Factor. m2 + 12m+36​
Factor. m2 + 12m+36​ - 1

Answers

Answer 1
Answer:

The factors of the equation are \rm (m+6)^2, the correct option is A.

Given that

Equation; \rm m^2 + 12m+36

Factors of the quadratic equation;

The quadratic formula is a formula in elementary algebra that provides the solution (s) to a quadratic equation.

The factors of the given equation are;

\rm m^2 + 12m+36\n\nm^2+6m+6m+36\n\nm(m+6)+6(m+6)\n\n(m+6)(m+6)\n\n(m+6)^2

Hence, the factors of the equation are \rm (m+6)^2.

To know more about factors click the link given below.

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Answer 2
Answer:

Answer: Choice A which is (m+6)^2

Explanation:

Think of two numbers that multiply to 36 and add to 12. Those two numbers are 6 and 6

6+6 = 12

6*6 = 36

So we can factor it into (m+6)(m+6). Use the FOIL rule to expand it out to get m^2+12m+36 back again.

The expression (m+6)(m+6) is the same as (m+6)^2


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What type of graph is best to use to graph data about the favorite sport for seniors and juniors? A. Bar Graph B. Double Bar Graph C. Line Graph D. Double Line Graph

Answers

B.Double Bar Graph

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Answer:

Bar Graph

Step-by-step explanation:

A bar graph would be best.

32,111÷181=
whats is the remainder

Answers

The answer would be 177.4

Final answer:

The division of 32,111 by 181 gives a quotient of 177 and a remainder 104. In essence, when 32,111 is divided by 181 completely, there is left an undivided 104.

Explanation:

In Mathematics, to determine the remainder of a division problem, you perform the division operation as usual and then observe the residual value. That residual value is the remainder. In your case, when 32,111 is divided by 181, the result is 177 with a remainder of 104. Therefore, the answer to your question '32,111 ÷ 181, what is the remainder?' is 104, this is the amount that can't be evenly divided over 181. It is known as the remainder of the division operation.

Learn more about Division and Remainder here:

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Find two consecutive numbers whose squares differ by 17

Answers

Let

x---------> the first number

x+1------> the second number


we know that

(x+1)^(2) -x^(2) =17\n x^(2) +2x+1-x^(2) =17\n 2x+1=17\n 2x=16\n x=8

so

x=8\n x+1=9


therefore


the answer is

the numbers are

8,9

Tyler has $1000 that he wants to put in a savings account. He wants to save the money for 6 years. After 6 years he plans to take the money out and spend it on college. He looks at two different banks, and they offer him different interest options.Bank A offers Tyler 4% simple interest. How much would Tyler’s investment be worth after 6 years in this account? Show your calculations below.

Answers

Tyler's $1,000 investment will be worth $1,240 after 6 years, invested at 4% interest rate.

The problem gives the following relevant data:

Principal = $1000
Interest rate = 4% simple interest
Term or time period = 6 years

Since simple interest is given, we need to use the simple interest formula;

I = P x R x T

where: P is the principal, R is the interest rate, and T is the time the money will be invested.

I = $1000 x 4% x 6yrs
I = $1000 x 0.04 x 6
I = 40 x 6
I = 240  ==> Interest earned after 6 years is $240.

Total Investment = Principal + Interest
T.I. = $1,000 + $240
T.I. = $1,240  ==> the value of Tyler's investment after 6 years.

Draw pictures showing two different ways to buy 276 markers

Answers

200+76 And 100+100+70+6