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Fynjy0 [20]
3 years ago
8

Solve this equation for x 0.95 = log x

Mathematics
1 answer:
Lelechka [254]3 years ago
5 0

Answer:

8.91

Step-by-step explanation:

Given:  0.95 = log x,

we can conclude that:

    0.95            log x

10             =  10

                                                          0.95

which in turn is equivalent to x = 10            whose value is  8.91

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If g(x) = 2(x − 4), find the value of x if g(x) = 20. 32 12
nlexa [21]

Answer:

The value of x is 14

Step-by-step explanation:

we have

g(x)=2(x-4) ------> equation A

In this problem we have

g(x)=20

Substitute the value of g(x) in the equation A and solve for x

20=2(x-4)

Divide by 2 both sides

20/2=2(x-4)/2

10=(x-4)

Adds 4 both sides

10+4=(x-4)+4

x=14

6 0
3 years ago
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julsineya [31]
It can be x = 3 and x = -15
8 0
3 years ago
Does this table represent a function? Why or why not?
Nutka1998 [239]

Answer:

C.No because two of the y values are the same

Step-by-step explanation:


5 0
3 years ago
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A baseball coach is creating a nine-player batting order by selecting from a team of 15 players. How many different batting orde
zzz [600]

Answer:

1,816,214,400 batting orders are possible.

Step-by-step explanation:

The order is important.

Suppose we had a two player batting order.

A batting order of Jonathan Schoop and Manny Machado is a different order than Manny Machado and Jonathan Schoop. So we use the permutations formula.

Permutations formula:

The number of possible permutations of x elements from a set of n elements is given by the following formula:

P_{(n,x)} = \frac{n!}{(n-x)!)}

A baseball coach is creating a nine-player batting order by selecting from a team of 15 players. How many different batting orders are possible?

Selection of 9 players from a set of 15 players. So

P_{15,9} = \frac{15!}{(15-9)!} = \frac{15!}{6!} = 1816214400

1,816,214,400 batting orders are possible.

4 0
3 years ago
Please answer my question as quick a you can
rodikova [14]

Option a

  • Option be is seeming to be irrational but its not

How?

\\ \sf\longmapsto \dfrac{\sqrt{100}}{3}

\\ \sf\longmapsto \dfrac{10}{3}

Hence correct option is a

5 0
3 years ago
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