Differentiate two ways: first, by using the Product Rule; then, by multiplying the expressions before differentiating. Compare your results as a check. Use a graphing calculator to check your results. 1. y = x°.x* 2. y = x³.x° 3. f(x) = (2x + 5)(3x – 4) 4. g(x) = (3x – 2)(4x + 1) 5. F(x) = 3x*(x² – 4x) %3D 6. G(x) = 4x²(x³ + 5x) 7. y = (3Vx + 2)x? 8. y = (4Vx + 3)x 9. f(x) = (2x + 5)(3x² – 4x + 1) 10. g(x) = (4x – 3)(2x2 + 3x + 5) 11. F(t) = (Vi + 2)(3t – 4Vi + 7) 12. G(t) = (2t + 3Vi + 5)(Vi + 4)
Differentiate two ways: first, by using the Product Rule; then, by multiplying the expressions before differentiating. Compare your results as a check. Use a graphing calculator to check your results. 1. y = x°.x* 2. y = x³.x° 3. f(x) = (2x + 5)(3x – 4) 4. g(x) = (3x – 2)(4x + 1) 5. F(x) = 3x*(x² – 4x) %3D 6. G(x) = 4x²(x³ + 5x) 7. y = (3Vx + 2)x? 8. y = (4Vx + 3)x 9. f(x) = (2x + 5)(3x² – 4x + 1) 10. g(x) = (4x – 3)(2x2 + 3x + 5) 11. F(t) = (Vi + 2)(3t – 4Vi + 7) 12. G(t) = (2t + 3Vi + 5)(Vi + 4)
Calculus: Early Transcendentals
8th Edition
ISBN:9781285741550
Author:James Stewart
Publisher:James Stewart
Chapter1: Functions And Models
Section: Chapter Questions
Problem 1RCC: (a) What is a function? What are its domain and range? (b) What is the graph of a function? (c) How...
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