The roots of the polynomial function f(x)=(x-3)*(x+6)² are 3 and -6.
The polynomial function f(x)=(x-3)*(x+6)² can be factorized as follows:
f(x) = (x-3)*(x+6)*(x+6)
This means that the expression (x-3) represents one of the linear factors of the polynomial, while (x+6) represents a quadratic factor. To find the roots of the polynomial, we set each factor equal to zero and solve for x:
(x-3) = 0 -> x = 3
(x+6) = 0 -> x = -6
Therefore, the roots of the polynomial function f(x)=(x-3)*(x+6)² are 3 and -6.
Answer:
Step-by-step explanation:
p(q ÷ 3 - p )
p = -6
q= -3
-6(-3/3 - (-6))
-6(-1 + 6)
-6(+5)
-30
B. 15 square yards
C. 30 square yards
D. 54 square yards
Answer:
The answer is A) 6 square yards.
Answer:
3750 strings.
Step-by-step explanation:
First we have 6 different letters to choose from (a, b, c, d, e, f) and we will make a string of length 5.
First, we would have to choose one of the letters, to do this we would have 6 choices.
For our second choice, we can only choose from 5 letters since we cannot choose the one that we already chose (no two consecutive letters can be the same).
Then, for our third choice, we would have to choose from 5 different letters (any letter but the one before).
Similarly for our fourth and fifth choice, we can choose 5 different letters.
Then, the total amount of strings would be:
6 x 5 x 5 x 5 x 5 = 6 x 5⁴ = 3750 strings.
Answer:
The answer is "371"
Step-by-step explanation:
First polynomial value = 239
Second polynomial value = 132
Adding the value: =
=
The final answer is 371, which is also known as monomial.
400 miles in 8 hours
The rate as a unit rate of 400 miles in 8 hours is 50 miles.
"The process of breaking down the cost to a smaller unit reveals the unit rate of the product. Since rate is a ratio that compares two different units."
Based on the given conditions,
Rate as a unit rate :
=
Cross out the common factor
= 50 miles
Hence, the rate as a unit rate of 400 miles in 8 hours is 50 miles.
Learn more about rate and unit rate here
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Answer:
50miles/hour
Step-by-step explanation:
400/8 is 50.
(a) Will the rock exceed the top of the wall?
(b) If so, what is its speed when it reaches the top of the wall?
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(c) If we don’t want the stone to exceed the top of the wall (we want the top of the wall to be the maximum height)
what the initial speed that the stone must have?
Answer:
a) Yes, b), c)
Step-by-step explanation:
a) The maximum height reached by the rock is:
Yes, the rock will exceed the top of the wall.
b) The speed when the rock reaches the top of the wall:
c) The initial speed required so that stone does not exceed the top of the wall is: