10 10.1 (9) (e) Ideal gases and heat The relationship between pressure and volume, with constant temperature and constant number of moles, is known as: Antoine's Law Avogadro's Law PQV (a) (b) 8.0 & 10⁰ m/s 1.6 x 107 m/s OOO Boyle's Law Charles' Law Chatelier's Law (e) 10.2 At sea level, T = 8.0°C. At 10 km high, T = -70°C. A sealed helium weather balloon slowly rises from sea level to 10 km. By what factor does the rms speed of molecules within the balloon change? (a) 0.49 (b) 0.72 0.85 1.18 1.38

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Chapter1: Units, Trigonometry. And Vectors
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What are the answers for the last 2 questions Thanks !
10
10.1
(d)
(e)
Ideal gases and heat
The relationship between pressure and volume, with constant temperature and constant
number of moles, is known as:
Antoine's Law
Avogadro's Law
PQV
(a)
(b)
2.0 x 10⁰ m/s
4.0 x 106 m/s
8.0 x 106 m/s
1.6 x 107 m/s
Boyle's Law
Charles' Law
Chatelier's Law
(e)
10.2 At sea level, T = 8.0°C. At 10 km high, T = -70°C. A sealed helium weather balloon slowly
rises from sea level to 10 km. By what factor does the rms speed of molecules within the
balloon change?
Page 8 of 9
(a) 0.49
(b) 0.72
(c) 0.85
(d)
1.18
(e)
1.38
Turn the page over
Transcribed Image Text:10 10.1 (d) (e) Ideal gases and heat The relationship between pressure and volume, with constant temperature and constant number of moles, is known as: Antoine's Law Avogadro's Law PQV (a) (b) 2.0 x 10⁰ m/s 4.0 x 106 m/s 8.0 x 106 m/s 1.6 x 107 m/s Boyle's Law Charles' Law Chatelier's Law (e) 10.2 At sea level, T = 8.0°C. At 10 km high, T = -70°C. A sealed helium weather balloon slowly rises from sea level to 10 km. By what factor does the rms speed of molecules within the balloon change? Page 8 of 9 (a) 0.49 (b) 0.72 (c) 0.85 (d) 1.18 (e) 1.38 Turn the page over
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