This is a bit of an experimental page. The idea being that I create lots of little pop up info boxes for information you want quickly, say instead of having to search through the syllabus or other web pages. I will be adding more BUTTONS as we progress.
Office Hours / Email
Exam Schedule
Exam 1 Thu 2/1
Exam 2 Thu 2/22
Exam 3 Tue 3/27
Exam 4 Thu 4/12
Exam 5 Tue 5/1
Final (49770) Sat 5/12 7-10pm
Final (49785) Wed 5/9 9-12n
Grading Scheme
Scores
pecentage
Exam average (quest) (drop 1 exam of 5)
60 %
Final Exam (quest)
25 %
Learning Exercises (canvas)
5 %
Homework (sapling)
5 %
REEF (iclicker-reef)
5 %
Dr. McCord
Jimmy
Zhulin
Sam
Rick
Morty
water data
Water Thermo Data (∆H, ∆G, S)
Hydrogen
ΔH f °
ΔG f °
S °
H2 (g )
0
0
131
H(g )
217
203
115
H+ (aq )
0
0
0
OH− (aq )
−230
−157
−11
H2 O(l )
−286
−237
70
H2 O(g )
−242
−229
189
Water Phase Transition
Substance
heat of fusion ΔH fus (J/g)
heat of vaporization ΔH vap (J/g)
water
334
2260
Water Heat Capacity
Substance
specific heat capacityC p,s (J/g °C)
molar heat capacityC p,m (J/mol °C)
water (ice, O°C)
2.09
37.66
water
4.184
75.38
water (steam, 100°C)
2.03
36.57
Water Colligative Properties
Compound
Boiling Point (°C)
Kb (°C m-1 )
Freezing Points (°C)
Kf (°C m-1 )
Water
100.0
0.512
0.0
1.86
Water Densities
Substance
density, ρ (g/mL)
water (ice, O°C)
0.917
water (fresh)
1.00*
water (salt)
1.030
Kinetics Formulas
name zero order first order second order
rate law
\({\rm rate} = k\)
\({\rm rate} = k[{\rm A}]\)
\({\rm rate} = k[{\rm A}]^2\)
integrated rate law
\([{\rm A}]_0 - [{\rm A}] = kt\)
\(\ln[{\rm A}]_0 - \ln[{\rm A}] = kt\) \(\ln\left({[{\rm A}]_0 \over [{\rm A}]}\right) = kt\)
\({1\over[{\rm A}]} - {1\over[{\rm A}]_0} = kt\)
straight line form (\(y = mx + b\))
\([{\rm A}] = -kt + [{\rm A}]_0 \)
\(\ln[{\rm A}] = -kt + \ln[{\rm A}]_0 \)
\({1\over[{\rm A}]} = kt + {1\over[{\rm A}]_0}\)
half life
\(t_{1/2} = {[{\rm A}]_0\over 2k}\)
\(t_{1/2} = {\ln 2\over k}\)
\(t_{1/2} = {1\over [{\rm A}]_0 k}\)
to actually plot on x,y graph
\(y\) = conc \(x\) = time
\(y = -kx + {\rm A}_0 \)
\(y = {\rm A}_0 e^{-kx} \)
\(y = \left(kt + {1\over{\rm A}_0}\right)^{-1}\)
Below are actual external links. They will all launch a new page in your browser.
gchem
canvas
openstax
quest
sapling
reef
all office hours