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slamgirl [31]
3 years ago
5

HELP ASAP PLEASEEEEE

Mathematics
2 answers:
Helen [10]3 years ago
8 0
Your answer is y=-3/12x+1
Maksim231197 [3]3 years ago
7 0

Answer:

y=-3/2x+1

Step-by-step explanation:

-3/2 is the slope

1 is the y intercept

You might be interested in
Using the order of operations, what should be done first to evaluate 6 squared + 10 divided by (negative 5) (3) minus 5?
marusya05 [52]

Answer:

apply the BODMAS concept

brackets, off, division, multiplication, addition, subtraction

Step-by-step explanation:

(6²+10)÷(-5×3)-5

in this case the answer is D

4 0
3 years ago
Solve the equation by finding square roots. To start, remember to isolate x^2. Equation= x^2+4=20
prohojiy [21]
Get the equation simplified. Subtract 4 by each side.
20-4= 16
and the square root of 16, is 4. 
Plug it in to check. 
(4)^2+4=20
16+4=20
20=20

Ultimately your final answer is X=4

4 0
3 years ago
Write the product in its simplest form -8w • (-w)
Furkat [3]

the product is 9w. Two negatives make a positive

4 0
4 years ago
PLEASE help me please i really need the help
jenyasd209 [6]

Answer: number two

Step-by-step explanation: i really hope this helps

7 0
3 years ago
Help me with this. I am really stuck.
Kryger [21]

By the Hypotenuse Leg theorem, the two triangles are congruent. That is, ΔBXA ≅ ΔBYA

From the question, we are to prove that ΔBXA ≅ ΔBYA

From the Hypotenuse Leg theorem which states that "two right triangles are congruent if the hypotenuse and one leg of one right triangle are congruent to the other right triangle's hypotenuse and leg side".

From the given information,

BX ⊥ XA.

ΔBXA is right triangle with hypotenuse AB

Also,

BY ⊥ YA.

ΔBYA is right triangle with hypotenuse AB

∴ The hypotenuses of the triangles are congruent

Also, from the given information,

XA is congruent to YA

XA and YA are the legs of the right triangles.

Hence, by the Hypotenuse Leg theorem, the two triangles are congruent. That is, ΔBXA ≅ ΔBYA

Learn more on Congruent triangles here: brainly.com/question/27983954

#SPJ1

7 0
1 year ago
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