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12 f(x) = (4x+3)(x - 12) 2 The product rule presented in Lesson 6 involves F (first), F' (derivative of the first), S (second),
12 f(x) = (4x+3)(x - 12) 2 The product rule presented in Lesson 6 involves F (first), F' (derivative of the first), S (second), and S' (derivative of the second). Type as you would in a calculator or use the equation editor to write out F the "first function" in the product. 12 (x) = (4x + 3) (x 12) The product rule presented in Lesson 6 involves F (first), F' (derivative of the first), S (second), and S' (derivative of the second). Type as you would in a calculator, or use the equation editor to show computing F That is, find the derivative of the function you identified in Question 6. You must simplify the monomial factors. 12 (x) = (4x + 3) (x 12) The product rule presented in Lesson 6 involves F (first), F' (derivative of the first), S (second), and S' (derivative of the second). Type as you would in a calculator or use the equation editor to write out S the "second function" in the product. (x) = (4x + 3) (x 12) The product rule presented in Lesson 6 involves F (first), F' (derivative of the first), S (second), and S' (derivative of the second). Type as you would in a calculator, or use the equation editor to show computing S'! That is, find the derivative of the function you identified in Question 8. You must simplify the monomial factors. 12 f(x) = (4x + 3) (x - 12) 2 Using F, F', S, and S' that you identified in Questions 6-9, type as you would in a calculator, or use the equation editor to write '(x). (If you simplified monomials in the previous questions, no further simplification is needed.)
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