Safety Minute/Molecule of the Day
Stoichiometry/Reactions
Gases
Thermochemistry
MO Theory/Bond Order/Bond Character
100

What are 3 safety requirements for gas cylinders?

Secure at all times, store in cool areas, place where its not in the way,close valves,tighten caps, inspect for leaks, check support brackets, move using specific equipment, and report leaks

100

Based on the following reaction, which element is being reduced? Which is being oxidized?

Fe2O3 + 2Al →  2Fe +Al2O3

Fe: +3→ 0  Fe is reduced

O: -2 → -2

Al: 0 → +3 Al is oxidized

100

Determine the density of O2 gas at 25℃ and a pressure of 0.400 atm. Assume oxygen is an ideal gas and obeys the ideal gas law. The molecular weight is 31.998 grams per mole. Give your answer in units of g/L. 

Potentially helpful information: R=0.08206 Latm/(Kmol).

PV = nO2RT = mO2MO2

D = m O2V= (P)(MO2)RT

    =  (0.400 atm)(31.998 g/mol)

         ——————————---     0.0523 g/L

        (0.8206 LatmKmol)([25 +273] K)

100

 Is energy required or released when bonds break?

This happens because for a bond to break, it needs energy to be put into the molecule to break it since the bond wants to be held together. The energy is what breaks it, therefore it is required for the bond to go against what naturally wants to do. This is a common misconception, and bond formation is when energy is released as this saves energy. This follows the fundamental principle of energy minimization, and the energy is then released during the formation.

100

What is the bond order of O2?

2

10 bonding electrons - 6 non binding pairs of electrons  = 2                

2

200

Draw the organic chemist’s lewis structures of dimethyl sulfide and dimethyl disulfide.


200

Identify each acid/base and its corresponding conjugate acid/base in the reaction between perchloric acid and sodium hydroxide. Is this reaction strong or weak? 

HClO4 + NaOH ---> NaClO4 + H2O 

Acid: HClO4

Conjugate base: NaClO4

Base: NaOH

Conjugate acid: H2O 

This is a strong reaction because HCLO4 is a strong acid, allowing for complete dissociation. 

200

Given the following reaction:

            H2(g) + Cl2(g) → 2HCl (g)

If 40.0 L of H2 reacts with 65.0 L of Cl2 at a temperature of 25℃ and a pressure of 3.00 atm, what is the limiting reactant? Assume that H2 acts ideally. (Additional information: The density of Cl2 is 2.898 g/L.)

Answer:

nH2 = PV/RT = (3.00 atm)(40.0 L) / (0.08206 L*atm/mol*K) (298 K) = 4.91 mol H2

nCl2 = (65.0L) x (2.898 g/L) x (1 mol/ 70.9 g) = 2.66 mol Cl2

Mole ratio (H2/ Cl2) = 4.91 mol/2.66 mol = 1.85

Stoich ratio (1 H2/ 1 Cl2) = 1

Since 1.85 > 1, Cl2 is the limiting reactant. 

200

What are five of the state functions and variables and the two path functions we have discussed? What are the definitions of “state function” and “path function?”

State functions/variables: U, H, A, G, V, P, T, n (only 5 needed)

Path functions: q, w

Definitions: State function: a function that depends only on the state of a system but not on the path through which the state is reached

Path function: a function that is dependent on the path a system is taking to change between states

200

What is the lewis structure and bond order of NO3 - ? Round to 3 significant figures.

Take the average of the bond orders. N=O has a bond order of two, and both N-O bonds have a bond order of one. Adding these together and dividing by the number of bonds (3) reveals that the bond order of nitrate is 1.33 (4/3).


300

When operating an autoclave, correct PPE is required such as:

Eye protection, face shield, lab coat and/or apron, heat-insulating gloves

300

How many atoms of NaCl are produced from 23.000 g of MgCl2? Don’t forget to balance the equation!!

Answer:2.9096x10^23 atoms

Work: Balanced Equation: MgCl2 + 2NaOH -> 2NaCl + Mg(OH)2    

    Grams of MgCl2 to moles: 23g/(95.205 g/mol) ->0.24158 moles MgCl2

    Moles of MgCl2 to NaCl: 0.24158 moles MgCl2 x 2 (due to mole ratio, 1 mole MgCl2 to 2 mole NaCl) = 0.48317 moles NaCl

    Moles NaCl to atoms: 0.48317 x 6.022E23 (Avogadro’s Constant) = 2.9096E23 atoms

300

Determine if true or false based on the Maxwell Distribution & explain:

Pmax (3000K) > Pmax (2000K) for Ne(g)

Answer: false; Pmax (3000K) < Pmax (2000K) for Ne(g) because, the higher the temperature results in more particles moving at higher speeds. As a result, the Pmax for 3000K is smaller.

300

2 HA(aq) + MX2(aq)  → MA2(aq) + 2 HX(l)




Substance

ΔHf° (kJ/mol)

HA(aq)

678.899

HX(l)

-298.765

MA2(aq)

223.546

MX2(aq)

214.559



What is the standard enthalpy of reaction in kJ?

Answer: 

[223.546 + 2(-298.765)] - [2(678.899) + 214.559)] = -1946.34 kJ

300

What 3 things can be predicted by LCAO (Linear Combination of Atomic Orbitals)?

1. Bond Order 2. Bond Length 3. Bond Strength 

LCAO is the mathematical process of combining atomic orbitals to generate molecular orbitals.

400

List some of the hazards associated with liquid nitrogen use in the lab

Burns (similar to frostbite/thermal burn), asphyxiation (from oxygen deficiency), and risk of explosions

400

Permanganate is reacted in an acidic solution to produce Mn^2+ ions. Write and balance each of the half reactions for the acidic solution.

Answer: MnO4-+8H+ +5e- yields Mn2-+4H20

Work:

Reaction to start is: MnO4- (aq) yields Mn2+ aqueous 

MnO4- + H+ yields Mn2- +H2O

Balance 

MnO4-+8H+ yields Mn2-+4H2O

Mn=7        Mn=2+

O=2-

H=1

So

MnO4-+8H+ +5e- yields Mn2-+4H20



400

Name at least 3 of the 5 assumptions made for the ideal gas model

Gases are made up of many microscopic particles (atoms, molecules, etc.)

     The gas particles have mass but negligible volume.

     There are no long-range attractive or repulsive forces between the particles.

     The molecules are constantly in random motion.

     The gas molecules obey Newton's laws of motion.

400

For a calorimetry experiment, a student weighs out 8.455 grams of an unknown metal and brings it to a boil at 120.℃. The metal is then placed in a styrofoam cup with 20.0 grams of water at 25℃, and the final temperature is measured to be 33.0℃. What is the specific heat capacity of the unknown metal?

qmetal= - qwater

q= mcΔt

(8.455g)(c)(33℃-120℃) = - (20.0g) (4.184J/g℃) (33℃-25℃)

-735.585 g℃ (c) = - 669.44 J

c = - 669.44 J / -735.585g℃

c = 0.910 J/g℃

400

What is the molecular electron configuration of Be2?

g2s)2 (σ∗u2s)2

500

Draw the lewis structure of ethanol and name one thing it can be used for.

Primary ingredient in alcoholic beverages, can be used as fuel, used in medical wipes and antibacterial hand sanitizer gels as an antiseptic.


500

Each year, the United States throws away about 1.3 billion pounds (650,000 short tons) of pumpkins. As municipal waste decomposes into methane gas, the U.S. Department of Energy has in recent years expressed their concern over these pumpkins’ contribution to climate change. They have instead proposed an alternative solution: to use the pumpkins as a source of renewable energy. This would be done by gathering pumpkins and capturing the methane gas released from their decomposition (at approximately 38°C), then using the energy created from the combustion of methane. One short ton of pumpkins produces about 90.6 m^3 of methane gas, and the combustion of methane gas releases 891 kJ/mol. 

In 2018, the average annual electricity consumption for a house was 39,499,200 kJ. How many houses could the pumpkins power per year? (Assume all energy released by the combustion of methane is captured.)

Potentially helpful information:

Density of methane gas at 38°C: 0.6295 g/L

A: 52,000 houses 

Mass of methane:

V CH4 = (90.6 m3 / 1 short ton) * 650000 short tons * (1000 L / 1 m^3) =  5.889e10 L

m = d*V

(0.6295 g/L) * (5.889e10 L)

m =  3.7071255e10 g

Moles of methane:

3.7071255e10 g * (1 mol / 16.042 g) = 2310887358 mol

Energy produced by pumpkins via methane combustion:

CH4(g) + 2O2(g) —> CO2(g) + 2H2O(g)

ΔH = -891 kJ/mol

(891 kJ / 1 mol ) * 2310887358 mol = 2.059000636e12 kJ

Houses powered by pumpkins: 2.059000636e12 kJ / 39499200 kJ =  52127.65413 houses / 1 year (to 2 sig figs)

52000 houses

500

 Nigel ate too much Halloween candy, and now he has a stomach ache. Nigel’s stomach, when empty, has a volume of 0.075 L and an intragastric pressure of 6.25 mm Hg. He ate about half of his gallon-sized bucket of candy. What is the total increase in intragastric pressure necessary to empty Nigel’s stomach, thus relieving him of his stomachache? Assume a constant core body temperature of 37.6°C and specify your answer in mm Hg.

A: 6.0 mm Hg

P1V1 = P2V2

Vi = Vcandy + Vempty 

Vcandy = (1 gal * (3.785 L/1 gal))/2 =1.8925 L

Vi = 1.8925 L + 0.075 L = 1.9675 L

(1.9675 L) * (Pi)= (0.075 L) * (6.25 mm Hg)

Pi = 0.238246505717916 mm Hg

ΔP = 6.25 mm Hg - 0.238246505717916 mm Hg =

6.011753494282084 mm Hg (to 2 sig figs)



500

Equal amounts of heat are absorbed by 100 g samples of various solid metals with differing specific heat values. Compare the temperature change in a higher and lower specific heat capacity.

According to the q = mcΔT equation, as long as the provided masses of metal solids are the same, the metal with the greatest specific heat will undergo the smallest change in temperature for a given heat energy value.

500

When observing the orbital diagrams for molecules such as diatomic oxygen and fluorine, there is an apparent switching between the sigma and pi bonds for the bonding orbitals. What phenomenon results in this switch? How does linear combination involved in this phenomenon?

This switch in orbital ordering occurs because of a phenomenon called s-p mixing. s-p mixing does not create new orbitals; it merely influences the energies of the existing molecular orbitals. The σs wave-function mathematically combines with the σp wave-function, with the result that the σs orbital becomes more stable, and the σp orbital becomes less stable.