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Pavel [41]
3 years ago
5

3 (2xy) if x = 2 and y = -3​

Mathematics
2 answers:
Orlov [11]3 years ago
8 0
3 (2xy)
3 [2(2)(-3)]
3 [2(-6)]
3 [-12]
-36
qwelly [4]3 years ago
5 0
First, distribute the 3 according to the distributive property:
6xy

then, substitute in your values
6(2)(-3)
and solve

6(2)(-3) = 12(-3) = -36

ANSWER: -36
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Find the 11th term of the arithmetic sequence an=<br> 24 – 7(n - 2)<br> 2115
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Answer:

Let's simplify

24−7(n−2)(2115)

Step-by-step explanation:

step-by-step.

=−14805n+29634

I hope my answer helped

7 0
3 years ago
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FIND x :<br><br> x+(x+1)+(x+2)=(x+1)^2<br> A. 1<br> B. 0 <br> C. 3 <br> D. 2
inysia [295]

Answer:

2

Step-by-step explanation:

5 0
3 years ago
Read 2 more answers
What is the probability that more than twelve loads occur during a 4-year period? (Round your answer to three decimal places.)
Nataly_w [17]

Answer:

Given that an article suggests

that a Poisson process can be used to represent the occurrence of

structural loads over time. Suppose the mean time between occurrences of

loads is 0.4 year. a). How many loads can be expected to occur during a 4-year period? b). What is the probability that more than 11 loads occur during a

4-year period? c). How long must a time period be so that the probability of no loads

occurring during that period is at most 0.3?Part A:The number of loads that can be expected to occur during a 4-year period is given by:Part B:The expected value of the number of loads to occur during the 4-year period is 10 loads.This means that the mean is 10.The probability of a poisson distribution is given by where: k = 0, 1, 2, . . ., 11 and λ = 10.The probability that more than 11 loads occur during a

4-year period is given by:1 - [P(k = 0) + P(k = 1) + P(k = 2) + . . . + P(k = 11)]= 1 - [0.000045 + 0.000454 + 0.002270 + 0.007567 + 0.018917 + 0.037833 + 0.063055 + 0.090079 + 0.112599 + 0.125110+ 0.125110 + 0.113736]= 1 - 0.571665 = 0.428335 Therefore, the probability that more than eleven loads occur during a 4-year period is 0.4283Part C:The time period that must be so that the probability of no loads occurring during that period is at most 0.3 is obtained from the equation:Therefore, the time period that must be so that the probability of no loads

occurring during that period is at most 0.3 is given by: 3.3 years

Step-by-step explanation:

8 0
4 years ago
Can someone help with numbers 15 and 16
vichka [17]
15.

I had x before the movie.

x - 13.50 = 26.50

Add 13.50 to both sides of the equation:

x = 40

I had $40 before the movie.

16.

The original balance was x.

x - 161.15 = 423.28

Add 161.15 to both sides:

x = 584.43

The previous balance was $584.43
4 0
4 years ago
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