Temp, Expansion, Gas Law
。C range β (units 10-3) H2O
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Volume Expansion Coefficients for Liquids Clicker Question • A manufacturer of mercury in glass thermometers decides to upgrade his product to Pyrex glass, which holds up better to high heat because it has a lower coefficient of expansion. He makes the new thermometers identical to the old in all dimensions. • To check his product, he puts a new one and an old one together in water, and heats the water slowly. What does he see? A. The mercury in the new one rises faster. B. The mercury in the old one rises faster. C. They both rise at the same rate.
Boyle’s Law • m
Boyle’s Law • m • Charles’s Law • A century after Boyle, Charles discovered that at constant pressure, and far from liquefaction, all gases have the same expansion coefficient, in fact • This suggests the gas volume shrinks to zero at −273, but of course it liquefies first. • The Kelvin temperature scale: Expansion Coefficient for Gases
• T (K) = T (。C) + 273.15 0 K 200 K 400 K T 0。C 100。C T V ∝ T in kelvins • a V V The Ideal Gas Law • We can combine Boyle’s law and Charles’s law to find PV ∝ T for gases well away from liquefaction. Note this also implies that at constant volume, P ∝ T. • The standard notation for this Ideal Gas Law is: PV = nRT for n moles of gas, R = 8.314 J/(mol.K) is the universal gas constant. Gas Law Exercise • 100.0 L of oxygen at 27.0°C and absolute pressure 10 atm are compressed to 50.0 L. The gas is subsequently taken to 177.0°C. What is the final pressure? • P1 V1/T1 = P2 V2/T2 : so P2 = P1 (V1/ V2 )(T2/T1 ) P2 = 10x(100/50)x(450/300) = 30 atm. On homework: (1) watch out for gauge pressure and absolute pressure! (2) the gas law always has T in kelvins. (3) for given volume of gas and temperature, the pressure is determined by the total number of molecules (which could be single atoms, for example He) and not by the masses of the atoms. 1022 He atoms will exert the same pressure as 1022 oxygen molecules at given T, V. Download 13.17 Kb. Do'stlaringiz bilan baham: |
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