1. The expression log (at) is equivalent to: h logm a log t 1. A. B. log (at)" . log log Wat D. log a+ m h h h 2. Given that the restrictions of a logarithmic equation are -4

Calculus: Early Transcendentals
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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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n!
(n-r)!r!
In the expansion of (x + y)", writte-
descending powers of
-:- (-)
is t
log(at)
1. The expression
is equivalent to:
h
1.
logma
logt
B. log (at)"
A.
D. -loga+logmt
log Wat
.
m
h
h
h
2. Given that the restrictions of a logarithmic equation are - 4<x<5 then a possible equation is:
B. log((5− x)(4+x))=1
A. log, ((5+x)(4-x))=1
X+4
D. logb
-=1
c. log, ((x+4)(x-5))=1
x-5
3. Consider the statements below given that f(x)=2x-9 and g(x)=√√x-4
cos(2α) =
tan(2a)=-
1
Transcribed Image Text:n! (n-r)!r! In the expansion of (x + y)", writte- descending powers of -:- (-) is t log(at) 1. The expression is equivalent to: h 1. logma logt B. log (at)" A. D. -loga+logmt log Wat . m h h h 2. Given that the restrictions of a logarithmic equation are - 4<x<5 then a possible equation is: B. log((5− x)(4+x))=1 A. log, ((5+x)(4-x))=1 X+4 D. logb -=1 c. log, ((x+4)(x-5))=1 x-5 3. Consider the statements below given that f(x)=2x-9 and g(x)=√√x-4 cos(2α) = tan(2a)=- 1
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