Examples of using Clausius in English and their translations into German
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One of his brothers, Robert Clausius, wrote that at school:….
Clausius deliberately made choices in setting up the equations so that they were.
This attempt was appreciated by Rudolf Clausius and James Clerk Maxwell.
August 24- Rudolf Clausius, German physicist, contributor to thermodynamics b.
He studied with Friedrich August Kekulé von Stradonitz,Rudolf Clausius and Gerhard vom Rath.
This was only the beginning of Clausius' long involvement in the study of the second law.
The merit of first establishing[Sadi Carnot 's theorem]upon correct principles is entirely due to Clausius.
Our purpose is to make sense of what Clausius did in this long endeavour.
R H Atkin, reviewing, describes Rankine's ideas on thermodynamics,and in particular compares his approach with that of Clausius.
It is the"house Clausius" in the old trading town of Miltenberg, a towering slender, orieldecorated half-timbered house.
But let me first point out that this more general notion was developed by the Austrian physicist Ludwig Boltzmann,who worked a little bit later than Clausius.
In the meantime, Rudolf Julius Emmanuel Clausius reconciled the two principles, and in 1854 he derived an expression for Carnot's principle….
In 1856 he published a paper on the kinetic theory of gases,thereby becoming a pioneer of statistical mechanics and thermodynamics alongside Rudolf Clausius, James Clerk Maxwell and Ludwig Boltzmann.
Clausius graduated from the University of Berlin in 1844 where he studied mathematics and physics with, among others, Gustav Magnus, Peter Gustav Lejeune Dirichlet and Jakob Steiner.
In 1861, he started a course in engineering at the Swiss Federal Institute of Technology in Zürich, Switzerland,where his teachers included Rudolf Clausius, Gustav Zeuner and Franz Reuleaux.
Contrary to Clausius, who accepted that the electrons operate by actions at a distance, the electromagnetic field of the aether appears as a mediator between the electrons, and changes in this field can propagate not faster than the speed of light.
Historical development===== Basic concept===This theory, which was developed mainly between 1892 and 1906 by Lorentz and Poincaré, was based on the aether theory of Augustin-Jean Fresnel,Maxwell's equations and the electron theory of Rudolf Clausius.
The theoretical proposal stands on the First Law of Thermodynamics(Rudolf Clausius, 1850) that“energy cannot be created or destroyed, only converted from one form to another,” using the interlinked elements of capital, finance and social roles.
Clausius' great legacy to physics is undoubtedly his idea of the irreversible increase in entropy, and yet we find no indication of interest in Josiah Gibbs' work on chemical equilibrium or Boltzmann 's views on thermodynamics and probability, both of which were utterly dependent on his idea.
Clausius, and Lord Kelvin were only just developing the concepts of thermodynamics, the first law of which states that energy can neither be created nor destroyed(so the present universe could not have created itself), and the second law of which says that the universe is proceeding in a downward degenerating direction of increasing disorganization so things overall do not of themselves become more organized with time.