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Superstrings at High Temperature

Physical Review Letters, 1985
The behavior of ten-dimensional superstrings at high temperatures is studied by use of the microcanonical ensemble. We focus on closed superstring theories. The massive string excitations alone have negative specific heat. Such a system can reach equilibrium with the zero modes of the string if the energy carried by zero modes is less than a given ...
, Bowick, , Wijewardhana
openaire   +2 more sources

High temperature tensiometry

1998
Publisher Summary This chapter presents after a short reminder of thermodynamic definitions, the most commonly used techniques for surface tension measurements with some details of the most interesting of them for high temperature applications. Some recent results on the evaluation of the influence of external factors, like the surrounding atmosphere,
Passerone A, Ricci E
openaire   +2 more sources

High temperature electronics packaging: An overview of substrates for high temperature

2015 IEEE International Symposium on Circuits and Systems (ISCAS), 2015
High temperature electronics (>200˚C) is an emerging technical area in electronics that requires new materials and processes or existing materials and processes in new ways. Results of reliability testing of packaging materials for >200˚C are presented so that the selection of appropriate packaging may be made to target an applications temperature and ...
David Shaddock, Liang Yin
openaire   +1 more source

High-Temperature Electrolysis

2015
High-temperature electrolysis (also called steam electrolysis) is the water electrolysis at temperatures that ranged between 700 and 1,000 °C in which electrical energy is the driving force of water splitting to produce oxygen (O2) and hydrogen (H2). The core of an electrolysis unit is an electrochemical cell, which is filled with pure water and has ...
openaire   +2 more sources

High-Temperature Microfluidic Lithography

Advanced Materials, 2002
The high-temperature microfluidic lithography was studied. A simple approach to improve the performance of microfluidic lithography, which does not act on the increase in the difference between the pressure that drives the capillary motion, but on the temperature-controlled reduction of the polymer viscosity was presented.
PISIGNANO, Dario   +4 more
openaire   +7 more sources

Chemistry at High Temperatures

Science, 1966
M A, Paul, J L, Margrave
openaire   +2 more sources

High Temperature Distillation.

Industrial & Engineering Chemistry, 1946
openaire   +1 more source

Health and high temperatures

Public Health, 2018
A, Bone, E, O'Connell
openaire   +2 more sources

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