A solution contains 0.018 mole each of I − , Br − , and Cl − . When the solution is mixed with 200. mL of 0.24 M AgNO 3 , what mass of AgCl( s ) precipitates out, and what is [Ag + ]? Assume no volume change. AgI: K sp = 1.5 × 10 − 16 AgBr: K sp = 5.0 × 10 − 13 AgCl: K sp = 1.6 × 10 − 10
A solution contains 0.018 mole each of I − , Br − , and Cl − . When the solution is mixed with 200. mL of 0.24 M AgNO 3 , what mass of AgCl( s ) precipitates out, and what is [Ag + ]? Assume no volume change. AgI: K sp = 1.5 × 10 − 16 AgBr: K sp = 5.0 × 10 − 13 AgCl: K sp = 1.6 × 10 − 10
Solution Summary: The author calculates the mass of AgCl(s) that precipitates out, when the given solution is mixed with
A solution contains 0.018 mole each of I−, Br−, and Cl−. When the solution is mixed with 200. mL of 0.24 M AgNO3, what mass of AgCl(s) precipitates out, and what is [Ag+]? Assume no volume change.
AgI:
K
sp
=
1.5
×
10
−
16
AgBr:
K
sp
=
5.0
×
10
−
13
AgCl:
K
sp
=
1.6
×
10
−
10
The decomposition of dinitrogen pentoxide according to the equation:
50°C
2 N2O5(g)
4 NO2(g) + O2(g)
follows first-order kinetics with a rate constant of 0.0065 s-1. If the initial
concentration of N2O5 is 0.275 M, determine:
the final concentration of N2O5 after 180 seconds.
...
Don't used hand raiting
CS2(g) →CS(g) + S(g)
The rate law is Rate = k[CS2] where k = 1.6 × 10−6 s−¹.
S
What is the concentration of CS2 after 5 hours if the initial concentration is 0.25 M?
Chapter 15 Solutions
Bundle: Chemistry: An Atoms First Approach, 2nd, Loose-Leaf + OWLv2, 4 terms (24 months) Printed Access Card
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