Answer
C. 0.6125 m
Explanation
The magnification of an image produced by curved mirrors can be given in two ways;
Magnification, M = (Height of the image) / (height if the object) and
M = (image distance,V) / (Object distance, U).
Using the first formula,
M = 0.35/0.4
= 0.875
Now from the second formula,
M = V/U
0.875 = V/0.7
V = 0.875 × 0.7
= 0.6125 m
Answer : v = 0.1625 m.
Explanation :
It is given that,
Height of an object,
Object distance,
Height of an image,
We have to find the image distance (v).
We know that the magnification of mirror is the ratio of height of image to the height of object.
i.e. ..............(1)
Also, magnification is the ratio of image distance to that of object distance.
i.e ............(2)
So, from equation (1) and (2)
So, image is located at a distance of 0.6125 m.
EXPLANATION :
As per the question, the electron has jumped from ground state to higher energy level.
From Bohr's postulate, we know that electron can only move to higher excited state when the energy equivalent to excitation energy has been given to it. Otherwise, the electron can not move from ground state to the excited state.
Hence, it is obvious that the electron might have excited to higher energy level by providing sufficient energy from outside.
The external source might be light of suitable frequency or any electric or thermal source.
Answer:
the 25 kg one
Explanation:
The higher the weight the higher the inertia.
lets suppose we blow wind at both of these objects at a very high rate equally, u will notice after some time depending on the strength of wind the 8kg object will probably move earlier than the 25 kg one.