Introductory Mathematics for Engineering Applications
Introductory Mathematics for Engineering Applications
1st Edition
ISBN: 9781118141809
Author: Nathan Klingbeil
Publisher: WILEY
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Chapter 9, Problem 1P

The profile of a gear tooth shown in Fig. P9.1 (a) is approximated by the quadratic equation y ( x ) = 4 k l x ( x l ) .

Chapter 9, Problem 1P, The profile of a gear tooth shown in Fig. P9.1 (a) is approximated by the quadratic equation

(a) Estimate the area A using six rectangles of equal width ( Δ x = l / 6 ) , as shown in Fig. 9.1(b).

(b) Calculate the exact area by evaluating the definite integral, A = 0 l y ( x ) d x .

Expert Solution
Check Mark
To determine

(a)

The estimated area of given function y(x) by rectangle method.

Answer to Problem 1P

The estimated area of given function by rectangle method is 0.643kl2.

Explanation of Solution

Given:

The expression of profile of gear tooth is given as:

  y(x)=4klx(xl) ..... (1)

Number of rectangles given are 6.

Width of the rectangle is given as:

  Δx=l6

Concept used:

The expression of area is given as:

  A=i=1ny(xi)Δx ..... (2)

Here, Δx is the width of rectangle, n are the number of rectangles and y(xi) is the value of given function at xi.

Calculation:

For x1=l6 ,

Substitute l6 for x in equation (1).

  y(l6)=4kl(l6)(l6l)=4kl(l6)( 5l6)=0.55kl

Therefore,

  y(x1)=0.55kl

For x2=l3 ,

Substitute l3 for x in equation (1).

  y(l3)=4kl(l3)(l3l)=4kl(l3)( 2l3)=0.88kl

Therefore,

  y(x2)=0.88kl

For x3=l2 ,

Substitute l2 for x in equation (1).

  y(l2)=4kl(l2)(l2l)=4kl(l2)( l2)=kl

Therefore,

  y(x3)=kl

For x4=2l3 ,

Substitute 2l3 for x in equation (1).

  y( 2l3)=4kl( 2l3)( 2l3l)=4kl( 2l3)( l3)=0.88kl

Therefore,

  y(x4)=0.88kl

For x5=5l6 ,

Substitute 5l6 for x in equation (1).

  y( 5l6)=4kl( 5l6)( 5l6l)=4kl( 5l6)( l6)=0.55kl

Therefore,

  y(x5)=0.55kl

  x6=l

Substitute l for x in equation (1).

  y(l)=4kl(l)(ll)=4kl(l)(0)=0

Therefore,

  y(x6)=0

Substitute 6 for n and l6 for Δx in equation (2).

  A=i=16y(xi)l6 ..... (3)

Equation (3) can be written as:

  A=l6(y( x 1 )+y( x 2 )+y( x 3 )+y( x 4 )+y( x 5 )+y( x 6 )) ..... (4)

Substitute 0.55kl for y(x1), 0.88kl for y(x2), kl for y(x3), 0.88kl for y(x4), 0.55kl for y(x5), 0 for in equation (4).

  A=l6( 0.55kl+0.88kl+kl+0.88kl +0.55kl+0)=l6(3.86kl)=0.643kl2

Conclusion:

Thus, the estimated area of the given function by rectangle method is 0.643kl2.

Expert Solution
Check Mark
To determine

(b)

The exact area of given function y(x) by integration method.

Answer to Problem 1P

The exact area of given function by integration method is 0.67kl2.

Explanation of Solution

Concept used:

The expression of area is given as:

  A=aby(x)dx ..... (5)

Here, y(x) is the given function.

  a, b are the lower and upper limits.

Calculation:

Substitute 0 for a, l for b and 4klx(xl) for y(x) in equation (5).

  A=0l( 4k l x( xl ))dx=0l( 4k l x 2 +4kx)dx=( 4k l( x 3 3 )+4k( x 2 2 ))0l=( 4k x 3 3l+2k x 2)0l

Further simplify for A.

  A=( 4k ( l ) 3 3l+2k ( l )2)( 4k ( 0 ) 3 3l2k ( 0 )2)=( 4k l 2 3+2kl2)(0)=( 4k l 2 +6k l 2 3)=0.67kl2

Conclusion:

Thus, the exact area of given function by integration method is 0.67kl2.

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Chapter 9 Solutions

Introductory Mathematics for Engineering Applications

Ch. 9 - Repeat the problem P9-10 if the shaded area of the...Ch. 9 - Repeat the problem P9-10 if the shaded area of the...Ch. 9 - Repeat the problem P9-10 if the geomectry of a...Ch. 9 - The cross section of an airfoil is described by...Ch. 9 - The geometry of a decorative heat-sink fin of...Ch. 9 - The geometry of a gear tooth is approximated by...Ch. 9 - A cantilever beam is subjected to a quadratic...Ch. 9 - A simply supported beam is subjected to a...Ch. 9 - Determine the velocity v(t) and the position y(t)...Ch. 9 - A particle starts from rest at a position x(0)=0....Ch. 9 - The acceleration of an automobile is measured as...Ch. 9 - A vehicle starting from rest at position x(0)=0 is...Ch. 9 - A vehicle starting from rest at position x(0)=0 is...Ch. 9 - A vehicle starting from rest at position x(0)=0 is...Ch. 9 - The current flowing in a resistor is given by...Ch. 9 - The RLC circuit shown in Fig,. P9.26 has R=10,...Ch. 9 - An input voltage vin=10sin(10t)V is applied to an...Ch. 9 - Repeat problem P9-27 if vin=10e10tV.Ch. 9 - Repeat problem P9-27 if vin=10(1cos(100t))V.Ch. 9 - An input voltage vin=5cos(20t)V is applied to an...Ch. 9 - A current i(t)=10e10tmA is applied to a 100F...Ch. 9 - For the circuit shown in Fig. P9.32, the voltage...Ch. 9 - The sawtooth current i(t) shown in Fig. 9.33 is...Ch. 9 - The sawtooth voltage v(t) shown in Fig. 9.34 is...Ch. 9 - A current i(t) is applied to a capacitor of...Ch. 9 - A biomedical engineer is evaluating an...Ch. 9 - A biomedical engineer measures the velocity...Ch. 9 - A civil engineer designs a building overhung to...Ch. 9 - A building overhang is subjected to a parabolic...
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