Radiative Transport Equation: Moving Energy on the Photon Train

  Рет қаралды 28,560

Aaron Parsons

Aaron Parsons

Күн бұрын

Пікірлер: 15
@sepidehsepehri
@sepidehsepehri Жыл бұрын
Thank you so much. I was nervous about my spectroscopy exam cuz I didn't understand these concepts well, but now I understand much better by your explanation.
@MSloCvideos
@MSloCvideos 3 жыл бұрын
Thanks dude. My professor took 3 whole hours to explain the exact same thing.
@mikalghorbani7642
@mikalghorbani7642 Жыл бұрын
You explained it briefly and useful. I appreciate you.
@kumar_kiran
@kumar_kiran 9 жыл бұрын
It would be good to number the videos and put them in a Play list. In this video you mentioned about a previous video on Specific Intensity and I can find it :)
@warzonemoments3970
@warzonemoments3970 8 жыл бұрын
how did you find the solution for the radiative transfer equation with optical depth?
@TenzinLundrup
@TenzinLundrup 3 жыл бұрын
The equation at 8.58 comes from using an integrating factor.
@AdityaPillai009
@AdityaPillai009 3 жыл бұрын
Very informative and good explanation. Thanks!
@SurenMaharjan
@SurenMaharjan 8 жыл бұрын
How can I simulate radiation dose in CT scan of CT brain image or abdomen image? Matlab or any other relevant softwares user friendly?
@wurnotantmlb
@wurnotantmlb 5 жыл бұрын
uooohh I just saw that there are lots of this videos uploaded!!!! I'm two pies happier right now!!!
@roalba8947
@roalba8947 Жыл бұрын
excellent video
@evyberm801
@evyberm801 3 жыл бұрын
Im playin, great video, thank you for the information and explanation.
@evyberm801
@evyberm801 3 жыл бұрын
Whut
@erdiasilioglu
@erdiasilioglu 7 жыл бұрын
In nature, 222 88Ra (T1/2 = 1600 years) exists in secular equilibrium with 238 92U (T1/2 = 4.5 × 109 years). What fraction of the world's supply of radium will be left after 1600 years?
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