Complete Question
The complete question is shown on the first uploaded image
Answer:
Explanation:
From he question we are told that
The first mass is
The second mass is
From the question we can see that at equilibrium the moment about the point where the string holding the bar (where are hanged ) is attached is zero
Therefore we can say that
Making x the subject of the formula
Looking at the diagram we can see that the tension T on the string holding the bar where are hanged is as a result of the masses ()
Also at equilibrium the moment about the point where the string holding the bar (where () and are hanged ) is attached is zero
So basically
Making subject
Answer:
Eventually it reaches bottom of hill so C
Explanation:
In this exercise we have to use the knowledge in distance, in this way we will find that the proportional distance found is:
So from the information given in the text we find that:
First, we need to find in what way or manner often the radius of the brightest star exist considerable respect to the range of the ball significance, that exist given apiece following equating:
Now, we can calculate the distance from the center of the sun to the center of the sphere representing the earth:
See more about distance at brainly.com/question/989117
Answer:
d = 0.645 m(assuming a radius of the ball bearing of 3 mm)
Explanation:
The given information is:
We need to assume a radius for the ball bearing, so suppose that the radius is 3 mm = .
First, we need to find how many times the radius of the sun is bigger respect to the radius of the ball bearing, which is given by the following equation:
Now, we can calculate the distance from the center of the sun to the center of the sphere representing the earth, :
[tex] d_{s} = \frac{d_{e}}{r_{s}/r_{b}} = \frac{1.496 \cdot 10^{11} m}{2.32\cdot 10^{11}} = 0.645 m
I hope it helps you!
B. a faster wave velocity.
C. the same frequency.
D. a longer wavelength.