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amid [387]
4 years ago
13

The function k(x) = (g x h)(x) is graphed below, where g is an exponential function and h is a linear function. If h(x) = x + 1,

which option below give the formula for g? h(x) = 2x h(x) = –2x h(x) = –2–x h(x) = 2–x

Mathematics
2 answers:
DanielleElmas [232]4 years ago
6 0

Answer:

The graph of your question is attached in the picture below.

g(x) = 2^(-x)

Step-by-step explanation:

First of all, we use a graphing tool to plot each of the equations.

If we multiply in the plotter each graph, we can easily see which is the correct option.

h(x) =x+1

g(x) = 2^-x

Andru [333]4 years ago
5 0

Answer:

h(x)=-2^-x

Step-by-step explanation:

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What radian measure is equivalent to 75 degrees
koban [17]
WORK

5π/12
75∘⋅π/180∘=5π/12

Therefore the answer not rounded is 1.309 radians
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3 years ago
Find the cost function for the marginal cost function. C(x) =0.06 e 0.08x; fixed cost is $10 C(x)=_______
sashaice [31]

Answer:

The cost function for C(x) = 0.06\cdot e^{0.08\cdot x} is c(x) = 0.75\cdot e^{0.08\cdot x}+10.

Step-by-step explanation:

The marginal cost function (C(x)) is the derivative of the cost function (c(x)), then, we should integrate the marginal cost function to find the resulting expression. That is:

c(x) = \int {C(x)} \, dx + C_{f}

Where:

C_{f} - Fixed costs, measured in US dollars.

If we know that C(x) = 0.06\cdot e^{0.08\cdot x} and C_{f} = \$\,10, then:

c(x) = 0.06\int {e^{0.08\cdot x}} \, dx + 10

c(x) = 0.75\cdot e^{0.08\cdot x}+10

The cost function for C(x) = 0.06\cdot e^{0.08\cdot x} is c(x) = 0.75\cdot e^{0.08\cdot x}+10.

3 0
3 years ago
How does 2 relate to 3
erik [133]

Answer:

The number that was added to the previous number is doubled.

For example:

2+1 = 3

2x1= 2

3+2= 5

2x2=4

5+4=9

4x2=8

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I hope this helps:)

4 0
2 years ago
Find the difference 0.2−0.05
denis23 [38]

Answer:

0.15

Step-by-step explanation:

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7 0
3 years ago
A summer camp has 400 ft of float line with which to rope off three adjacent rectangular areas of a lake for swimming? lessons,
Rashid [163]

Answer:

a) A = x*(400 - 4*x)

b) domain of function A(x) is ( 0 , 100 )

c) dimension of swimming section x = 30 ft maximizes area.

Step-by-step explanation:

Given:

- Total length of float-line used L = 400 ft

- Inner sections length x

Find:

a) Express the total area A as a function of x

b) Find the domain of the function

c) Using the graph, find the dimensions that leads to largest area

Solution:

- The amount of side length of the rectangle can be calculated from the total length given y:

                                 y = L - x - x - x - x

                                 y = L - 4*x

                                 y = 400 - 4*x

- The area of a rectangle is as follows:

                                 A = x*y

- Replace y with the expression derived first:

                                A = x*(400 - 4*x)

- To find the domain of the function we know that A >= 0:

                                 400*x - 4x^2 > 0

                                 x(400 - 4x) > 0

                                 x > 0 , 400 - 4*x < 0

                                 x < 100

- Hence, the domain of function A(x) is ( 0 , 100 )

- From the graph given, we can see that Area is maximum when x = 30 ft. Denoted by the turning point of the graph.

- Hence, the dimension of swimming section x = 30 ft maximizes area.

5 0
3 years ago
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