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Single Replacement and Activity Series

Total questions: 25

Worksheet time: 50mins

Name
Class
Date
1.

Based on the activity series, what are the predicted products of this reaction?

Br2 (l) + KI (aq) →

a)

KBr + I2

b)

KBr + I

c)

KBr2 + I

d)

No Reaction

2.

Based on the activity series, will this reaction occur?

Au (s) + HCl (l) →

a)

AuCl + H

b)

No Reaction

c)

AuCl + H2

d)

Au2Cl + H2

3.

Predict the product(s) of this reaction (don't worry about balancing):

Mg + HCl →

a)

No Reaction

b)

MgCl2 + H2

c)

MgCl2 + H

d)

MgCl + H2

4.

What will be the result of the following:

LiBr + Na --->

a)

Li will replace Na

b)

Na will replace Br

c)

Na will replace Li

d)

no reaction will occur

5.

What will be the result of : Zn + AuCl2->

a)

ZnCl2 +Au

b)

ZnAu + Cl2

c)

no reaction

d)

ClAu + Zn

6.

What are the products of this reaction: Fe + Na2CO3 ?

a)

Na2 + Fe(CO3)2

b)

Na + CO3Fe

c)

Na + Fe2CO3

d)

No Reaction

7.

Which element is higher in reactivity, Ag or Ca?

a)

Ag

b)

Ca

c)

Neither

d)

They're equal

8.

What are the products of this single replacement reaction: Mg + CuSO4

a)

Cu + MgSO4

b)

Cu + SO4Mg

c)

Cu + Mg(SO4)2

d)

No Reaction

9.
What do we look at to determine if an element is strong enough to replace another element in a single replacement reaction?
a)
Solubility Rules 
b)
Ionic Charges
c)
It must be insoluble!
d)
Activity Series
10.

Based on the activity series, which metal could X represent in the reaction below?

X + Ca (NO3)2 --> Ca + X (NO3)2

a)

Ba

b)

Fe

c)

Mg

d)

Zn

11.

Which reaction occurs

a)

Ag + KNO3 ------> K + AgNO3

b)

K + AgNO3 ------> Ag + KNO3

12.

Which reaction occurs

a)

2Li (s) + 2H2O (l) -----> 2LiOH (aq) + H2 (g)

b)

2 LiOH (aq) + H2 (g) -------> 2 Li (s) + 2 H2O (l)

13.
Magnesium reacts with hydrochloric acid to produce magnesium chloride and hydrogen gas this happens because? 
a)
Magnesium is higher on the reactivity series then hydrogen
b)
magnesium is more reactive than hydrogen
c)
magnesium is able to break the bond between HCl and form MgCl2
d)
both b and c are correct
14.

Determine the result of the following potential reaction (formulas must be correct).

Bi(OH)2 + Ni →

a)

BiNi + H2O

b)

Bi + NiOH

c)

Bi + Ni(OH)2

d)

no reaction

15.

Determine the result of the following potential reaction (formulas must be correct).

AgF + Cl2

a)

AgCl + F2

b)

Ag + ClF

c)

AgF2 + Cl2

d)

no reaction

16.

Determine the result of the following potential reaction (formulas must be correct).

CuCl2 + Ba →

a)

Cu + BaCl

b)

Cu + BaCl2

c)

BaCu + Cl2

d)

no reaction

17.

Determine the result of the following potential reaction (formulas must be correct).

Mn + Al(NO3)3

a)

Mn(NO3)3 + Al

b)

Al + Mn(NO3)4

c)

Al + MnNO3

d)

no reaction

18.

Determine the result of the following potential reaction (formulas must be correct).

Al + Mn(NO3)4

a)

AlNO3 + Mn

b)

Al(NO3)3 + Mn

c)

Al(NO3)4 + Mn

d)

no reaction

19.

Determine the result of the following potential reaction (formulas must be correct).

LiF + Cl2

a)

Li + ClF2

b)

LiCl + F

c)

LiCl2 + F2

d)

no reaction

20.

Determine the result of the following potential reaction (formulas must be correct).

Ca + H2O(g) →

a)

CaOH and H2

b)

Ca(OH)2 and H2

c)

CaH2O6

d)

no reaction

21.

Determine the result of the following potential reaction (formulas must be correct).

Ni + H2O(g) →

a)

NiOH and H2

b)

Ni(OH)2 and H2

c)

NiH2O6

d)

no reaction

22.

Determine the result of the following potential reaction (formulas must be correct).

Cobalt + Hydrochloric Acid →

a)

CoCl2 + H2

b)

CoH2 + Cl2

c)

CoCl + H

d)

no reaction

23.

Based on the activity series, will this reaction occur?

Au (s) + HCl (l) →

a)

AuCl + H

b)

No Reaction

c)

AuCl + H2

d)

Au2Cl + H2

24.

Predict the product(s) of this reaction (don't worry about balancing):

Mg + HCl →

a)

No Reaction

b)

MgCl2 + H2

c)

MgCl2 + H

d)

MgCl + H2

25.

Predict the product(s) of this reaction (Don't worry about balancing)

Pb(NO3)2 + KI →

a)

PbK(s) + INO3(aq)

b)

No Reaction

c)

PbI2(s) + KNO3(aq)

d)

PbI2(aq) + KNO3(s)