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THERMODYNAMICS (Properties of Gases, Vapors and Mixtures 1)

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MODULAR EXAM

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THERMODYNAMICS (Properties of Gases, Vapors and Mixtures 1)
 

THERMODYNAMICS (Properties of Gases, Vapors and Mixtures 1)Versión en línea

MODULAR EXAM

por Grace Balahay
1

homogeneous and invariable in chemical composition and thermodynamic properties, even when it exists in multiple phases or mixtures.

Written answer

2

i (ice), saturated solid phase.

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3

f (fluid), saturated liquid phase.

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4

g (gas), saturated vapor phase.

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5

melting or fusion phase, if,

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6

freezing phase, fi

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7

vaporization phase, fg

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8

condensation phase, gf

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9

sublimation, ig

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10

solidifying, gi

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11

temp. at which liquids start to boil or the temp. at which vapors begin to condense

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12

it is one which has a temp. lower than the existing temp. corresponding to the existing pressure.

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13

It is one which has a pressure higher than the saturation pressure corresponding to the existing temperature.

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14

It is a liquid at the saturation temperature or saturation pressure which has temperature equal to the boiling point corresponding to the existing pressure.

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15

It is a vapour at the saturation conditions (sat. temp. and sat. pressure), 100% vapour.

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16

It is a vapour having a temperature higher than the saturation temperature corresponding to the existing pressure.

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17

It is the difference between the actual temperature of superheated vapour and the saturation temperature for the existing pressure.

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18

It is the difference between the saturation temperature for the given pressure and the actual subcooled liquid temperature.

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19

of a pure substance is the amount of heat added to/removed from the substance in order to convert it from saturated liquid/vapor to saturated vapor/liquid.

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20

This represents the highest pressure and temperature at which liquid and vapour can coexist in equilibrium.

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21

heat the causes change in temperature without change of phase.

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22

uses the functions of pressure, volume and temperature.

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23

uses the function of temperature, pressure and entropy.

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24

no degrees of freedom (Triple point)

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25

1 df (2-phase boundary)

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26

2 df (superheated vapor), 2-intensive properties may be varied without change of phase.

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27

At the triple point no intensive property can be changed without disappearance of at least one phase.

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