Э 8. yx U(r) =

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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Question 8
4x
F2
#
3
4. Solve for b in:
5. Solve for x in:
Graph the following functions. Graphs must be hand drawn or sketched (no excel plots/graphs). Be sure to
note key values/points on the graph (e.g., y-intercept, slope, etc.).
6.
ay = 7x + 1
7.
8.
9.
F3
1 1
-=-
y x
U(r) ==
r
$
4
y =
10. The measured optical rotation of polyglutamic acid as a function of wavelength (2) can be fitted by the
equation:
4)
bx
(a + x)
1
4 2
=
15 5b 3b
3x = ax + 8
where [a] is the specific rotation, K is a constant, and Ac is the wavelength of the band center of an
optically active absorption. If c is a constant, what should be plotted to yield a linear graph? How can
Ac be determined?
F4
DII
%
5
F5
¤
A
6
[a] =
F6
K
2²-2²
*
F7
&
7
PrtScn
F8
* CO
8
19
Home
F9
9
End
F10
0
PgUp
F11
-
PgC
Transcribed Image Text:4x F2 # 3 4. Solve for b in: 5. Solve for x in: Graph the following functions. Graphs must be hand drawn or sketched (no excel plots/graphs). Be sure to note key values/points on the graph (e.g., y-intercept, slope, etc.). 6. ay = 7x + 1 7. 8. 9. F3 1 1 -=- y x U(r) == r $ 4 y = 10. The measured optical rotation of polyglutamic acid as a function of wavelength (2) can be fitted by the equation: 4) bx (a + x) 1 4 2 = 15 5b 3b 3x = ax + 8 where [a] is the specific rotation, K is a constant, and Ac is the wavelength of the band center of an optically active absorption. If c is a constant, what should be plotted to yield a linear graph? How can Ac be determined? F4 DII % 5 F5 ¤ A 6 [a] = F6 K 2²-2² * F7 & 7 PrtScn F8 * CO 8 19 Home F9 9 End F10 0 PgUp F11 - PgC
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