From the description we can infer that we have the expression:

.
Now, to write our expression as a as a root, we are going to apply the law of exponents:

first

Next, we are going to apply the law about fractional exponents:
![x^{ \frac{m}{n}}= \sqrt[n]{x^m}](https://tex.z-dn.net/?f=x%5E%7B%20%5Cfrac%7Bm%7D%7Bn%7D%7D%3D%20%5Csqrt%5Bn%5D%7Bx%5Em%7D%20%20)
![\frac{1}{41^{ \frac{2}{5} }}= \frac{1}{ \sqrt[5]{41^2} }](https://tex.z-dn.net/?f=%5Cfrac%7B1%7D%7B41%5E%7B%20%5Cfrac%7B2%7D%7B5%7D%20%7D%7D%3D%20%5Cfrac%7B1%7D%7B%20%5Csqrt%5B5%5D%7B41%5E2%7D%20%7D%20)
We can conclude that the
value of B is 2.
Answer:
The answer to your question is the letter A. 904.32 in³
Step-by-step explanation:
Data
radius = 6 in
Volume = ?
π = 3.1416
Formula
Volume = 4/3 πr³
-Substitution
Volume = 4/3 (3.1416)(6)³
-Simplification
Volume = 4/3 (3.1416)(216)
Volume = 2714.342 / 3
-Result
Volume = 904.7 in³
The closest answer to my result is A.904.3 in³
Answer:
y=1/3x -3
Step-by-step explanation:
Slope intercept form is y=mx+b, where m is the <u>slope </u>and b is the <u>y-intercept, </u>or the y-value at which the line intersects the y-axis.
Your slope is 1/3, and your y-int. is -3, so substitute those values in:
y=<u>1/3</u>(x) <u>- 3</u>