Brigham Women Hospital because of lung cancer, aged 82 Natural science journal lost one of the main leaders and corner stones of natural science journal. My research group in Sudan is deeply indebted to natural science and to Kuo-Chen Chou for their invaluable support to our new radical changes made to promote special relativity and quantum mechanics by incorporating for the first time and recognizing the effect of the potential, pressure and temperature on physical systems. Without the open mind of the natural science editorial board including Chou, these new radical changes will never been published. I do believe that in the near future people will appreciate this pioneering role played by natural science and Kuo-Chen Chou in cooperating and enabling new physical theories to grow and be widely spread. We deeply mourn professor Kuo-Chen Chou loss and dictate his note to him.
The plasma equation of motion of particles in the presence of afield potential per particle and a pressures force beside a resistive force have been used to find a useful expression of thermal pressure and non-thermal pressure. Another expression of ordinary Maxwell-Boltzmann distribution and Maxwell-Boltzmann distribution with stands for the kinetic energy is derived from the plasma equation with respect to x due to the potential changes only and due to potential changes with change in the density of the number of particles respectively. For non-uniform temperature systems, and non-uniform potential energy per particle, the statistical distribution law is described. This relation is different from where the temperature is assumed to be uniform when the thermal pressure changes due to the temperature change. The statistical distribution law is described when the thermal pressure change due to the temperature change. This relation is different from where the thermal pressure changes due to the change of both particle number density and temperature in this case the plasma equation. Also Statistical Distribution Law from the Plasma Equation in the Presence of Friction has been derived.
Plank quantum and classical string energy relations seem to be uncorrelated. This work correlated them. The relativistic energy-momentum relation has been used together with plank and de Brogglie hypothesis to prove that the wave group velocity is equal to the particle velocity in both ordinary and curved space. The Plank energy relation is shown also to be related to the classical energy relation of an oscillating string. Starting from plank energy relation for n photons and performing integration, the expression of classical string energy was obtained. This means that one can treat electromagnetic waves as a collection of continuous photons having frequencies ranging from zero to w. Conversely, starting from classical string energy relation by differentiating it with respect to angular frequency, the plank quantum energy for n photons has been found. This means that the quanta results from separation of the electromagnetic waves to single isolated waves. Each wave consists of n photons or quanta.
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