whenever you have say a multiplication of a binomial or any polynomial, you can simply multiply each term of one by the other's terms, namely
(a+b)*(c+d+e) => a(c+d+e) + b(c+d+e), and then add like-terms.
![\bf \stackrel{length}{(6x+1)}\stackrel{width}{(3x+1)}\implies 6x(3x+1)+1(3x+1)\implies (18x^2+6x)~~+~~(3x+1) \\\\\\ 18x^2+6x+3x+1\implies \stackrel{\textit{adding like-terms}}{18x^2+9x+1}](https://tex.z-dn.net/?f=%5Cbf%20%5Cstackrel%7Blength%7D%7B%286x%2B1%29%7D%5Cstackrel%7Bwidth%7D%7B%283x%2B1%29%7D%5Cimplies%206x%283x%2B1%29%2B1%283x%2B1%29%5Cimplies%20%2818x%5E2%2B6x%29~~%2B~~%283x%2B1%29%20%5C%5C%5C%5C%5C%5C%2018x%5E2%2B6x%2B3x%2B1%5Cimplies%20%5Cstackrel%7B%5Ctextit%7Badding%20like-terms%7D%7D%7B18x%5E2%2B9x%2B1%7D)
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Answer:
Step-by-step explanation:
in y = mx + b form, the slope will be in the m position and the y int will be in the b position.
y = mx + b
slope(m) = -7/6
y int (b) = -1
y = -7/6x - 1 <== ur equation
Blue
P(blue) = 307 / 1000 = 0.307
Green
P(Green) = 642/1000 = 0.642
Yellow
P(Yellow) = 51/1000 = 0.051
To make the denominator 20, you are going to have to divide both numerator and denominator by 50. 1000/50 = 20
Blue= 307/50 = 6.14; P(blue) 6.14/20
Green = 642/50 = 12.84; P(blue) = 12.84 / 20
Yellow = 51/50 = 1.02; P(yellow) = 1.02/20
Check
Add these three together
1.02 + 12.84 + 6.14 = 20 as it should.