Conversation
…isplacement law Formalizes the project idea 'Planck's Theory of Blackbody Radiation' from https://physlib.io/project-ideas. Key additions: - Frequency and wavelength forms of Planck's spectral radiance - Positivity, absolute-zero limits, correspondence between forms - First and second radiation constants - Wien auxiliary function h(x) = x - n(1 - e^{-x}) - Existence and uniqueness of the positive Wien root (IVT + monotonicity) - Named Wien constants x5 ≈ 4.9651 (wavelength) and x3 ≈ 2.8214 (frequency) - Rigorous enclosures 4 < x5 < 5 and 2 < x3 < 3 (no sorry) - Global maxima of spectral radiance curves (isMaxOn) - Wien's displacement laws: λ₁T₁ = λ₂T₂ and ν₁/T₁ = ν₂/T₂ - Proof that wavelength and frequency peaks differ (wien_roots_differ)
|
Thank you for this pull-request (PR). If this is your first PR, welcome to the community! Below is what will happen next. Please read carefully if you are not familiar with the process. You may open other PRs while this one is being reviewed, and can stack PRs on top of each other, so don't let these steps slow you down.
Tip: The easiest way to get have a fast review is to submit a PR that is small and self-contained, and has clear documentation explaining why things are the way they are in your chages. If you have any problems or questions, please reach out to the community on the Zulip. |
wienConstant5) andwienConstant3)sorry)isMaxOn)wien_roots_differ)