Answer:
true
Step-by-step explanation:
3n3n3p0mdo98rueu33
Answer:
57552232
Step-by-step explanation:
end of the diving board is the diver when he hits the water?
Answer:
The diver will be 8 feet from the end of the board when he hits the water.
Step-by-step explanation:
The diver hits the water when y = 0.
To find the distance, we have to find the values of x when y = 0.
Solving a quadratic equation:
Given a second order polynomial expressed by the following equation:
.
This polynomial has roots such that , given by the following formulas:
In this problem, we have that:
So
Then
It is a horizontal distance, so the answer is a positive value.
The diver will be 8 feet from the end of the board when he hits the water.
Answer:
The answer is 6x
Step-by-step explanation:
Step-by-step explanation:
I think common factors are
18 = 1 2 3 6 9 18
30 = 1 2 3 10 15 30
So highest common factor is 3
18x + 30x2
3x (6 + 10x)
.True
.False
Answer:
False
Step-by-step explanation:
Sorry for the lat reply hopefully you still have that question ready. But basically in order for these equations to be considered inverses of one another it has to map its domain value and switch it to the range value and in this case it does not match the inverse when graphed.
The functions f(x) = 3x - 7 and g(x) = (1/3)x + 7 are inverses of each other.
Two functions are inverses of each other if the composition of the functions results in the identity function. To check if f(x) = 3x - 7 and g(x) = (1/3)x + 7 are inverses, we need to find their composition.
Let's substitute g(x) into f(x) and simplify: f(g(x)) = f((1/3)x + 7) = 3((1/3)x + 7) - 7 = x + 7 - 7 = x.
Since f(g(x)) = x, it means that f(x) and g(x) are inverses of each other, and therefore the statement is True.
#SPJ2
Answer:
$40.93
Step-by-step explanation:
Linear function of:
To find:
Linear equation in slope-intercept form:
We have points of: (14, 32.68), (52, 95.38):
Using the points we can find the value of m and b:
Then finding b:
So the function is:
Then y(19) is found as:
Answer: Cost of 19 HCF of water is $40.93