIII) to find MO.

MO=((2)i+(6)j+(3)k)×((4)i+(10)j+(6)k)=|ijk2634106|=(3630)i+(1212)j+(2024)k=(6)i+(4)k

Thus, the moment about origin O is (6)i+(4)k.

(c)

Expert Solution
Check Mark
To determine

The moment about origin O.

Answer to Problem 3.20P

The moment about origin O is (30)i+(12)j.

Explanation of Solution

Write an expression to calculate the moment of the force at the origin O due to the force acting at point A.

MO=|r×F| (IX)

Write an expression to represent force vector.

F=Fxi+Fyj+Fzk (X)

Write an expression to represent position vector of point A.

r=rxi+ryj+rzk (XI)

Write an expression to calculate the moment of force.

r×F=|ijkrxryrzFxFyFz| (XII)

Conclusion:

Substitute (4)i+(10)j+(6)k for F and (2)i+(5)j+(6)k for r in equation (IV) to find MO.

MO=((2)i+(5)j+(6)k)×((4)i+(10)j+(6)k)=|ijk2564106|=(3060)i+(2412)j+(2020)k=(30)i+(12)j

Thus, the moment about origin is (30)i+(12)j.

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Chapter 3 Solutions

Vector Mechanics for Engineers: Statics and Dynamics

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