Hello I’m back oof.
First chart: 3.14•2^
3.14•3^
3.14•4^
Second chart: 2(-4)-2
2(0)-2
2(4)-2
Third chart: 10(2^)+(1+1)
10(-1^)+(3+1)
10(-4^)+(4+1)
Hope this helps!
Answer:
The average radius of sun is approximately 9.95 times the average radius of Jupiter.
Step-by-step explanation:
We are given the following in the question:
Average radius of Jupiter =

Average radius of the sun =

Relation between average radius of sun and average radius of Jupiter =

Thus, the average radius of sun is approximately 9.95 times the average radius of Jupiter.
Hi,
For the equation: 220=2x-12x there is only one solution, x=−22.
Have a great day!
From the given triangle in the photo, the lengths of the sides are 3m and a, the hypotenuse is c. One angle, opposite of 3m is given to be 50 degrees C. The right equation that would solve c is,
sin (50 degrees C) = 3m / c
Thus, the answer is the first choice.