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CSM CHEM 210 FINAL EXAM QUESTIONS WITH COMPLETE SOLUTIONS
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Lithium has two stable isotopes with masses of 6.01512 amu and 7.01600 amu. The average atomic
mass of Li is 6.941 amu. What is the percent abundance of each isotope?
You mix 50.0 mL of 0.165 M AgNO3 with 25.0 mL of 0.302 M KCl. What is the mass of the precipate
that can be formed
*What is the correct answer to the following expression:
(49.1 - 42.61 ) x 13.1?
Using VSEPR Theory, predict the correct molecular shapes for NH3 and CO32-
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, 3/23/25, 7:20 CSM CHEM 210 Final Flashcards |
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Terms in this set (85)
If the fuel efficiency of an automobile is 22 9.4 Km/L
miles per gallon, what is its fuel efficiency
in Kilometers per liter? ( 1Km= 0.621 mile,
1.00 L=1.057 quarts and 4 quarts = 1 gallon)
*What is the correct answer to the 85
following expression:
(49.1 - 42.61 ) x 13.1?
An intensive property of a substance is True
independent of amount.
Lithium has two stable isotopes with 7.493% Li-6 and 92.51% Li-7
masses of 6.01512 amu and 7.01600 amu. The
average atomic mass of Li is 6.941 amu.
What is the percent abundance of each
isotope?
C3H8 + O2 --> CO2 + H2O (unbalanced) 131 g
How many grams of oxygen are required to
burn 36.0 grams of C3H8?
*There are________mol of bromide ions in We put 0.250 -
0.500 L of a 0.500 M solution of AlBr3 WRONG FIGURED
OUT 0.75
Aluminum reacts with chlorine to produce 266 g
aluminum chloride. If 2.00 moles of Al
reacts with excess Cl2, how many grams
of AlCl3 can be formed?
Al + Cl2-------> AlCl3 . ( unbalanced)
A mixture of MgCO3 and MgCO3.3H2O 40.4
has a mass of 2.883 g. After heating to drive
off all the water the mass is 2.427 g. What is
the mass percent of MgCO3.3H2O in
the mixture?
A precipitation is expected when an Mercury(I) chloride
aqueous solution of sodium iodide is
added to an aqueous solution of
For the reaction Pb in PbO2
Pb(s) + PbO2(s) + 2 H+(aq) + 2HSO4-(aq) --
>2PbSO4(s) + 2H2O(l)
The oxidizing agent ( be specific) is ________
Based on the equations below, which metal Cannot be determined
is the least active?
Pb(NO3)2(aq) + Ni (s) --> Ni(NO3)2 (aq)+
Pb(s)
Pb(NO3)2(aq) + Ag(s) --> No reaction
Cu(NO3)2(aq) + Ni(s) --> Ni(NO3)2(aq) +
Cu(s)
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