Answer:
1, 3, 9, 27
Step-by-step explanation:
You need the first 4 terms, so let n = 1, and evaluate the expression. Then do the same for n = 2, n = 3, and finally n = 4.
n = 1
n = 2
n = 3
n = 4
B.Rotating
C.Dilating
Answer:
Remember that regular octagon is a figure with eight sides, where all of them are equal. The image attached shows a regular octagon.
So, if we want to map the octagon on to itself using rotation, we need to rotate 90° clockwise, or make to moves of 45° each, that way the octagon would be as the original one because it has equal sides.
When you rotate the first 45°, you would have like an inclined octagon, so you need to rotate another 45° to get the same octagon as the original.
So, the minimum degree would be 45°, doing it twice.
I have to solve for L
Answer:
L = ±√( (100c² - 100v²) / C² )
Step-by-step explanation:
You're just doing reverse PEMDAS.
So first get all the values correlated with L on one side and the non-L values on the other side using subtraction/addition.
Then remove all coefficient using multiplication/division.
Then take the sqareroot to get rid of the squre on the v.
Remember that taking squareroot gives a ± answer because
(x)² = (-x)²
Answer:
78
Step-by-step explanation:
If t=4
18+t2 would equal “26”
Then 26x3 would be “78”
When t = 4, the part of the equation 18 + t^2 evaluates to 34. We cannot compute - 5x^3 without the value of x.
The subject of the question is Mathematics, more specifically, the topic of algebraic expressions. Given an equation, 18 + t^2 - 5x^3, you'd like to find the value when t = 4. However, the value of x is not provided which is required to fully solve this expression. If we ignore the variable x, and only substitute the value of t in the expression, it will be:
18 + 4^2 = 18 + 16 = 34.
So, when t = 4, the part of the equation 18 + t^2 evaluates to 34. However, we cannot calculate - 5x^3 without having the value of x.
#SPJ3
the expression 3x3 +
2x2y + 3xy2 + 2y3