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#waveequation — Public Fediverse posts

Live and recent posts from across the Fediverse tagged #waveequation, aggregated by home.social.

  1. New video by Physics Explained! Always fun with great explanations, an entertaining watch. In a comment under the vid, a valid caveat by "physicsboy787" about why the gravitation analogy fails, which is sadly not mentioned in the video.

    youtube.com/watch?v=0tGiwd_Zs00

    #physics #quantumMechanics #waveEquation #hydrogenAtom #nielsBohr #wernerHeisenberg

  2. New video by Physics Explained! Always fun with great explanations, an entertaining watch. In a comment under the vid, a valid caveat by "physicsboy787" about why the gravitation analogy fails, which is sadly not mentioned in the video.

    youtube.com/watch?v=0tGiwd_Zs00

    #physics #quantumMechanics #waveEquation #hydrogenAtom #nielsBohr #wernerHeisenberg

  3. New video by Physics Explained! Always fun with great explanations, an entertaining watch. In a comment under the vid, a valid caveat by "physicsboy787" about why the gravitation analogy fails, which is sadly not mentioned in the video.

    youtube.com/watch?v=0tGiwd_Zs00

    #physics #quantumMechanics #waveEquation #hydrogenAtom #nielsBohr #wernerHeisenberg

  4. New video by Physics Explained! Always fun with great explanations, an entertaining watch. In a comment under the vid, a valid caveat by "physicsboy787" about why the gravitation analogy fails, which is sadly not mentioned in the video.

    youtube.com/watch?v=0tGiwd_Zs00

    #physics #quantumMechanics #waveEquation #hydrogenAtom #nielsBohr #wernerHeisenberg

  5. New video by Physics Explained! Always fun with great explanations, an entertaining watch. In a comment under the vid, a valid caveat by "physicsboy787" about why the gravitation analogy fails, which is sadly not mentioned in the video.

    youtube.com/watch?v=0tGiwd_Zs00

    #physics #quantumMechanics #waveEquation #hydrogenAtom #nielsBohr #wernerHeisenberg

  6. Time-dependent and time-independent Schrödinger equations:
    \[i\hbar\dfrac{\partial}{\partial t} \Psi(x,t) = - \dfrac{\hbar^2}{2m}\dfrac{\partial^2\Psi(x,t)}{\partial x^2} + V(x,t)\Psi(x,t)\qquad\text{(time-dependent)}\]
    \[-\dfrac{\hbar^2}{2m}\dfrac{\partial^2\Psi(x)}{\partial x^2}+V(x)\Psi(x)=E\Psi(x)\qquad\text{(time-independent)}\]

    #SchrödingerEquation #Schrödinger #WaveEquation #TimeDependent #TimeIndependent

  7. Time-dependent and time-independent Schrödinger equations:
    \[i\hbar\dfrac{\partial}{\partial t} \Psi(x,t) = - \dfrac{\hbar^2}{2m}\dfrac{\partial^2\Psi(x,t)}{\partial x^2} + V(x,t)\Psi(x,t)\qquad\text{(time-dependent)}\]
    \[-\dfrac{\hbar^2}{2m}\dfrac{\partial^2\Psi(x)}{\partial x^2}+V(x)\Psi(x)=E\Psi(x)\qquad\text{(time-independent)}\]

    #SchrödingerEquation #Schrödinger #WaveEquation #TimeDependent #TimeIndependent

  8. Our ears perceive only in a certain window of #Sound frequencies
    Our eyes perceive only in a certain #Window of #Electromagnetic radiation frecuencies.
    Outside of these we use devices to measure the two aforementioned.
    Eqs of Theory Of General Relativity led to #WaveEquation. There were attempts to detect gravitational waves many years ago without success, so their detection now implies nothing but GRT predicts things that are eventually detected.

  9. The #WaveEquation in 2 spatial dimensions. A membrane stretched over a square frame is set to vibrating after some initial displacement. Warmer colors indicate greater displacement in the positive z-axis. #PDEs #mathtodon #math

  10. The #WaveEquation in 2 spatial dimensions. A membrane stretched over a square frame is set to vibrating after some initial displacement. Warmer colors indicate greater displacement in the positive z-axis. #PDEs #mathtodon #math

  11. The in 2 spatial dimensions. A membrane stretched over a square frame is set to vibrating after some initial displacement. Warmer colors indicate greater displacement in the positive z-axis.