1) A course repeater claims that his brother who did some Calculus at college years ago, but currently on some cough medication, believes that the first derivative of (2x2 – 1)(x² + 3) F(x) = 4x 2x 2x [(2x² – 1)(x² + 3)1 2is f'(x) = %3D %3D x2 +1 [2x² -1 x2 +3 x2 + 11 x2 +1

Algebra & Trigonometry with Analytic Geometry
13th Edition
ISBN:9781133382119
Author:Swokowski
Publisher:Swokowski
Chapter4: Polynomial And Rational Functions
Section4.3: Zeros Of Polynomials
Problem 67E
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For question 1 can you explain how the right hand side f'(x) can be expanded or integrated to get back the left hand side f(x)? Basically, the question in reverse.
ined in Unit 1 and 2, verify whether the limit to infinity of n(n+ 1)(n+ 2)-(n+ 3)-1
is equal to one.
A
and that h(T) = T2 - 2T-7,find h(T).
(4) Given matrix A =
3
%3D
Problem Set D
1) A course repeater claims that his brother who did some Calculus at college years ago, but
currently on some cough medication, believes that the first derivative of
4x
-is f'(x) = x2 –1*x² +3 x² + 1]
[(2x² – 1)(x² +3)]
x2 +1
(2x2 – 1)(x² + 3)
2x
2x
(x) =
x2 +1
and
30x
(x² + 8)7
(x2 + 8)7
(2– 3x2)5
Using the product, qoutient and chain rules you learnt in Unit 7 of this Course, could you
14x
hat the first derivative of g(x) =
is g'(x) = 2+8 2-3x²] [(2 – 3x²)5]
%3D
-
confirm whether his brother is right, wrong or a little tipsy.
Transcribed Image Text:ined in Unit 1 and 2, verify whether the limit to infinity of n(n+ 1)(n+ 2)-(n+ 3)-1 is equal to one. A and that h(T) = T2 - 2T-7,find h(T). (4) Given matrix A = 3 %3D Problem Set D 1) A course repeater claims that his brother who did some Calculus at college years ago, but currently on some cough medication, believes that the first derivative of 4x -is f'(x) = x2 –1*x² +3 x² + 1] [(2x² – 1)(x² +3)] x2 +1 (2x2 – 1)(x² + 3) 2x 2x (x) = x2 +1 and 30x (x² + 8)7 (x2 + 8)7 (2– 3x2)5 Using the product, qoutient and chain rules you learnt in Unit 7 of this Course, could you 14x hat the first derivative of g(x) = is g'(x) = 2+8 2-3x²] [(2 – 3x²)5] %3D - confirm whether his brother is right, wrong or a little tipsy.
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