Package: Loose Leaf For Numerical Methods For Engineers With 1 Semester Connect Access Card
Package: Loose Leaf For Numerical Methods For Engineers With 1 Semester Connect Access Card
7th Edition
ISBN: 9781259289163
Author: Steven C. Chapra Dr., Raymond P. Canale
Publisher: McGraw-Hill Education
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Textbook Question
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Chapter 23, Problem 8P

Compute the first-order central difference approximations of O ( h 4 ) for each of the following functions at the specified location and for the specified step size:

(a) y = x 3 + 4 x 15 at x = 0 , h = 0.25

(b) y = x 2 cos x at x = 0.4 , h = 0.1

(c) y = tan ( x / 3 ) at x = 3 , h = 0.5

(d) y = sin ( 0.5 x ) / x at x = 1 , h = 0.2

(e) y = e x + x at x = 2 , h = 0.2

Compare your results with the analytical solutions.

(a)

Expert Solution
Check Mark
To determine

To calculate: The first order central difference approximations of O(h4) for y=x3+4x15 at x=0, where step size is h=0.25 also compare the result with the analytic solution.

Answer to Problem 8P

Solution:

Analytic value of the first derivative is 4 and numeric value is 4

Explanation of Solution

Given information:

The function, y=x3+4x15

The value of x, x=0

Step size h=0.25

Formula used:

Central difference approximation of O(h4) for first derivative is given by,

f'(xi)=f(xi+2)+8f(xi+1)8f(xi1)+f(xi2)12h

Here, h is step size and xi+1=xi+h

Calculation:

Consider the function,

f(x)=x3+4x15

Differentiate the function with respect to x,

f(x)=3x2+4

Now substitute x=0 in the above equation,

f(0)=3(0)2+4=4

Thus, the analytic value of the first derivative of the function is 4.

Again, consider the function,

f(x)=x3+4x15

Here, xi=0 and h=0.25

The value of xi+1 is,

xi+1=xi+h=0+0.25=0.25

The value of the function at xi+1=0.25 is,

f(0.25)=(0.25)3+4(0.25)15=13.984375

The value of xi+2 is,

xi+2=xi+1+h=0.25+0.25=0.5

The value of the function at xi+2=0.5 is,

f(0.5)=(0.5)3+4(0.5)15=12.875

The value of xi1 is,

xi1=xih=00.25=0.25

The value of the function at xi1=0.25 is,

f(0.25)=(0.25)3+4(0.25)15=16.015625

The value of xi2 is,

xi2=xi1h=0.250.25=0.5

The value of the function at xi2=0.5 is,

f(0.5)=(0.5)3+4(0.5)15=17.125

Now, central difference approximation of O(h4) for first derivative is given by,

f'(xi)=f(xi+2)+8f(xi+1)8f(xi1)+f(xi2)12h

Substitute the values of f(xi+2),f(xi+1),f(xi1),f(xi2),xi=0 and h=0.25 in the above formula,

f'(0)=(12.875)+8(13.984375)8(16.015625)+(17.125)12(0.25)=123=4

Therefore, the analytic value of the first derivative at x=0 is 4 and numerical value is also 4.

(b)

Expert Solution
Check Mark
To determine

To calculate: The first order central difference approximations of O(h4) for y=x2cosx at x=0.4, where step size is h=0.1 also compare the result with the analytic solution.

Answer to Problem 8P

Solution:

Analytic value of the first derivative is 0.674542 and numeric value is 0.674504

Explanation of Solution

Given information:

The function, y=x2cosx

The value of x, x=0.4

Step size h=0.1

Formula used:

Central difference approximation of O(h4) for first derivative is given by,

f'(xi)=f(xi+2)+8f(xi+1)8f(xi1)+f(xi2)12h

Here, h is step size and xi+1=xi+h

Calculation:

Consider the function,

f(x)=x2cosx

Differentiate the function with respect to x,

f(x)=2xcosxx2sinx

Now substitute x=0.4 in the above equation,

f(0.4)=2(0.4)cos(0.4)(0.4)2sin(0.4)=0.674542

Thus, the analytic value of the first derivative of the function is 4.

Again, consider the function,

f(x)=x2cosx

Here, xi=0.4 and h=0.1

The value of xi+1 is,

xi+1=xi+h=0.4+0.1=0.5

The value of the function at xi+1=0.5 is,

f(0.5)=(0.5)2cos(0.5)=0.219396

The value of xi+2 is,

xi+2=xi+1+h=0.5+0.1=0.6

The value of the function at xi+2=0.6 is,

f(0.6)=(0.6)2cos(0.6)=0.297121

The value of xi1 is,

xi1=xih=0.40.1=0.3

The value of the function at xi1=0.3 is,

f(0.3)=(0.3)2cos(0.3)=0.0859803

The value of xi2 is,

xi2=xi1h=0.30.1=0.2

The value of the function at xi2=0.2 is,

f(0.2)=(0.2)2cos(0.2)=0.0392027

Now, central difference approximation of O(h4) for first derivative is given by,

f'(xi)=f(xi+2)+8f(xi+1)8f(xi1)+f(xi2)12h

Substitute the values of f(xi+2),f(xi+1),f(xi1),f(xi2),xi=0.4 and h=0.1 in the above formula,

f'(0.4)=(0.297121)+8(0.219396)8(0.0859803)+(0.0392027)12(0.1)=0.809407301.2=0.674504

Therefore, the analytic value of the first derivative at x=0.4 is 0.674542 and numerical value is 0.674504.

(c)

Expert Solution
Check Mark
To determine

To calculate: The first order central difference approximations of O(h4) for y=tan(x3) at x=3, where step size is h=0.5 also compare the result with the analytic solution.

Answer to Problem 8P

Solution:

Analytic value of the first derivative is 1.14184 and numeric value is 1.092486

Explanation of Solution

Given information:

The function, y=tan(x3)

The value of x, x=3

Step size h=0.5

Formula used:

Central difference approximation of O(h4) for first derivative is given by,

f'(xi)=f(xi+2)+8f(xi+1)8f(xi1)+f(xi2)12h

Here, h is step size and xi+1=xi+h

Calculation:

Consider the function,

f(x)=tan(x3)

Differentiate the function with respect to x,

f(x)=(13)sec2(x3)

Now substitute x=3 in the above equation,

f(3)=(13)sec2(33)=1.14184

Thus, the analytic value of the first derivative of the function is 1.14184.

Again, consider the function,

f(x)=tan(x3)

Here, xi=3 and h=0.5

The value of xi+1 is,

xi+1=xi+h=3+0.5=3.5

The value of the function at xi+1=3.5 is,

f(3.5)=tan(3.53)=2.33825

The value of xi+2 is,

xi+2=xi+1+h=3.5+0.5=4

The value of the function at xi+2=4 is,

f(4)=tan(43)=4.131729

The value of xi1 is,

xi1=xih=30.5=2.5

The value of the function at xi1=2.5 is,

f(2.5)=tan(2.53)=1.100778

The value of xi2 is,

xi2=xi1h=2.50.5=2

The value of the function at xi2=2 is,

f(2)=tan(23)=0.786843

Now, central difference approximation of O(h4) for first derivative is given by,

f'(xi)=f(xi+2)+8f(xi+1)8f(xi1)+f(xi2)12h

Substitute the values of f(xi+2),f(xi+1),f(xi1),f(xi2),xi=3 and h=0.5 in the above formula,

f'(3)=(4.131729)+8(2.338254)8(1.100778)+0.78684312(0.5)=6.5549226=1.092486

Therefore, the analytic value of the first derivative at x=3 is 1.14184 and numerical value is 1.092486.

(d)

Expert Solution
Check Mark
To determine

To calculate: The first order central difference approximations of O(h4) for y=sin(0.5x)x at x=1, where step size is h=0.2 also compare the result with the analytic solution.

Answer to Problem 8P

Solution:

Analytic value of the first derivative is 0.26003 and numeric value is 0.25908

Explanation of Solution

Given information:

The function, y=sin(0.5x)x

The value of x, x=1

Step size h=0.2

Formula used:

Central difference approximation of O(h4) for first derivative is given by,

f'(xi)=f(xi+2)+8f(xi+1)8f(xi1)+f(xi2)12h

Here, h is step size and xi+1=xi+h

Calculation:

Consider the function,

f(x)=sin(0.5x)x

Differentiate the function with respect to x,

f(x)=0.25cos(0.5x)x32sin(0.5x)x2

Now substitute x=1 in the above equation,

f(1)=0.25cos(0.51)(1)32sin(0.51)(1)2=0.26003

Thus, the analytic value of the first derivative of the function is 0.26003.

Again, consider the function,

f(x)=sin(0.5x)x

Here, xi=1 and h=0.2

The value of xi+1 is,

xi+1=xi+h=1+0.2=1.2

The value of the function at xi+1=1.2 is,

f(1.2)=sin(0.51.2)1.2=0.433954

The value of xi+2 is,

xi+2=xi+1+h=1.2+0.2=1.4

The value of the function at xi+2=1.4 is,

f(1.4)=sin(0.51.4)1.4=0.398355

The value of xi1 is,

xi1=xih=10.2=0.8

The value of the function at xi1=0.8 is,

f(0.8)=sin(0.50.8)0.8=0.540569

The value of xi2 is,

xi2=xi1h=0.80.2=0.6

The value of the function at xi2=0.6 is,

f(0.6)=sin(0.50.6)0.6=0.629480

Now, central difference approximation of O(h4) for first derivative is given by,

f'(xi)=f(xi+2)+8f(xi+1)8f(xi1)+f(xi2)12h

Substitute the values of f(xi+2),f(xi+1),f(xi1),f(xi2),xi=3 and h=0.5 in the above formula,

f'(xi)=(0.398355)+8(0.433954)8(0.540569)+0.62948012(0.2)=0.6217952.4=0.25908

Therefore, the analytic value of the first derivative at x=1 is 0.26003 and numerical value is 0.25908.

(e)

Expert Solution
Check Mark
To determine

To calculate: The first order central difference approximations of O(h4) for y=ex+x at x=2, where step size is h=0.2 also compare the result with the analytic solution.

Answer to Problem 8P

Solution:

Analytic value of the first derivative is 8.389056 and numeric value is 8.38866

Explanation of Solution

Given information:

The function, y=ex+x

The value of x, x=2

Step size h=0.2

Formula used:

Central difference approximation of O(h4) for first derivative is given by,

f'(xi)=f(xi+2)+8f(xi+1)8f(xi1)+f(xi2)12h

Here, h is step size and xi+1=xi+h

Calculation:

Consider the function,

f(x)=ex+x

Differentiate the function with respect to x,

f(x)=ex+1

Now substitute x=2 in the above equation,

f(2)=e(2)+1=8.389056

Thus, the analytic value of the first derivative of the function is 8.389056.

Again, consider the function,

f(x)=ex+x

Here, xi=2 and h=0.2

The value of xi+1 is,

xi+1=xi+h=2+0.2=2.2

The value of the function at xi+1=2.2 is,

f(2.2)=e(2.2)+(2.2)=11.2250

The value of xi+2 is,

xi+2=xi+1+h=2.2+0.2=2.4

The value of the function at xi+2=2.4 is,

f(2.4)=e(2.4)+(2.4)=13.4232

The value of xi1 is,

xi1=xih=20.2=1.8

The value of the function at xi1=1.8 is,

f(1.8)=e(1.8)+(1.8)=7.84965

The value of xi2 is,

xi2=xi1h=1.80.2=1.6

The value of the function at xi2=1.6 is,

f(1.6)=e(1.6)+(1.6)=6.55303

Now, central difference approximation of O(h4) for first derivative is given by,

f'(xi)=f(xi+2)+8f(xi+1)8f(xi1)+f(xi2)12h

Substitute the values of f(xi+2),f(xi+1),f(xi1),f(xi2),xi=3 and h=0.5 in the above formula,

f'(xi)=13.4232+8(11.2250)8(7.84965)+6.5530312(0.2)=20.132632.4=8.38866

Therefore, the analytic value of the first derivative at x=2 is 8.389056 and numerical value is 8.38866.

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