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thermal effect
The thermal effect analysis in the high power frequency-doubled Nd:YAG Laser
      
To evaluate the coverage of the reservoir by the thermal effect, we must know the temperature distribution in the multi-well reservoir system at any instant of time.
      
Equations are derived for calculating the rate of mass loss (ablation) and the thermal effect of physicochemical transformations taking place on the surface during the transient heating of glass plastics with coking binders.
      
It is shown that the thermal effect of vibrational relaxation is small and the problem can be linearized around a known solution [1].
      
Thermal effect of strongly underexpanded jets on constructional elements of equipment of complicated form
      
The experimental values of the heat fluxes were converted to the conditions of actual flight by a method based on dependences for calculating the thermal effect of a supersonic gas jet on bodies of a simple form.
      
Thermal effect of a freely expanding gas jet on a flat plate
      
A numerical investigation is made of the unsteady thermal state of a body on which solid particles impinge, and the ranges of the determining parameters in which the thermal effect is negligibly small compared with the erosive effect are determined.
      
The influence of injection on the mechanical and thermal effect of the gas flow on the body is investigated for various degrees of rarefaction of the medium and injection rates.
      
The mechanism of increase of the thickness of the zone of thermal effect during pulse-periodic treatment of a target by an elect
      
It is demonstrated that the increase of the target temperature has no noticeable effect on the growth of the thickness of the zone of thermal effect
      
A procedure is suggested for obtaining refined data on the thermal effect, based on the calculation of the fraction of the working section, which has completely passed over to a new phase during a time interval identified by the heating thermogram.
      
The thermal effect Q = 6 kJ/kg and the activation energy of alloy disordering E = 2.2 eV are estimated.
      
Mathematical Modeling of Thermomechanical Processes under Intense Thermal Effect
      
Characteristic features are investigated of the stationary temperature field in a flat isotropic wall with a heat-shielding coating; the wall is cooled by the environment and subjected to a local pulse-periodic thermal effect.
      
Radiation-conduction heat transfer in fibrous heat-resistant insulation under thermal effect
      
The apparent rate constants, reaction orders, and thermal effect of polymerization of the salts were determined.
      
A reproducible thermal effect is observed at ~315 K, and a G-type transition, in the range 205-215 K.
      
The specific feature of these phase transformations is the occurrence of a phase transition proper in the range of the varying parameter of state, which is accompanied by a thermal effect.
      
Thermal effect in the phase-periodic conductance of disordered mesoscopic N/S structures
      
 

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