subject
Mathematics, 20.02.2020 08:58 sierravick123owr441

Consider the system.
6x βˆ’ 3y = 42
x + 3y = βˆ’21

Part 1 out of 2
Complete the description for three different substitution methods that can be used to solve this system.

Solve the second equation for x (x =
-21
βˆ’ 3y) and then substitute the value into the first equation.
Solve the first equation for y (y = 2x βˆ’
-14
) and then substitute that value into the second equation.
Solve either equation for 3y (3y =
βˆ’ x or 3y = 6x βˆ’
) and then substitute that value into the other equation.

ansver
Answers: 2

Another question on Mathematics

question
Mathematics, 21.06.2019 19:00
Witch represents the inverse of the function f(x)=1/4x-12
Answers: 1
question
Mathematics, 21.06.2019 19:30
Explain how you can find the missing fraction in 3 4/5 / (blank) 2 5/7. then find the missing fraction.
Answers: 2
question
Mathematics, 22.06.2019 01:00
3questions show how you solved the problem 1. subtract & simplify (–y2 – 4y – 8) – (–4y2 – 6y + 3) 2.multiply and simplify 2x2y3z2 Β· 4xy4x2 3.multiply and simplify (x – 4) (x2 – 5x – 6)
Answers: 1
question
Mathematics, 22.06.2019 03:30
More challenges: 1) factor out the indicated quantity.8mnΒ² + 7mn - m : factor out the quantity -m2) factor the polynomial by grouping.2vw + 7cv + 14cw + 49cΒ²3) factor completely using the difference of squares along with factoring by grouping.25vΒ³ - 25vΒ² - 4v + 44) factor the sum of cubes. 125xΒ³ + 645) qΒ³ + 27rΒ³6) factor completely. use difference of squares.729p^6 - 6^67) solve the equation(7x + 4)(9x - 1) = 08) a. find the values of x for which f (x) = 0b. find f (0)f (x) = xΒ² + 2x - 489) find the x and y-intercepts for the function defined by y = f (x)f (x) = (x + 3)(x + 4)(x - 1)Β²10) factor the trinomial completely by using any method. remember to look for a common factor first. 3vΒ² - 2v - 16
Answers: 2
You know the right answer?
Consider the system.
6x βˆ’ 3y = 42
x + 3y = βˆ’21

Part 1 out of 2
Complet...
Questions
question
English, 08.01.2021 19:30
question
Biology, 08.01.2021 19:30