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eimsori [14]
3 years ago
5

(2x + 4y s 12 3.x - y < 2

Mathematics
1 answer:
posledela3 years ago
4 0

Answer:

bbbbbbbbbbbbooooooooooooooooorrrrrrrrriiiiiiiiiinnnnnnnnnggggggggg

Step-by-step explanation:

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2 ( 3 x 4) - 10 + 14/2 = 21<br><br> true or false
larisa86 [58]

Answer:

true

Step-by-step explanation:

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The first one will get the brianlist please help answer these two
Julli [10]

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Step-by-step explanation:

I don't see anything, is there supposed to be anything here? if not

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8 0
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Write a mixed number that is equivalent to 16\3
Veseljchak [2.6K]
A mixed number that is equivalent to 16/3 is 

5 1/3
3 0
3 years ago
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Two part-time instructors are hired by the Department of Statistics and each is assigned at random to teach a single course in p
scZoUnD [109]

Answer:

The probability that they will teach different courses is \frac{2}{3}.

Step-by-step explanation:

Sample space is a set of all possible outcomes of an experiment.

In this case we will write the sample space in the form (x, y).

Here <em>x</em> represents the course taught by the first part-time instructor and <em>y</em> represents the course taught by the second part-time instructor.

Denote every course by their first letter.

The sample space is as follows:

S = {(P, P), (P, I), (P, S), (I, P), (I, I), (I, S), (S, P), (S, I) and (S, S)}

The outcomes where the the instructors will teach different courses are:

s = {(P, I), (P, S), (I, P),(I, S), (S, P) and (S, I)}

The probability of an events <em>E</em> is the ratio of the number of favorable outcomes to the total number of outcomes.

P(E)=\frac{n(E)}{N}

Compute the probability that they will teach different courses as follows:

P(\text{Different courses})=\frac{n(s)}{n(S)}=\frac{6}{9}=\frac{2}{3}

Thus, the probability that they will teach different courses is \frac{2}{3}.

3 0
3 years ago
What is the relative maximum of the function?
Stels [109]

Answer:

(1, 4)

Ste-step explanation:

The relative max of this function is read directly from the graph:  4. This value of y occurs when x = 1.

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4 years ago
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