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IgorLugansk [536]
3 years ago
8

Answer this Please (10) points for this ​

Mathematics
2 answers:
Alexeev081 [22]3 years ago
8 0
I wanna say it is 49 I answered on my calculator!
Ronch [10]3 years ago
6 0
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The sides of a triangle are 3x+ 2, 6x, and 5x. Find the expression to represent the perimeter. To find the perimeter, we ADD the
frosja888 [35]

Answer:

14x + 2

Step-by-step explanation:

Perimeter = sum of the measures of each side

If a triangle has side lengths of 3x+ 2, 6x, and 5x then the perimeter of that triangle is equal to 3x + 2 + 6x + 5x

Notice that the expression 3x + 2 + 6x + 5x has similar terms so to get the simplist version of the perimeter we would simply combine like terms

3x + 6x + 5x = 14x

The perimeter would = 14x + 2

7 0
3 years ago
Read 2 more answers
If John invests $600 in a savings account earning interest at a rate of 6% compounded semiannually how much will be in account a
kondaur [170]

Answer:

$962.82 will be in John's account after 8 years if compounded semiannually.

Step-by-step explanation:

The formula used to find the amount after 8 years is:

A = P(1+ r/n)^nt

Where A = future value

P= principal value

r = interest rate ( in decimals)

n = no of times interest is compounded

t = time

Putting the values:

P = $600

r = 6% = 0.06

n = 2

t = 8

A= 600 *(1+0.06/2) ^2(8)

A= 600 *(1.03) ^16

A =600*1.605

A = 962.82

So, $962.82 will be in John's account after 8 years if compounded semiannually.

3 0
3 years ago
A group of n students is assigned seats for each of two classes in the same classroom. how many ways can these seats be assigned
Ratling [72]
Consider ONLY the first class. Since there are n seats (assuming they are in a row), we would have n! ways.

Now, consider the second class. Let's start by arranging three people first and then generalising n people to better understand what is going on.

Where we have 3 people:
First class: A B C = 3!
Second class _ _ _
Now, consider where each of these people can't actually sit.
For A, it's the first seat, for B, it's the second seat, and for C, it's the last seat.
This means that we have a restriction on EACH of the candidates.

So, to tackle this, let's consider A only; B and C will follow the same way.
A can sit in 2 different spots, namely the second and last seat: thereby, having 3C2 ways in sitting. _ A _
Now, when we fix one person, C can only go in one place: first seat. This means that for one single arrangement of the first class, we've made: 3C2 arrangements for the second class, for ONE particular person. Extend that to another person, and we get: 2C1 ways

This extends to what we call: a derangement where the number of permutations made contains no fixed element. We can regard things like picking up three/two/one pen as derangements, because really we're arranging AND not arranging them simultaneously.

Thus, we use the inclusion-exclusion method:
Total no. of perms:
n! \cdot n!\left(1 - 1 + \frac{1}{2!} - \frac{1}{3!} + \frac{1}{4!} - ... + (-1)^{n} \cdot \frac{1}{n!}\right)
4 0
3 years ago
Kalon has $175 and needs to save at least $700 for a new computer. If he can save $35 per week, what is the minimum number of we
Mariulka [41]
In order to find out the answer, you just need to calculate :

(700 - 175)/35

= C. 15 weeks

hope this helps

3 0
4 years ago
Helppp and explain plzzzzzz
devlian [24]
The second one is correct. 66/300 = x/100
4 0
4 years ago
Read 2 more answers
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