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Dahasolnce [82]
3 years ago
9

If you get this right I will mark you as a brainliest

Mathematics
1 answer:
Vsevolod [243]3 years ago
4 0
Ans=D
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Bao can eat 12 chicken wings in 3 minutes. She eats the chicken wings at a constant rate.
Assoli18 [71]

Answer:

48

Step-by-step explanation:

If Bao eats 12 chicken wings in 3 minutes than that will help us find the unit rate by dividing 12 by 3, and then you will get 4. Now that you know the unit rate you will multiply it by 12 and get 48.

5 0
3 years ago
Read 2 more answers
Evaluate each expression for the given value(s)
Butoxors [25]

Answer:

-16

Step-by-step explanation:

Substitute the values into the equation

=  \frac{ ({ - 12 + 4}^{2}) }{ - 4}  \\  = \frac{ {( - 8)}^{2} }{4}  \\  = \frac{64}{4}  \\  =  - 16

<h2><em>OladipoSeun</em><em>♡˖꒰ᵕ༚ᵕ⑅꒱</em></h2>

4 0
3 years ago
How many terms are in the expression 3x^2y^4z-6xy-3z(5x^2)
EleoNora [17]
I would say 3 because terms are separated by a plus or minus sign and there are 2 subtraction signs separating 3 expressions.
6 0
3 years ago
PLEASE HELP ME I NEED HELP!!!
Tamiku [17]

The APR is 24%, so the monthly rate is 24/12 = 2% which converts to the decimal form 0.02

=============================================

Problem 1

  • After one month, the expression is 1000*(1.02)^1
  • After two months, the expression is 1000*(1.02)^2
  • After six months, the expression is 1000*(1.02)^6
  • After twelve months or one year, the expression is 1000*(1.02)^12

Refer to problem 2 below. Note how only the exponent is changing. The 1.02 is from 1+0.02, which is in the form 1+r.

=============================================

Problem 2

In general, the balance after m months is 1000(1.02)^m

This formula is very similar to the compound interest formula.

=============================================

Problem 3

Computing 1000(1.02)^12 gets us 1,268.24179456254 approximately which rounds to 1,268.24

After 1 year, the cardholder owes $1,268.24

-----------

Calculating the effective APR

r = APR = 0.24

s = effective APR

s = (1 + r/12)^12 - 1

s = (1 + 0.24/12)^12 - 1

s = 0.26824179456254

s = 0.2682

s = 26.82%

The effective APR is roughly 26.82%

=============================================

Problem 4

After t years, the balance will be approximately 1000*(1.2682)^t

The 1.2682 is from adding 1+0.2682, and the 0.2682 was the effective rate calculated in problem 3. The effective rate helps find the total amount of interest charged on a yearly basis. This assumes that no extra purchases were made and no payments were made either.

4 0
3 years ago
D. Describe why this statement is false.
umka2103 [35]

Answer:

59%

Step-by-step explanation:

There are 7 days out of 14 that are 20 or more

That would be 59%

4 0
3 years ago
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