Another look at the Fundamental Theorem 70. Use Exercise 69 to prove that if two runners start and finish at the same time and place, then regardless of the velocities at which they run , their displacements are equal. 69. Suppose that f and g have continuous derivatives on an interval [ a , b ]. Prove that if f ( a ) = g ( a ) and f ( b ) = g ( b ), then ∫ a b f ′ ( x ) d x = ∫ a b g ′ ( x ) d x .
Another look at the Fundamental Theorem 70. Use Exercise 69 to prove that if two runners start and finish at the same time and place, then regardless of the velocities at which they run , their displacements are equal. 69. Suppose that f and g have continuous derivatives on an interval [ a , b ]. Prove that if f ( a ) = g ( a ) and f ( b ) = g ( b ), then ∫ a b f ′ ( x ) d x = ∫ a b g ′ ( x ) d x .
Solution Summary: The author explains the fundamental theorem of calculus: if two runners start and finish at the same time and place, their displacements are equal.
70. Use Exercise 69 to prove that if two runners start and finish at the same time and place, then regardless of the velocities at which they run, their displacements are equal.
69. Suppose that f and g have continuous derivatives on an interval [a, b]. Prove that if f(a) = g(a) and f(b) = g(b), then
∫
a
b
f
′
(
x
)
d
x
=
∫
a
b
g
′
(
x
)
d
x
.
Use the graph of the function y = f (x) to find the value, if possible.
f(x)
8
7
6
Q5
y
3
2
1
x
-8 -7 -6 -5 -4 -3 -2 -1
1 2 3 4 5 6 7 8
-1
-2
-3
-4
-5
-6
-7
-8+
Olim f(z)
x-1+
O Limit does not exist.
If h(x)
=
-2x-8
49x2-9
what is lim h(x)?
x--00
Question
Find the following limit.
Select the correct answer below:
○ 0
○ 3
○ 6
∞
6x + 3e
lim
00+2
x 2
University Calculus: Early Transcendentals (4th Edition)
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Differential Equation | MIT 18.01SC Single Variable Calculus, Fall 2010; Author: MIT OpenCourseWare;https://www.youtube.com/watch?v=HaOHUfymsuk;License: Standard YouTube License, CC-BY