Identify the pattern for 16, 4, 8, 2

Answers

Answer 1
Answer:

Answer:

You have to first divide by 4 and then multiply by 2.

Step-by-step explanation:


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A trampoline has an area of 49 pi square feet. what is the diameter of the trampoline?

Answers

The area of a circle is pi times the radius squared. Set up the equation pi x r squared = 49 pi square feet. Divide both sides of the equation by pi. 
r squared = 49 square feet. Take the square root of both sides. r = 7 feet.
The diameter of the trampoline is double the radius which is 14 feet.

0.63 cents plus what gives you 1.00

Answers

Answer:37 lol

Step-by-step explanation:

Answer:0.37

Step-by-step explanation: you subtract 0.63 by 1.00 to get 0.37

Which angle number represents ZDEC?B
A
с з
4
E
516
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1
2
15
N
14
13
8
H
11
12 10
K
M
J

Answers

Answer:

trump

Step-by-step explanation:

Someone please help me . )):

Answers

got a calculator? all you do for #1 and #2 is multiply the two numbers and that is the value for x.
These problems are cross multiplication.
For the next two:
.25x = 6
divide both sides by .25
x  = 24
NEXT ONE:
.49x = 12
divide both sides by .49
x = 24.48

Text me 810-620-2621 that's what I'm working on right now too

The average rate of change of f(x) is given by the formula f(7)-f(3)/4 . Over what interval does this formula give the average rate of change for f(x)?The answer choices are
A. [4,7]
B. [-7,3]
C. [3,7]
D. [3,4]

Answers

Answer:

Option C is correct

[3,7]

Step-by-step explanation:

Average rate of change(A(x)) of f(x) over an interval [a, b] is given by:

A(x) = (f(b)-f(a))/(b-a)

As per the statement:

The average rate of change of f(x) is given by the formula:

A(x) = (f(7)-f(3))/(4)

we can write this as:

A(x) = (f(7)-f(3))/(7-3)

By definition, we have

b = 7 and a = 3

⇒interval = [3, 7]

Therefore, the interval does this formula give the average rate of change for f(x) is,  [3,7]

Answer:

the answer is c


Step-by-step explanation:


The graph of a function never has two different points with the same x-coordinate because.. A. the graph of a function cannot be a straight line. B. each input value is mapped to a single output value. C. each input value is mapped to more than one output value. D. the graph of a function is a vertical line.

Answers

The best answer to the question that is being stated above would be letter B. The graph of a function never has two different points with the same x-coordinate because the input value of each of the points is mapped to a single output value in the graph. 

Answer:  The correct reason is (B) each input value is mapped to a single output value.

Step-by-step explanation:  The given statement is:

"The graph of a function never has two different points with the same x-coordinate."

We are to select the correct reason for the above statement.

The definition of a FUNCTION is as follows:

In simple language, a function is a relation from a set of inputs to a set of possible outputs where each input is related to exactly one output.

That is, if y = f(x) is a function of a variable 'x', then we have

x_1=x_2~~~~\Rightarrow f(x_1)=f(x_2).

(A) The first statement is "the graph of a function cannot be a straight line."

The statement is false. For example, let us consider y = x + 2. Obviously, it is a function because every value of 'x' will result in only one value of 'y'.

Also, the graph here will be a straight line as shown in the attached figure (1).

(B) The first statement is "each input value is mapped to a single output value."

The statement is true according to the definition of a function.

(C) The third statement is "each input value is mapped to more than one output value."

The statement is false by the definition of a function.

(D) The fourth statement is "the graph of a function is a vertical line."

The statement is false. For example, if we consider the vertical line x = 2. Then, we see from the attached figure (2) that the points (x, y) = (2, 1), (2, 0), (2, 3), etc. all lie on the line.

This shows that one input value leads to infinitely many values of 'y'. Hence, this vertical line cannot be the graph of a function.

Thus, (B) is the correct statement.