activity
20032025
most citedDiscrepancy between power radiated and the power loss due to radiation reaction for an accelerated charge

4 citations · 7 across the 3 of their papers we have counts for

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physics.gen-ph2021

Contribution of pressure to the energy-momentum density in a moving perfect fluid: A physical perspective

Ashok K. Singal

In the energy-momentum density expressions for a relativistic perfect fluid with a bulk motion, one comes across a couple of pressure-dependent terms, which though well known, are…

physics.gen-ph2020

Energy-momentum density and pressure relations for a relativistic ideal gas with a bulk motion

Ashok K. Singal

We derive here, from first principles, the energy-momentum densities of a perfect fluid, in the form of an ideal molecular gas, in an inertial frame where the fluid possesses a bul…

physics.gen-ph2019

A large disparity in cosmic reference frames determined from the sky distributions of radio sources and the microwave background radiation

Ashok K. Singal

The angular distribution of the Cosmic Microwave Background Radiation (CMBR) in sky shows a dipole asymmetry, ascribed to the observer's motion (peculiar velocity of the solar syst…

physics.gen-ph2018

Why no radiation occurs in the case of a uniformly accelerated charge

Ashok K. Singal

We show that in the case of a uniformly accelerated charge, in its instantaneous rest frame, there is only a radial electric field as the acceleration fields strangely get cancelle…

physics.gen-ph2018

The fallacy of Schott energy-momentum

Ashok K. Singal

The incompatibility between Larmor's formula for radiation losses (at a rate proportional to square of the acceleration of the electric charge) and the radiation reaction (the rate…

physics.gen-ph20172 cited

Reply to comment on `Poynting flux in the neighbourhood of a point charge in arbitrary motion and the radiative power losses'

Ashok K. Singal

Doubts have been expressed in a comment (Eur. J. Phys., 39, 018001, 2018), about the tenability of the formulation for radiative losses in our recent published work (Eur. J. Phys.,…