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  1. 2 days ago · Maxwell's Thermodynamic Relationship with Enthalpy, internal energy, Helmholtz energy and Gibbs free energy in Segment 1 , 2, 3, 4

    • 22 min
    • 6
    • Chemolingual
  2. 13 hours ago · We show that quantum mechanics can be constructed as a classical field theory that correctly describes all basic quantum effects, by combining the Maxwell and Dirac equations. It is shown that for a self-consistent union of the Maxwell and Dirac equations into a unified classical field theory, it is necessary to introduce an additional short-range tensor field, which compensates the intrinsic electrostatic field of the electron wave inside the atom. For the combined Maxwell-Dirac field, the ...

  3. en.wikipedia.org › wiki › EntropyEntropy - Wikipedia

    4 days ago · The fundamental thermodynamic relation implies many thermodynamic identities that are valid in general, independent of the microscopic details of the system. Important examples are the Maxwell relations and the relations between heat capacities. Entropy in chemical thermodynamics

  4. 4 days ago · This means that the equations expressing physical laws of electromagnetism—such as Maxwell's equations—will change depending on the system of units employed. As an example, quantities that are dimensionless in one system may have dimension in the other.

  5. 13 hours ago · From 29 November to 29 December 2021, Maxwell was brought into the courtroom each day by two young, female guards, with whom she would laugh and joke and “seemed to have a great relationship”.

  6. 2 days ago · In particle physics, the Dirac equation is a relativistic wave equation derived by British physicist Paul Dirac in 1928. In its free form, or including electromagnetic interactions, it describes all spin-1/2 massive particles, called "Dirac particles", such as electrons and quarks for which parity is a symmetry.

  7. 2 days ago · Advantages. Low On-Resistance (R<sub>DS (on)</sub>): MOSFETs have significantly lower on-resistance compared to contactors, resulting in minimal power losses and optimal thermal performance of the BMS. This is crucial for applications where energy efficiency is paramount. High Switching Speed: MOSFETs can switch on and off in nanoseconds ...