Answer:
A
Step-by-step explanation:
Hope it helps!
see the figure below to better understand the problem
we have that

<h2>The answer is 357.0 feet</h2>
Answer:
Step-by-step explanation:
17.3664
If she is making 6 costumes that need 3 7/9 yards each, the equation would be 6 x 3 7/9.
The answer to that equation would be 22 2/3.
How to get the answer:
3 x 6 = 18
7 x 6 = 42 (the seven is from the 7/9)
42/9 = 4 2/3
then add the eight teen and the 4 2/3 and you get 22 2/3.
Answer:
Step-by-step explanation:
Given
Position of particle is 
i.e. distance from x axis is 
Distance from y axis at
velocity is given by 

Similarly acceleration is given by


Magnitude of acceleration is 

From 1 and 2 we can see that
Magnitude of acceleration is proportional to distance from x axis
