Q 0.00 100.00 81.86 0.02 67.03 0.04 0.06 54.89 44.93 0.08 0.10 36.77 ef (microcoulombs) 100 90 80 P. 70 60 50 0,02 0,06 0.08 0 0,04 0.1 (seconds) R mpR (0.00, 100.00) -824.25 (0.02, 81.86) -741.50 (0.06, 54.89) -607.00 (0.08, 44.93) -552.50 (0.10, 36.77) -504.33 EXAMPLE 2 The flash unit on a camera operates by storing charge on a capacitor and releasing it suddenly when the flash is set off. The data in the table describe the charge Q remaining on the capacitor (measured in microcoulombs) at time t (measured in seconds after the flash goes off). Use the data to draw the graph of this function and estimate the slope of the tangent line at the point where t = 0.04. [Note: The slope of the tangent line represents the electric current flowing from the capacitor to the flash bulb (measured in microamperes).]
Q 0.00 100.00 81.86 0.02 67.03 0.04 0.06 54.89 44.93 0.08 0.10 36.77 ef (microcoulombs) 100 90 80 P. 70 60 50 0,02 0,06 0.08 0 0,04 0.1 (seconds) R mpR (0.00, 100.00) -824.25 (0.02, 81.86) -741.50 (0.06, 54.89) -607.00 (0.08, 44.93) -552.50 (0.10, 36.77) -504.33 EXAMPLE 2 The flash unit on a camera operates by storing charge on a capacitor and releasing it suddenly when the flash is set off. The data in the table describe the charge Q remaining on the capacitor (measured in microcoulombs) at time t (measured in seconds after the flash goes off). Use the data to draw the graph of this function and estimate the slope of the tangent line at the point where t = 0.04. [Note: The slope of the tangent line represents the electric current flowing from the capacitor to the flash bulb (measured in microamperes).]
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
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
Transcribed Image Text:Q
0.00 100.00
81.86
0.02
67.03
0.04
0.06
54.89
44.93
0.08
0.10
36.77
ef (microcoulombs)
100
90
80
P.
70
60
50
0,02
0,06
0.08
0
0,04
0.1
(seconds)
R
mpR
(0.00, 100.00)
-824.25
(0.02, 81.86)
-741.50
(0.06, 54.89)
-607.00
(0.08, 44.93)
-552.50
(0.10, 36.77)
-504.33
![EXAMPLE 2
The flash unit on a camera operates by storing charge on a capacitor and releasing it suddenly when the
flash is set off. The data in the table describe the charge Q remaining on the capacitor (measured in microcoulombs) at
time t (measured in seconds after the flash goes off). Use the data to draw the graph of this function and estimate the
slope of the tangent line at the point where t = 0.04. [Note: The slope of the tangent line represents the electric current
flowing from the capacitor to the flash bulb (measured in microamperes).]](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Ffef380aa-cb8f-49ab-a3bd-f2006f70ca50%2F9fbdac7e-59aa-4a6e-a331-7a3f0baf16eb%2F8zwi54j.png&w=3840&q=75)
Transcribed Image Text:EXAMPLE 2
The flash unit on a camera operates by storing charge on a capacitor and releasing it suddenly when the
flash is set off. The data in the table describe the charge Q remaining on the capacitor (measured in microcoulombs) at
time t (measured in seconds after the flash goes off). Use the data to draw the graph of this function and estimate the
slope of the tangent line at the point where t = 0.04. [Note: The slope of the tangent line represents the electric current
flowing from the capacitor to the flash bulb (measured in microamperes).]
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