2 6. The magnitude of an earthquake can be modeled by the logarithmic formula M(E) = log(0.37E) + 1.46, where M represents the magnitude of the earthquake based on E, the energy released by the earthquake measured in kilowatt hours. 3 Magnitude 4 3 2 1 Earthquake Magnitude 2 4 6 8 Energy Released (kilowatt hours) Which statement best describes the ond 10 CL

Calculus: Early Transcendentals
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Author:James Stewart
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Chapter1: Functions And Models
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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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6. The magnitude of an earthquake can be modeled by the logarithmic formula M(E)=
2
log(0.37E) + 1.46, where M represents the magnitude of the earthquake based on
3
E, the energy released by the earthquake measured in kilowatt hours.
Magnitude
Earthquake Magnitude
2
4
6
Energy Released (kilowatt hours)
8
10
X
Which statement best describes the end behavior of M(E)?
CLEAR ALL
As Eco, M(E) - 2
As Eco, M(E) - 0
As E ∞, M(E) - ∞
As E 2, M(E) - ∞
Transcribed Image Text:6. The magnitude of an earthquake can be modeled by the logarithmic formula M(E)= 2 log(0.37E) + 1.46, where M represents the magnitude of the earthquake based on 3 E, the energy released by the earthquake measured in kilowatt hours. Magnitude Earthquake Magnitude 2 4 6 Energy Released (kilowatt hours) 8 10 X Which statement best describes the end behavior of M(E)? CLEAR ALL As Eco, M(E) - 2 As Eco, M(E) - 0 As E ∞, M(E) - ∞ As E 2, M(E) - ∞
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