The width of a spectral line of wavelength 300 nm is measured as 0.01 nm. What is the average time that the system remains in the corresponding energy state? 0.47 second 4.7 picosecond 0.15 femtosecond 0.015 millisecond

icon
Related questions
Question
100%
Both answer please.
U
The width of a spectral line of wavelength 300 nm is measured as 0.01 nm. What is the average time that the system remains in the corresponding
energy state?
0.47 second
4.7 picosecond
0.15 femtosecond
0.015 millisecond
axis
A disk of mass m and radius R, which is wound with a rope hanging from the ceiling.
starts to roll own. The linear velocity of the ball when it has rolled 5 m down can be
expressed as v =√√ (square root of a/b) where a and b are the smallest possible
integers. Find the value of a+b.
203
200
Cannot calculate without values of m and R
201
Transcribed Image Text:U The width of a spectral line of wavelength 300 nm is measured as 0.01 nm. What is the average time that the system remains in the corresponding energy state? 0.47 second 4.7 picosecond 0.15 femtosecond 0.015 millisecond axis A disk of mass m and radius R, which is wound with a rope hanging from the ceiling. starts to roll own. The linear velocity of the ball when it has rolled 5 m down can be expressed as v =√√ (square root of a/b) where a and b are the smallest possible integers. Find the value of a+b. 203 200 Cannot calculate without values of m and R 201
Expert Solution
steps

Step by step

Solved in 2 steps with 1 images

Blurred answer