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M. Singh - primethinker.com...M. Singh 1 M. Singh Lesson 38: How can we approximate the definite...

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M. Singh 1 M. Singh Lesson 38: How can we approximate the definite integral using 2 nd degree polynomials (Simpson's Rule)? Q: 1. Determine whether the statement is true or false. Explain your answer. 2. Simpson's Rule
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Page 1: M. Singh - primethinker.com...M. Singh 1 M. Singh Lesson 38: How can we approximate the definite integral using 2nd degree polynomials (Simpson's Rule)? Q: 1 .D et rm inw h sau ofl

M. Singh

1

M. Singh

Lesson 38: How can we approximate the definite integral using 2nd degree polynomials (Simpson's Rule)?

Q: 1. Determine whether the statement is true or false.

Explain your answer.

2.

Simpson's Rule

Page 2: M. Singh - primethinker.com...M. Singh 1 M. Singh Lesson 38: How can we approximate the definite integral using 2nd degree polynomials (Simpson's Rule)? Q: 1 .D et rm inw h sau ofl

M. Singh

2

M. Singh

Page 3: M. Singh - primethinker.com...M. Singh 1 M. Singh Lesson 38: How can we approximate the definite integral using 2nd degree polynomials (Simpson's Rule)? Q: 1 .D et rm inw h sau ofl

M. Singh

3

M. Singh

Page 4: M. Singh - primethinker.com...M. Singh 1 M. Singh Lesson 38: How can we approximate the definite integral using 2nd degree polynomials (Simpson's Rule)? Q: 1 .D et rm inw h sau ofl

M. Singh

4

M. Singh

Use the Trapezoidal Rule and Simpson's Rule

1.

2.

3.

4.

Page 5: M. Singh - primethinker.com...M. Singh 1 M. Singh Lesson 38: How can we approximate the definite integral using 2nd degree polynomials (Simpson's Rule)? Q: 1 .D et rm inw h sau ofl

M. Singh

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M. Singh


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