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Temperature of gas

Chimney efflux velocity not less than 15 m/s at MCR Temperature of gases entering chimney not less than 120°C. [Pg.268]

Kinetic theory A theory of matter based on the mathematical description of the relationship between pressures, volumes, and temperatures of gases (PVT phenomena). This relationship is summarized in the laws of Boyle s law, Charle s law, and Avogadro s law. [Pg.638]

However, science is not just about predictive laws. It also seeks to understand and explain models, or theories that provide a conceptual framework for understanding some aspect of reality, are as important to science as predictive laws. The theory of electricity, for example, explains lightning strikes molecular theory explains diffusion and the relationship between the pressure and temperature of gases the theory of evolution explains the various similarities and differences between different species, as well as how they came into being. These theories postulate the existence of entities and processes and how these are... [Pg.41]

Travel of the base of the projectile mm Temperature of gases °C Pressure kg/cm2... [Pg.533]

The temperature of the propellent gases depends on the heat of explosion and on the gas composition. The greater the heat of explosion, and hence the temperature of gases, the more readily the secondary flame arises. Powders of a low calorific value may therefore give, no secondary flame if the temperature of the gas mixture is lower than the temperature of ignition. [Pg.545]

While the AP test tends to convert temperatures to Kelvins for gas law problems, they will often leave them in Celsius, on kinetic-molecular theory questions. Be on the lookout for that. Any problems involving temperature of gases require absolute term-perature, regardless of what you are given ... [Pg.163]

Tourin (1966) has provided an overview over spectroscopic measurements of the temperature of gases and Drake et al. (1979) have published a comparison of different spectroscopic methods of detennining flame temperatures. [Pg.663]

The kinetic theory of matter explains the properties of solids, liquids, and gases, and explains changes of state in terms of interparticle forces and energy. It also quantitatively relates the pressure, volume, and temperature of gases. By studying how gases behave under different conditions, you will soon begin to understand how all matter behaves. [Pg.365]

TLE s are capable of reducing the temperature of gases from about 700°C to 150°C in milliseconds, simultaneously generating high quality steam, and should have been ideal for the process under study. Unfortunately their use gave only an increase of 2.5% in thermal efficiency for a 6% increase in overall capital cost, making their incorporation into the process flowsheet a marginal proposition. [Pg.444]

The rotary kiln incinerator is used primarily to treat explosives-contaminated soils. In rotary kiln incineration, soils are fed into a primary combustion chamber, or rotary kiln, where organic constituents are destroyed. The temperature of gases in the primary chamber ranges from 800° to 1200°F, and the temperature of soils ranges from 600° to 800°F. Retention time in the primary chamber, which is varied by changing the rotation speed of the kiln, is approximately 30 minutes. [Pg.145]

Kinetic molecular theory explains why the pressure and temperature of gases behave the way they do by making a few assumptions, namely ... [Pg.59]


See other pages where Temperature of gas is mentioned: [Pg.1834]    [Pg.1834]    [Pg.52]    [Pg.640]    [Pg.22]    [Pg.52]    [Pg.29]    [Pg.405]    [Pg.12]    [Pg.424]    [Pg.240]    [Pg.163]    [Pg.125]    [Pg.22]    [Pg.1593]    [Pg.1593]    [Pg.16]    [Pg.353]    [Pg.424]    [Pg.440]    [Pg.681]    [Pg.364]    [Pg.367]    [Pg.398]    [Pg.402]    [Pg.17]    [Pg.29]    [Pg.27]    [Pg.9]    [Pg.1174]    [Pg.133]   
See also in sourсe #XX -- [ Pg.28 , Pg.29 , Pg.31 , Pg.32 , Pg.38 , Pg.39 , Pg.52 ]

See also in sourсe #XX -- [ Pg.2 , Pg.139 , Pg.140 , Pg.141 , Pg.142 , Pg.149 ]

See also in sourсe #XX -- [ Pg.2 , Pg.139 , Pg.140 , Pg.141 , Pg.142 , Pg.149 ]

See also in sourсe #XX -- [ Pg.102 , Pg.104 , Pg.105 , Pg.106 , Pg.112 ]

See also in sourсe #XX -- [ Pg.312 ]




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Accumulation of gas in a vessel at constant temperature

Compression of gases temperature rise

Control of Gas Temperature by Bypassing

Control of product gas temperature method

Cooling of product gas melting temperature

Cooling of product gas temperature

Critical temperature of a gas

Critical temperatures of gases

Effect of Feed Gas Temperature on Intercept

Effect of Input Gas Temperature

Effects of Initial Temperature and Non-combustible Gases on Detonation Parameters

Electrochemistry of Zirconia Gas Sensors temperature and

Equation of state for ideal gases at very low temperatures

Gas temperatures

High temperature corrosion of structural materials under gas-cooled reactor helium

How does temperature affect the volume of a gas

Importance of Gas Temperature

Influence of the Gas Inlet Temperature

Of gases at various temperatures

Simultaneous retrieval of temperature and gas abundance

Solubility as a Function of Temperature and Henrys Constant at 25C for Gases in Water

Solubility of gases in water at various temperatures

Temperature 6 Effect of Input Gas SO3 concentration on Output Acid

Temperature and volume of gas

Temperature of gas product independent with oxygen

Temperature of gas product industrial data

Temperature sensitivity of the gas

Temperature sensitivity of the gas phase

Temperature, Heat and Quantitative Laws of Gases

Temperature-Programmed Evolution of Gases (TPE)

Thermodynamic and Gas Scales of Temperature

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