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Fofino [41]
3 years ago
13

The table shows the relationship between the number of brownies, fill in the missing value in the table.

Mathematics
1 answer:
Debora [2.8K]3 years ago
7 0

Answer:

The answer is 25

Step-by-step explanation:

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Plz help I’ll give Brainliest
kvasek [131]

Answer:

1. y = -5/6x + 2

Write in slope-intercept form, y = mx + b

2. 46

3. x = 4

Isolate the variable by dividing each side by factors that don't contain the variable.

~Hoped this helped~

~Did it first! Brainiliest, please~

5 0
3 years ago
I need THREE points to graph -3y=5x-7
jonny [76]
Your answer to look for is: Slope ( -5/3 ) & Y-intercept ( 7/3 )
6 0
3 years ago
What is the solution to this system of equations? {5x+4y=22 3x+4y=10
zlopas [31]
Multiply 2nd equqation by -1 and add to first

5x+4y=22
<u>-3x-4y=-10 +</u>
2x+0y=12

2x=12
divide by 2
x=6

sub back


3x+4y=10
3(6)+4y=10
18+4y=10
minus 18 both sides
4y=-8
divide by 4
y=-2

(x,y)
(6,-2) is solution
6 0
3 years ago
Read 2 more answers
What is the measure of M​
photoshop1234 [79]

Answer:

It's also 52  If I got it wrong I'm so sorry but I'm good at angles

Step-by-step explanation:

6 0
3 years ago
An um contains 1 red marble, 7 white marbles and 2 blue marbles. A player randomly
BaLLatris [955]

Answer:

A loss of 1.8$

Step-by-step explanation:

In the bag in this problem, we have:

r = 1 (number of red marbles)

w = 7 (number of white marbles)

b = 2 (number of blue marbles)

n = r + w + b = 1 + 7 + 2 = 10 (number of total marbles)

So, the probabilities of choosing a red, a white or a blue marble are:

p(r) = \frac{r}{n}=\frac{1}{10}=0.1 (probability of choosing a red marble)

p(w)=\frac{w}{n}=\frac{7}{10}=0.7 (probability of choosing a white marble)

p(b) = \frac{b}{n}=\frac{2}{10}=0.2 (probability of choosing a blue marble)

The winning associated to each probability are:

+$5 if the marble is red

-$3 if the marble  is white

-$1 if the marble is blue

So the expected winning can be calculated as follows:

E(X)=p(r) \cdot (+\$5)+p(w) \cdot (-\$3) +p(b)\cdot (-\$1)=\\=(0.1)(+5)+(0.7)(-3)+(0.2)(-1)=-\$1.8

So, he can expect a loss of 1.8$.

4 0
3 years ago
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