Answer:
stars
those are stars in the galaxy
Answer:
The read will be 20.9[C]![x=\frac{(y-y_{1} )}{(y_{2} -y_{1} )}*(x_{2}-x_{1})+y_{1}\\ x=\frac{(18-0 )}{(95 -0 )}*(100-2)+2\\\\x= 20.9[C]](https://tex.z-dn.net/?f=x%3D%5Cfrac%7B%28y-y_%7B1%7D%20%29%7D%7B%28y_%7B2%7D%20-y_%7B1%7D%20%29%7D%2A%28x_%7B2%7D-x_%7B1%7D%29%2By_%7B1%7D%5C%5C%20%20x%3D%5Cfrac%7B%2818-0%20%29%7D%7B%2895%20-0%20%29%7D%2A%28100-2%29%2B2%5C%5C%5C%5Cx%3D%2020.9%5BC%5D)
Explanation:
This is a problem related to linear interpolation, Linear interpolation consists of tracing a line through two known points y = r (x) and calculating the intermediate values according to this line.
The equation of a known line two points (x1, y1)and (x2, y2) = (2,0) (100,95) is:

If we clear y from the equation we have:
[tex]y=\frac{(x-y_{1})}{(x_{2}-x_{1} )}*(y_{2} -y_{1} )+y_{1} \\replacing
Answer:
Angular speed, 
Explanation:
It is given that,
The top of the leaning bell tower at Pisa, Italy, moved toward the south at an average rate of, v = 1.2 mm/yr

Velocity, 
Height of the tower, h = 55 m
The height of the tower is equivalent to the radius. Let
is the angular speed of the tower’s top about its base. The relation between the angular speed and the angular speed is given by :




So, the average angular speed of the tower’s top about its base is
. Hence, this is the required solution.
Answer:
The rate at which velocity changes with respect to a change in time is called. acceleration.
Explanation:
Answer:
The movement of an object depends on the reference frame, so it is important to predicate it.
Explanation: