Gas Laws
Thermo
Bohr & Quantum Energy
Quantum Numbers & Orbitals
Miscellaneous
100

The rate of effusion of helium to an unknown noble gas is 8.570. What is the identity of the unknown noble gas?
a). Kr
b). Xe
c). Og
d). Rn

c) Og - Oganesson (≈294 g/mol)

100

If a system releases heat, what is the sign of q?

Negative (q < 0)

100

What does it mean that the energy of an electron in an atom is quantized?

Energy can only exist at specific, discrete levels — not continuous values.

100

How many quantum numbers describe an electron?

4

100

Write the condensed configuration for Al (Z=13).

[Ne] 3s² 3p¹

200

What happens to the volume of a gas when pressure doubles at constant temperature?

It halves (Boyle’s Law).

200

A system absorbs 150 J of heat and does 65 J of work. What is ΔE?

ΔE = q + w = +150 + (–65) = +85 J

200

Calculate the energy difference between n=2 and n=3 in hydrogen (J).

ΔE = E3-E2 = 3.03×10-19J

200

Give possible ml values for l=2.

-2,-1,0,1,2

200

Which configuration violates the Pauli Exclusion Principle?
 A) 1s² 2s² 2p⁶ 3s² 3p⁶ 4s¹ 3d⁵
 B) 1s² 2s² 2p⁶ 3s² 3p⁶ 4s² 3d⁵
 C) 1s² 2s² 2p⁶ 3s² 3p⁶ 4s² 3d¹⁰ 4p¹
 D) 1s² 2s² 2p⁶ 3s² 3p⁷

D - 3p can only hold 6 electrons

300

A 3.00 L sample of gas at 25°C is heated to 100°C at constant pressure. What’s the new volume?

V2 = 3.00 × (373/298) = 3.76L

300

Calculate w (in J) when a gas expands from 1.2 L → 6.2 L against 1.05 atm.

w=−PΔV=−1.05×(5.0)=−5.25L⋅atm=−532J

300

Calculate the wavelength (in nm) of the photon emitted when an electron falls from n = 3 to n = 2 in hydrogen. (hint ΔE= 3.03×10-19 J)

λ=hc/ΔE = 6.56×10-7m = 656nm

300

For 3d orbitals, how many angular nodes exist?

2

300

Explain why Cr and Cu are exceptions to the Aufbau principle.

Half/full d-subshells are more stable; one 4s electron promoted to 3d.

400

Calculate the density(g/L) of CO₂ at 1.00 atm and 298K

d = PM/RT = (1)(44)/(0.0821)(298) =1.81g/L

400

A 2.55 g sample of metal absorbs 35.6 J, ΔT = 21.4°C. What is the metal’s specific heat capacity?

C=q/(mΔT)=35.6/(2.55×21.4)=0.65J/g°C

400

An electron in hydrogen falls from n = 6 → n = 2. What is the wavelength (in nm) of the photon emitted?

a) 410 nm 

b) 486 nm 

c) 434 nm 

d) 656 nm

a) 410 nm

400

How many total electrons can be housed in the n = 5 shell?
a) 18
b) 32
c) 50
d) 72

c) 50

400

2.96 g Cd reacts with HCl, raising 695 mL soln from 23.5→71.7°C (Cp=4.19, ρ=1.05). Find q.

q = (730)(4.19)(48.2) = 1.47×105J

500

A 2.50 mol gas sample in 4.00 L at 300 K has a=2.32,b=0.0396. Find pressure using the van der Waals equation.

P≈14.9atm

500

When 1.00 g of fructose, C6H12O6(s), is burned in oxygen in a bomb calorimeter, the temperature of the calorimeter increases by 1.58 °C. If the heat capacity of the calorimeter and its contents is 9.90 kJ/°C, what is qrxn (in kJ/mol) for this combustion?

-2.82x103 kJ

500

Consider an electron in the n = 1 shell of the Bohr atom. What wavelength of light will be absorbed by the atom in order to promote the electron to the n = 4 shell?
a). 121.6 nm
b). 225.3 nm
c). 97.3 nm
d). 41.6 nm

c) 

500

Which of the following sets of four quantum numbers is NOT ALLOWED?
a). n = 5, l = 1, ml = 0, ms = + 1/2
b). n = 2, l = 1, ml = - 1, ms = - 1/2
c). n = 3, l = 3, ml = 2, ms = + 1/2
d). n = 7, l = 4, ml = - 2, ms = - 1/2

c). n = 3, l = 3, ml = 2, ms = + 1/2 [l= 0 - (n-1)]

500

Calculate the root mean square velocity of a sample of butane (C 4 H 10 ) gas at 487 K. The molecular weight of butane is 58.12 g/mol

a). 45.4 m/s
b). 523 m/s
c). 14.5 m/s
d). 457 m/s

d). 457 m/s