The concept of the linear system, subtraction, and division is applied.
g is taken as a subject then the equation is .
It is a system of an equation in which the highest power of the variable is always 1. A one-dimension figure that has no width. It is a combination of infinite points side by side.
Given
x = 3g + 2 is a single linear variable equation.
Rearrange x = 3g + 2 to make g the subject.
Subtract 2 from the equation.Then
x - 2 = 3g
Divide the equation by 3. Then
Thus, g is taken as a subject then the equation is .
More about the linear system link is given below.
through Friday, she runs 1 1/2 miles in a park. The total distance she runs for the
week is 8 miles. Solve the equation m + 4(11/2) = 8 to find the number of miles, m,
Jessica runs on Monday. Explain your answer.
Please help me out on these two questions I’ve been stuck for about 15 minutes
Answer:
Step-by-step explanation:
The first question:
91 = 43 + x
x = 91 - 43
x = 48
By using transposing method
Second question:
Answer:
Step-by-step explanation:
Second Question : M+4(1 1/2)
= 4x 1 1/2
= 3/2 x 4/1 = 12/2 = 6
= M+6 = 8
= 2 + 6 = 8
M = 2
Answer:
17 packets
Step-by-step explanation:
So Tanya needs 130 chocolate bars.
But there is 8 in each packet.
So,
130 ÷ 8 = 16.25
16 packets
As you can see, there is a quarter left of chocolates that she needs (0.25). So what she can do is buy 1 more packet then give the quarter of that packet to the children.
So 16 + 1 = 17 packets
Answer:
17 packets
Step-by-step explanation:
So Tanya needs 130 chocolate bars.
But there is 8 in each packet.
So, Divide
130 ÷ 8 = 16.25
16 packets
Answer:
2 x 2 x 2 x 2 x 2 x 2 x 2 = 128
OR
2^7
Step-by-step explanation:
2 is the only prime number you can multiply to get 128.
as such your answers are :
2^7
or
2 x 2 x 2 x 2 x 2 x 2 x 2.
(if you don't know yet, 2^7 is just a simple way to say 2 times itself 7 times.)
Math 5 ( Section F,G or X)
History 5 (section T,U or Y)
Biology 1 ( section D,H,V or W)
if she will enroll in all of these subjects, in how many ways can she arrange her schedule?