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nekit [7.7K]
3 years ago
13

Please help! This is timed!

Mathematics
2 answers:
andriy [413]3 years ago
5 0

Answer:

If it is multiple answers then it would be the last one or the second one. If not, I would just choose the 2nd one

Step-by-step explanation:

dezoksy [38]3 years ago
4 0

Answer:

im pretty sure 6 + (-2) is your answer

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Which values of P and Q result in an equation with no solutions?
Ad libitum [116K]

Try this solution/explanation:

<u>way 1</u>:

rule: for an equation where no roots P+Q=0. It means, Px-Qx=0, ⇔ x(P-Q)=0, ⇔ P=Q.

for answer 'D' P=Q=15.

<u>way 2</u>:

rule: if an equation of the line has a form y=kx+b, then y₁||y₂ if k₁=k₂. It means, for y₁=Px-45 || y₂=Qx+75, then P=Q. P=Q, if 'D' answer.

Answer: D

3 0
3 years ago
A scalene right triangle has a base of 3 mm, a height of 4 mm, and a third side length of 5 mm. Find the area.
LuckyWell [14K]

Answer:

6 square mm

Step-by-step explanation:

base*height/2

3*4=12

12/2=6

6 0
4 years ago
Two new drugs are to be tested using a group of 60 laboratory mice, each tagged with a number for identification purposes. Drug
babymother [125]

Answer:

The total number of ways of assignment is 314,790,828,599,338,321,972,833,000.

Step-by-step explanation:

In mathematics, the procedure to select <em>k</em> items from <em>n</em> distinct items, without replacement, is known as combinations.

The formula to compute the combinations of <em>k</em> items from <em>n</em> is given by the formula:

{n\choose k}=\frac{n!}{k!(n-k)!}

In this case we need to determine the number of ways in which the drugs are assigned to each mouse.

It is provided that new drugs are to be tested using a group of 60 laboratory mice, each tagged with a number for identification purposes.

Drug A is to be given to 22 mice.

Compute the number of ways to assign drug A to 22 mice as follows:

{60\choose 22}=\frac{60!}{22!(60-22)!}\\\\=\frac{60!}{22!\times 38!}\\\\=14154280149473100

Now the remaining number if mice are: 60 - 22 = 38.

Compute the number of ways to assign drug B to 22 mice as follows:

{38\choose 22}=\frac{38!}{38!(38-22)!}\\\\=\frac{38!}{22!\times 16!}\\\\=22239974430

Now the remaining number if mice are: 38 - 22 = 16.

Compute the number of ways to assign no drug to 16 mice as follows:

{16\choose 16}=\frac{16!}{16!(16-16)!}\\\\=1

The total number of ways of assignment is:

N = {60\choose 22}\times {38\choose 22}\times {16\choose 16}\\\\=14154280149473100\times 22239974430\times 1\\\\=314,790,828,599,338,321,972,833,000

Thus, the total number of ways of assignment is 314,790,828,599,338,321,972,833,000.

8 0
3 years ago
How you solve this problem
frozen [14]

Answer:

4.5cm, 7.5 cm, 6 cm

Step-by-step explanation:

Multiply 10, 8 and 6 by 0.75 to get answers

7 0
3 years ago
Read 2 more answers
Which of the following represents the domain and range of y = sin x?
shtirl [24]

Answer:

3rd choice

Step-by-step explanation:

The domain is (-infinity, infinity) because you can keep subtracting multiples of 360 until you get a value under 360. For the range, imagine a unit circle.

The y coordinate is the sin value, so it is just [-1, 1].

So the answer is the 3rd choice.

8 0
3 years ago
Read 2 more answers
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