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Ivenika [448]
3 years ago
11

Help pls dont answer if you don’t know also ill give brainliest

Mathematics
2 answers:
attashe74 [19]3 years ago
7 0
The answer is 6x + 1
evablogger [386]3 years ago
5 0

Answer:

6x + 1

Step-by-step explanation:

Distribute

3 + 2 ( x- 1 ) + 4x

3 + 2x - 2 + 4x

Subtract

3 + 2x - 2 + 4x

1 + 2x + 4x

Like terms

1 + 2x + 4x

1 + 6x

Rearrange

6x + 1

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283 is the same as the quotient of 97 and u
Margaret [11]

Answer:

283=97/u U=2.917

Step-by-step explanation:

if you have choices and more information, it would be helpful when answering questions

6 0
2 years ago
Christian collects baseball cards. He has 8 fewer than twice as many Terkuma cards as Seun cards. He has three times as many Chu
aleksandrvk [35]
I think Terkuma has 100 cards
4 0
3 years ago
Passes through (3,-6), slope = 2 -3
Darina [25.2K]

Answer:

???????

Step-by-step explanation:

I think it does pass through (3, -6) and the slope is 2, -3 based on the information I was given.

3 0
3 years ago
Consider the function f(x)= 1-|x-1|+|x+1| for -3<x<3. Recall that the absolute function can be represented as a piece wise
Kruka [31]
By the definition for the absolute value,

|x-1|=\begin{cases}x-1&\text{for }x\ge1\\-(x-1)&\text{for }x
|x+1|=\begin{cases}x+1&\text{for }x\ge-1\\-(x+1)&\text{for }x

So for the compound function f(x)=1-|x-1|+|x+1|, there are three intervals to consider. What happens when x? when -1\le x? when x\ge1?

You have

f(x)=\begin{cases}1-(-(x-1))+(-(x+1))=-1&\text{for }x
8 0
4 years ago
Find the lateral area of the cylinder.<br><br>Give your answer in the terms of pi.
Wewaii [24]
Hi there! 

The formula for the lateral area of a cylinder is LA = 2 x pi x r x h. (two times pi times radius times height) Using this formula, we can plug in the values and solve for the lateral area.

Plugging in the values: LA = 2 x pi x 7 x 9
Simplifying: LA = 2pi x 63
LA = 126pi yd^2

ANSWER:
The 4th option - 126pi yd^2

Hope this helps!! :)
If there's anything else that I can help you with, please let me know!
6 0
3 years ago
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