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Paraphin [41]
4 years ago
9

11. Which answer choice below is not equivalent to 3 + 4x + 3 + X?

Mathematics
1 answer:
kow [346]4 years ago
7 0

Answer:

d

Step-by-step explanation:

5x plus 15 is not the same as the equation

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Find the slope of the line whose equation is 17 + 3y = 7x.<br> -7/3<br> 17/3<br> 7/3
Sergio039 [100]

Step-by-step explanation:

slope of the line is 7/3

  • 17+3y=7x
  • -7x+3y=17

slope = -x coffecient / y coffecient

  • -(-7)/3
  • 7/3

<h2>stay safe healthy and happy.</h2>
3 0
3 years ago
How many solutions does this equation have? 3y = –4 + 2y
Akimi4 [234]

Answer:

4

Step-by-step explanation:

3y - 4 + 2y

0 = 3y - 4 + 2y

4 + 0 = 3y - 2y

4 = y

y = 4

is this what you want ?

4 0
3 years ago
Read 2 more answers
If angle one measures 108 degrees, what is the measure of angle 3?
inna [77]

Answer:

Step-by-step explanation:

∠2= ∠1   { vertically opposite angles}

m,n are parallel lines and a is transverse.

So, ∠3 = ∠2   {corresponding angles}

∠3 = 108

8 0
4 years ago
Austin has $5 more than Mark. If Mark has Δ dollars, write an expression for the amount of money Austin has.
elixir [45]
Mark+5=austin
 hope this helps
- turtles12345

7 0
3 years ago
Read 2 more answers
Find the dot product of the position vectors whose terminal points are (14, 9) and (3, 6).
erma4kov [3.2K]

Answer:

Step-by-step explanation:

The formula for the dot product of vectors is

u·v = |u||v|cosθ

where |u| and |v| are the magnitudes (lengths) of the vectors. The formula for that is the same as Pythagorean's Theorem.

|u|=\sqrt{14^2+9^2} which is \sqrt{277}

|v|=\sqrt{3^2+6^2} which is \sqrt{45}

I am assuming by looking at the above that you can determine where the numbers under the square root signs came from. It's pretty apparent.

We also need the angle, which of course has its own formula.

cos\theta=\frac{uv}{|u||v|} where uv has ITS own formula:

uv = (14 * 3) + (9 * 6) which is taking the numbers in the i positions in the first set of parenthesis and adding their product to the product of the numbers in the j positions.

uv = 96.

To get the denominator, multiply the lengths of the vectors together. Then take the inverse cosine of the whole mess:

cos^{-1}\theta=\frac{96}{111.64676} which returns an angle measure of 30.7. Plugging that all into the dot product formula:

u*v=\sqrt{277}*\sqrt{45}cos(30.7) gives you a dot product of 96

6 0
3 years ago
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