Čan two elements be used as reactants for a synthesis reaction? If yes, give at least one example from Model 1 to support your answer. Can two compounds be used as reactants for a synthesis reaction? If yes, give at least one example from Model 1 to support your answer. What types of substances (elements or compounds) are seen in the products of decomposition reactions? Use examples from Model 1 to support your answer.

Chemistry
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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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7. Can two elements be used as reactants for a synthesis reaction? If yes, give at least
one example from Model 1 to support your answer.
8. Can two compounds be used as reactants for a synthesis reaction? If yes, give at least
one example from Model 1 to support your answer.
9. What types of substances (elements or compounds) are seen in the products of
decomposition reactions? Use examples from Model 1 to support your answer.
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Transcribed Image Text:7. Can two elements be used as reactants for a synthesis reaction? If yes, give at least one example from Model 1 to support your answer. 8. Can two compounds be used as reactants for a synthesis reaction? If yes, give at least one example from Model 1 to support your answer. 9. What types of substances (elements or compounds) are seen in the products of decomposition reactions? Use examples from Model 1 to support your answer. MacBook Alir 000 O00 DII DD F4 F5 F6 F7 F8 FS $ % 4 5 7 8 9 R T Y
Recognizing patterns allows us to predict future behavior. Weather experts use patterns to
predict dangerous storms so people can get their families to safety. Political analysts use
patterns to predict election outcomes. Similarly, chemists classify chemical equations according
to their patterns to help predict products of unknown but similar chemical reactions.
Model 1 - Types of Reactions
Set A
Set B
4Fe(s) + 30,(g) → 2Fe,O,(6)
N,e) + 3H,g) - 2NH,()
250,(g) + O,(g) → 250,(e)
MgO(s)+ H,O() Mg(OH),(aq)
P,O,(g) + 3H,O() 2H,PO,(aq)
SO{g) + H¸O() → H,S0,(aq)
MGCO,(6) → MgO(s) + CO,(g)
8Li,S(s) 16LI(s) + S,(s)
2H̟O() -- 2H,g) + O,)
2KCIO,(6) → 2KCI(6) + 30,(g)
2Na,0,(6) → 2Na,O(s) + O,(g)
(NH),CO,(6) → 2NH, ) + H,O() + CO,(g)
Set C
Set D
2FECI,(aq) + 3Zn(s) → 2Fe(s) + 3ZnCL,(aq)
2AI(NO,),(aq) + 3Ca(s) → 3Ca(NO,),(aq) + 2Al(s)
Mg(s) + CUSO,(aq) → MgSO,(aq) + Cu(s)
2Al(s) + 6HCI(aq) → 2AICI,(aq) + 3H,(g)
Clg) + 2NaBr(aq) → 2NaCl(aq) + Br,1)
ZnBr,(aq) + F,(g) → ZnF,(aq) + Br,(1)
AGNO, (aq) + NaCI(aq) AgCI(s) + NANO, (aq)
2HNO,(aq) + Mg(OH),(aq) →
Mg(NO.), (aq) + 2H¸Ó)
Na,CO,(aq) + CaCL(aq) →
CaCO (s) + 2N2CI(aq)
FeS(s) + 2HCI(aq) H_S(g) + F€CL(aq)
HC(aq) + NaOH(aq) → H,O(1) + NaCl(aq)
FeBr,(aq) + K,PO,(aq) -→ FePO,(s) + 3KB-(aq)
80
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DD
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F5
F6
F7
F8
F9
2$
&
*
7
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< CO
Transcribed Image Text:Recognizing patterns allows us to predict future behavior. Weather experts use patterns to predict dangerous storms so people can get their families to safety. Political analysts use patterns to predict election outcomes. Similarly, chemists classify chemical equations according to their patterns to help predict products of unknown but similar chemical reactions. Model 1 - Types of Reactions Set A Set B 4Fe(s) + 30,(g) → 2Fe,O,(6) N,e) + 3H,g) - 2NH,() 250,(g) + O,(g) → 250,(e) MgO(s)+ H,O() Mg(OH),(aq) P,O,(g) + 3H,O() 2H,PO,(aq) SO{g) + H¸O() → H,S0,(aq) MGCO,(6) → MgO(s) + CO,(g) 8Li,S(s) 16LI(s) + S,(s) 2H̟O() -- 2H,g) + O,) 2KCIO,(6) → 2KCI(6) + 30,(g) 2Na,0,(6) → 2Na,O(s) + O,(g) (NH),CO,(6) → 2NH, ) + H,O() + CO,(g) Set C Set D 2FECI,(aq) + 3Zn(s) → 2Fe(s) + 3ZnCL,(aq) 2AI(NO,),(aq) + 3Ca(s) → 3Ca(NO,),(aq) + 2Al(s) Mg(s) + CUSO,(aq) → MgSO,(aq) + Cu(s) 2Al(s) + 6HCI(aq) → 2AICI,(aq) + 3H,(g) Clg) + 2NaBr(aq) → 2NaCl(aq) + Br,1) ZnBr,(aq) + F,(g) → ZnF,(aq) + Br,(1) AGNO, (aq) + NaCI(aq) AgCI(s) + NANO, (aq) 2HNO,(aq) + Mg(OH),(aq) → Mg(NO.), (aq) + 2H¸Ó) Na,CO,(aq) + CaCL(aq) → CaCO (s) + 2N2CI(aq) FeS(s) + 2HCI(aq) H_S(g) + F€CL(aq) HC(aq) + NaOH(aq) → H,O(1) + NaCl(aq) FeBr,(aq) + K,PO,(aq) -→ FePO,(s) + 3KB-(aq) 80 F3 DII DD F4 F5 F6 F7 F8 F9 2$ & * 7 8 E T Y U < CO
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