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Drill: Name & describe each of the 7 crystal structures
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Drill: Name & describe each of the 7 crystal structures.

Dec 28, 2015

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Page 1: Drill: Name & describe each of the 7 crystal structures.

Drill: Name & describe each of

the 7 crystal structures

Page 2: Drill: Name & describe each of the 7 crystal structures.

Drill: Draw LDDs for:

BF3 NH3

BeCl3 C3H6

H3PO4 H2CO3

Page 3: Drill: Name & describe each of the 7 crystal structures.

Drill: Draw LDDs for:

C6H8

Page 4: Drill: Name & describe each of the 7 crystal structures.

Drill: Draw LDD for:

C3H5NO

Page 5: Drill: Name & describe each of the 7 crystal structures.

CHM II

•Test Friday

Page 6: Drill: Name & describe each of the 7 crystal structures.

CHM II HW•Read: Chapter 14

•Work Problems 25 & 29 on page 585

Page 7: Drill: Name & describe each of the 7 crystal structures.

Solutions

Page 8: Drill: Name & describe each of the 7 crystal structures.

Solution•Homogeneous mixture made up of at least one solute dissolved in the solvent

Page 9: Drill: Name & describe each of the 7 crystal structures.

Solute •Substance being dissolved

•Portion in lesser molar amount

Page 10: Drill: Name & describe each of the 7 crystal structures.

Solvent•Substance doing the dissolving

•Portion in greatest molar amount

Page 11: Drill: Name & describe each of the 7 crystal structures.
Page 12: Drill: Name & describe each of the 7 crystal structures.
Page 13: Drill: Name & describe each of the 7 crystal structures.

Colloid•Slightly larger particles

•Light passes & particles stay suspended

Page 14: Drill: Name & describe each of the 7 crystal structures.

Suspension•Even larger particles

•Particles block or reflect light

Page 15: Drill: Name & describe each of the 7 crystal structures.

Tyndall Effect•Because light reflects off suspended particles, the light ray can be seen from the side

Page 16: Drill: Name & describe each of the 7 crystal structures.

Size Comparison•Solution < Colloid

•Colloid < Suspension

Page 17: Drill: Name & describe each of the 7 crystal structures.

Soluble•When one substance (solute) dissolves in another (solvent)

Page 18: Drill: Name & describe each of the 7 crystal structures.

Solubility•The amount of one substance (solute) dissolved in another (solvent)

Page 19: Drill: Name & describe each of the 7 crystal structures.

Concentration•The amount of solute dissolved into solution

Page 20: Drill: Name & describe each of the 7 crystal structures.

ConcentratedSolution

•A solution with a relatively large amount of solute dissolved

Page 21: Drill: Name & describe each of the 7 crystal structures.

Dilute Solution

•A solution with a relatively small amount of solute dissolved

Page 22: Drill: Name & describe each of the 7 crystal structures.

Saturated Solution•A solution with the maximum amount of solute dissolved in the solution

Page 23: Drill: Name & describe each of the 7 crystal structures.

Unsaturated Solution•A solution with less than the maximum amount of solute dissolved in solution

Page 24: Drill: Name & describe each of the 7 crystal structures.

Supersaturated Solution

•A solution with greater than the maximum amount of solute dissolved in solution

Page 25: Drill: Name & describe each of the 7 crystal structures.

Solution Measures•Concentration

–Molarity

–Molality

–Mole Fraction

Page 26: Drill: Name & describe each of the 7 crystal structures.

Percent Solution•Mass of one portion per the total mass, all times 100 %

•%soln = ma/mtotal x 100 %

Page 27: Drill: Name & describe each of the 7 crystal structures.

Drill:•Define & give units for:

–Molarity

–Molality

–Mole Fraction

Page 28: Drill: Name & describe each of the 7 crystal structures.

Molarity•Moles of solute per liter of solution

•M = molessolute/Lsoln

Page 29: Drill: Name & describe each of the 7 crystal structures.

Molality•Moles of solute per kilogram of solvent

•mo = molessolute/kgsolvent

Page 30: Drill: Name & describe each of the 7 crystal structures.

Mole Fraction•Moles of one portion per total number of moles in the solution

•X = molesa/molessoln

Page 31: Drill: Name & describe each of the 7 crystal structures.

Calculate the molarity of a 250 mL solution

containing 5.0 g NaOH dissolved in

water

Page 32: Drill: Name & describe each of the 7 crystal structures.

Calculate the molality of 69 g of C2H5OH dissolved

in 500.0 mL of water

Page 33: Drill: Name & describe each of the 7 crystal structures.

Calculate the mole fraction of each

portion when 92 g of C2H5OH dissolved in

144 mL of water

Page 34: Drill: Name & describe each of the 7 crystal structures.

Drill:•Calculate the mass of KI required to make 250 mL of 0.500 M KI.

Page 35: Drill: Name & describe each of the 7 crystal structures.

Review Drill

Review HW

Page 36: Drill: Name & describe each of the 7 crystal structures.

Calculate the molality & mole fraction of a

solution containing 46 g of C2H5OH

dissolved in 1782 mL of water

Page 37: Drill: Name & describe each of the 7 crystal structures.

Chm II Homework:Problems: 31 & 38

Page: 585 & 586

Page 38: Drill: Name & describe each of the 7 crystal structures.

AP Chm HW:Problems:

Page:

Page 39: Drill: Name & describe each of the 7 crystal structures.

Colligative Properties•Properties dependent only on the concentration of particles in solution

Page 40: Drill: Name & describe each of the 7 crystal structures.

Examples•Vapor pressure

•Boiling & Freezing points

•Osmotic pressure

Page 41: Drill: Name & describe each of the 7 crystal structures.
Page 42: Drill: Name & describe each of the 7 crystal structures.

Vapor Pressure•VPsolution = (VPsolvent)(Xsolvent)

•X = mole fraction•VP = vapor pressure

Page 43: Drill: Name & describe each of the 7 crystal structures.

Boiling & Freezing

T = imoKT = change in BP or FP

i = ionic activity

K = BP or FP constant

Page 44: Drill: Name & describe each of the 7 crystal structures.

Osmotic Pressure = iMRT

= osmotic pressure

i = ionic activity

M = Molarity

Page 45: Drill: Name & describe each of the 7 crystal structures.

Calculate the vapor pressure of a solution

containing 150 g C5H10O5 in 162 mL of

water at 30oC

Page 46: Drill: Name & describe each of the 7 crystal structures.

Drill:•Calculate the VP of a solution containing 36 % m/m glucose (C6H12O6) in water at 29oC:

•(VPwater = 30.0 mm Hg)

Page 47: Drill: Name & describe each of the 7 crystal structures.

Calculate BP & FP of 60.0 g of NaOH in

250 mL waterKBP = 0.512oC/moKFP = -1.86oC/mo

Page 48: Drill: Name & describe each of the 7 crystal structures.

Calculate the osmotic pressure of a solution

containing 12 g of NaOH dissolved in 250 mL solution at

27oC

Page 49: Drill: Name & describe each of the 7 crystal structures.

Chm II Homework:Problems: 47 & 87

Page: 585 - 587

Page 50: Drill: Name & describe each of the 7 crystal structures.

AP Chm HW:Problems: 31, 35, & 39

Page: 298

Page 51: Drill: Name & describe each of the 7 crystal structures.

Calculate the vapor pressure of a solution

containing 120 g C3H7OH in 144 mL of

water at its BP.

Page 52: Drill: Name & describe each of the 7 crystal structures.

Drill: Calculate the mass of lead(II)nitrate required to make 250

mL of 0.40 M Pb(NO3)2

Page 53: Drill: Name & describe each of the 7 crystal structures.

Test on Monday on Bonding, Lewis Dot

Diagrams, & Solution Chemistry

Page 54: Drill: Name & describe each of the 7 crystal structures.

Draw LDDs for:BH3 NCl3

CF4 C3H6

SO3 SO3-2

Page 55: Drill: Name & describe each of the 7 crystal structures.

Calculate the osmotic pressure of a solution

containing 12 g of C4H8O4 dissolved in 50.0 mL

solution at 27oC(VP = 26.7 mmHg)

Page 56: Drill: Name & describe each of the 7 crystal structures.

Clausius-Claperon Eq

Hv= R ln(T2)(T1) P2

(T2 – T1) P1

Page 57: Drill: Name & describe each of the 7 crystal structures.

VPbenzene Temp (oC) 24.5 2773.5 127

Calculate Hv for benzene:

Page 58: Drill: Name & describe each of the 7 crystal structures.

Calculate the osmotic pressure of a solution containing 29.9 g of CoBr3 dissolved in

7500 mL solution at 27oC

Page 59: Drill: Name & describe each of the 7 crystal structures.

Calculate the vapor pressure of a solution

containing 12.0 g C3H8O in 14.4 mL of

water at its BP.VPsolvent = 1.0 Atm

Page 60: Drill: Name & describe each of the 7 crystal structures.

Calculate the molality of a

solution that is 33.1 % by mass Pb(NO3)2

in water

Page 61: Drill: Name & describe each of the 7 crystal structures.

Drill: Calculate the osmotic pressure of 0.88 g of CO2 in 750 mL of soln at 27oC

Page 62: Drill: Name & describe each of the 7 crystal structures.

Test Tomorrow

Page 63: Drill: Name & describe each of the 7 crystal structures.

300 g C3H6NF was dissolved in 500 g

C6H12O at 27oC making a 0.800 g/mL solution. Calculate X, mo, M, ,

VP, BP, & FP.

Page 64: Drill: Name & describe each of the 7 crystal structures.

180 g C3H8O was dissolved in 180 mL

H2O at 27oC making a 1.5 g/mL solution.

Calculate X, mo, M, , VP, BP, & FP.

Page 65: Drill: Name & describe each of the 7 crystal structures.

A 1.2 g/cm3 aqueous solution is 20.0 % by mass NaOH at 27oC.Calculate: X, mo, M,

, & MP

Page 66: Drill: Name & describe each of the 7 crystal structures.

Calculate the molecular mass of a covalent

compound dissolved in an aqueous solution to make it 25 % by mass when it

boils at 102.048oC

Page 67: Drill: Name & describe each of the 7 crystal structures.

AP Homework:Read: Chapter 11Power Point: 19

Page 68: Drill: Name & describe each of the 7 crystal structures.

Chm II Homework:Read: Chapter 15Power Point: 16