GASEOUS - translation to αραβικά
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GASEOUS - translation to αραβικά

RADIATION DETECTOR
Gaseous ionisation detectors; Gaseous ionisation detector; Gaseous ionization detectors
  • Plot of variation of ion pair current against applied voltage for a wire cylinder gaseous radiation detector.
  • Families of ionising radiation detectors
  • Schematic diagram of ion chamber, showing drift of ions. Electrons typically drift 1000 times faster than positive ions due to their much smaller mass.<ref name = "knoll"/>
  • The generation of discrete Townsend avalanches in a proportional counter.
  • Visualisation of the spread of Townsend avalanches by means of UV photons

GASEOUS         
  • Boyle's equipment
  • Shuttle imagery of re-entry phase
  • Isothermal curves depicting the non-ideality of a ''real gas.'' The changes in volume (depicted by Z, [[compressibility factor]]) which occur as the pressure is varied. 

The compressibility factor Z, is equal to the ratio Z = PV/nRT. 

An ideal gas, with compressibility factor Z = 1, is described by the horizontal line where the y-axis is equal to 1. Non-ideality can be described as the deviation of a gas above or below Z = 1.
  • Dalton]]'s notation.
  • Random motion of gas particles results in [[diffusion]].
  • 184x184px
  • 21 April 1990 eruption of [[Mount Redoubt]], Alaska, illustrating real gases not in thermodynamic equilibrium.
  • 230x230px
  • [[Delta wing]] in wind tunnel. The shadows form as the indices of refraction change within the gas as it compresses on the leading edge of this wing.
  • Robinson Crusoe Islands]] on 15 September 1999, shows a turbulent cloud pattern called a [[Kármán vortex street]]
ONE OF THE FOUR FUNDAMENTAL STATES OF MATTER
Gaseous state; Gaseous phase; Gaseous; Atomic Gas; Atomic gases; Atomic gas; Gases; Gas State; Gas state; Gaseous State; Organic gas; Gas-phase; Gasses; Permanent gas

الصفة

غازِيّ

gaseous         
  • Boyle's equipment
  • Shuttle imagery of re-entry phase
  • Isothermal curves depicting the non-ideality of a ''real gas.'' The changes in volume (depicted by Z, [[compressibility factor]]) which occur as the pressure is varied. 

The compressibility factor Z, is equal to the ratio Z = PV/nRT. 

An ideal gas, with compressibility factor Z = 1, is described by the horizontal line where the y-axis is equal to 1. Non-ideality can be described as the deviation of a gas above or below Z = 1.
  • Dalton]]'s notation.
  • Random motion of gas particles results in [[diffusion]].
  • 184x184px
  • 21 April 1990 eruption of [[Mount Redoubt]], Alaska, illustrating real gases not in thermodynamic equilibrium.
  • 230x230px
  • [[Delta wing]] in wind tunnel. The shadows form as the indices of refraction change within the gas as it compresses on the leading edge of this wing.
  • Robinson Crusoe Islands]] on 15 September 1999, shows a turbulent cloud pattern called a [[Kármán vortex street]]
ONE OF THE FOUR FUNDAMENTAL STATES OF MATTER
Gaseous state; Gaseous phase; Gaseous; Atomic Gas; Atomic gases; Atomic gas; Gases; Gas State; Gas state; Gaseous State; Organic gas; Gas-phase; Gasses; Permanent gas
غازِيّ
gaseous         
  • Boyle's equipment
  • Shuttle imagery of re-entry phase
  • Isothermal curves depicting the non-ideality of a ''real gas.'' The changes in volume (depicted by Z, [[compressibility factor]]) which occur as the pressure is varied. 

The compressibility factor Z, is equal to the ratio Z = PV/nRT. 

An ideal gas, with compressibility factor Z = 1, is described by the horizontal line where the y-axis is equal to 1. Non-ideality can be described as the deviation of a gas above or below Z = 1.
  • Dalton]]'s notation.
  • Random motion of gas particles results in [[diffusion]].
  • 184x184px
  • 21 April 1990 eruption of [[Mount Redoubt]], Alaska, illustrating real gases not in thermodynamic equilibrium.
  • 230x230px
  • [[Delta wing]] in wind tunnel. The shadows form as the indices of refraction change within the gas as it compresses on the leading edge of this wing.
  • Robinson Crusoe Islands]] on 15 September 1999, shows a turbulent cloud pattern called a [[Kármán vortex street]]
ONE OF THE FOUR FUNDAMENTAL STATES OF MATTER
Gaseous state; Gaseous phase; Gaseous; Atomic Gas; Atomic gases; Atomic gas; Gases; Gas State; Gas state; Gaseous State; Organic gas; Gas-phase; Gasses; Permanent gas
‎ غازِيّ‎

Ορισμός

gaseous
You use gaseous to describe something which is in the form of a gas, rather than a solid or liquid.
Freon exists both in liquid and gaseous states.
ADJ: usu ADJ n

Βικιπαίδεια

Gaseous ionization detector

Gaseous ionization detectors are radiation detection instruments used in particle physics to detect the presence of ionizing particles, and in radiation protection applications to measure ionizing radiation.

They use the ionising effect of radiation upon a gas-filled sensor. If a particle has enough energy to ionize a gas atom or molecule, the resulting electrons and ions cause a current flow which can be measured.

Gaseous ionisation detectors form an important group of instruments used for radiation detection and measurement. This article gives a quick overview of the principal types, and more detailed information can be found in the articles on each instrument. The accompanying plot shows the variation of ion pair generation with varying applied voltage for constant incident radiation. There are three main practical operating regions, one of which each type utilises.

Παραδείγματα από το σώμα κειμένου για GASEOUS
1. Sakiz produces nitrogen, oxygen, carbon dioxide, helium and argon in both liquefied and gaseous form.
2. Images from Chandra revealed a wind of charged particles blowing out from the gaseous accretion disc.
3. There are two commonly used methods of enriching uranium – gaseous diffusion and gas centrifuges.
4. "It would be suitable given the short distances they travel to use gaseous hydrogen," he argues.
5. The facilities can install fabric filters to trap toxic particles or scrubbers to capture gaseous releases.