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Ghella [55]
2 years ago
9

Question 2 (1 point)

Mathematics
1 answer:
vlada-n [284]2 years ago
4 0

(3,0)

Step-by-step explanation:

Different - add

2x - y = 6

+

x + y. = 3

3x = 9

÷3

x = 3

Substitute x = 3 into one of the equation:

x + y = 3

3 + y = 3

-3

y = 0

Solution is (3,0)

Hope this helps!

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Which represents the number of lines of symmetry that are possessed by a regular n-gon?
anastassius [24]

Answer:

Option B. n

Step-by-step explanation:

we know that

A regular polygon is a convex polygon whose angles are all congruent.The number of lines of symmetry in a regular polygon is equal to the number of sides a regular polygon has.

therefore

the answer is option B. n

8 0
3 years ago
Select the better deal in the pair. Then give the unit rate for the better deal.
gizmo_the_mogwai [7]

Answer:

The better deal is $32.05/15 gal

Step-by-step explanation:

Divide:

56/25

=2.24

32.05/15

=2.13666667

=2.14

6 0
3 years ago
Read 2 more answers
For f (x)= -x + 8, what is the value of x for which f(x) = 9?
Elina [12.6K]

Answer:

x=-1

Step-by-step explanation:

f (x)= -x + 8

Let f(x) = 9

9 = -x+8

Subtract 8 from each side

9-8 = -x+8-8

1 = -x

Multiply each side by -1

-1 = x

8 0
3 years ago
If you buy a bat and ball for $1.10 and the bat is $1 more than the ball most people would answer that the ball costs 10c. Howev
Marina CMI [18]

Answer: the right cost is $1.05 for a bat and 0.5c for a ball.


Step-by-step explanation:

Let's imagine x in the price of bat and y is the price of the ball

From the infor we know that:

x + y= 1.10 (dollars)

and since the bat is $1 more than the ball we can ensure that:

x - 1 = y

Now we can replace y as follow:

x + x - 1 = 1.10

2x - 1 = 1.10

2x = 1.10 + 1

2x = 2.10

x= 2.10/2= 1.05 (dollars)


5 0
4 years ago
Find the inverse of the function. State any restrictions on the domain.<br><br> f(x) = x^2 + 9
Bogdan [553]

The function is not invertible if you think of it as

f:\mathbb{R}\to\mathbb{R}

because it is not injective: f(x)=f(-x)

So, if we restrict the domain to the positive numbers only:

f:\mathbb{R^+}\to\mathbb{R}

Note that the range is actually [9,\infty), so we can be more precise and write

f:\mathbb{R^+}\to[9,\infty)

To find the inverse, we solve the expression for x:

y=x^2+9 \iff y-9=x^2 \iff x=\pm\sqrt{y-9}

But since we restricted to positive values of x, the inverse is

x=\sqrt{y-9}

8 0
3 years ago
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