Choose one example from the set of synthesis reactions in Model 1

Chemistry: Matter and Change
1st Edition
ISBN:9780078746376
Author:Dinah Zike, Laurel Dingrando, Nicholas Hainen, Cheryl Wistrom
Publisher:Dinah Zike, Laurel Dingrando, Nicholas Hainen, Cheryl Wistrom
Chapter9: Chemical Reactions
Section: Chapter Questions
Problem 139A
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I need help with these questions and using the model 1 (Not honor class) (Not grading)
Rodriguez - I
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10. Choose one example from the set of synthesis reactions in Model 1
a. Write the chemical reaction in reverse.
b. Label the reaction written in part a with one of the reaction types in Model 1.
11. Identify each of the reactions below as synthesis (S), decomposition (D), single
replacement (SR), or double replacement (DR).
K,O (s) + H,0 (1)
2M9CI, (aq) + Na,Co, (aq)
2AI,0, (s) → 4AI (s) + 30, (g)
Cu(NO,), (aq) + Zn (s) →
H,SO, (aq) + 2NAOH (aq)
2K (s) + 2H,0 (1)
20, (g) + N, (g)
2NaF (s) → 2Na (s) + F, (g)
2КОН (ад)
2NaCI (aq) + M9CO, (s)
Cu (s) + Zn(NO,), (aq)
Na,SO, (aq) + 2H,0 (1)
2КОН (аg) + Н. (9)
N,O, (g)
Transcribed Image Text:Rodriguez - I ut9flSj1hXr0mVniJnzaeQMYUCIJrKTUeMImSWVE/edit Home - WA ISD 12... S Home | Schoology Zoom! O School Email: Dali Drive! A Google C 100% Normal text Arial 11 + BIU A 2 3 5 10. Choose one example from the set of synthesis reactions in Model 1 a. Write the chemical reaction in reverse. b. Label the reaction written in part a with one of the reaction types in Model 1. 11. Identify each of the reactions below as synthesis (S), decomposition (D), single replacement (SR), or double replacement (DR). K,O (s) + H,0 (1) 2M9CI, (aq) + Na,Co, (aq) 2AI,0, (s) → 4AI (s) + 30, (g) Cu(NO,), (aq) + Zn (s) → H,SO, (aq) + 2NAOH (aq) 2K (s) + 2H,0 (1) 20, (g) + N, (g) 2NaF (s) → 2Na (s) + F, (g) 2КОН (ад) 2NaCI (aq) + M9CO, (s) Cu (s) + Zn(NO,), (aq) Na,SO, (aq) + 2H,0 (1) 2КОН (аg) + Н. (9) N,O, (g)
Types of Chemical Reactions
Do atoms rearrange in predictable patterns during chemical reactions?
Why?
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,(s)
N,g) + 3H,(g) → 2NH,)
250,(e) + 0,g - 25O,(g)
MgO(s)+ H,O() Mg(OH),(aq)
PO,() + 3H,O) → 2H,PO,(aq)
SO,(g) + H,O(1) - H,sO,(aq)
MGCO,(6) → MgO(s) + CO,(g)
8Li S(s) → 16Lİ(s) + S,(6)
2H,O¶) → 2H,(g) + 0,g)
2KCIO,(6) → 2KCI(s) + 30,(g)
2Na,0,(6) → 2Na,O(3) + O,(g)
(NH,),CO,6) → 2NH,(g) + H,O() + CO,(g)
Set C
Set D
2FeCl, (aq) + 3Zn(s) 2Fe(s) + 3ZNC1,(aq)
2AI(NO,),(aq)
Mg(s) + CUSO,(aq)→MgSO,(aq) + Cu(s)
2AI(s) + 6HCI(aq) →2AICI,(aq) + 3H,)
C1,(g) + 2NaBr(aq)2N2CI(aq) + Br,()
ZnBr,(aq) + F,(g) -→ ZnF,(aq) + Br,()
AGNO,(aq) + NaCI(aq)
2HNO,(aq) + Mg(OH),(aq)
Mg(NO), (aq) + 2H,Ó()
Na CO,(aq) + CaClL (aq)
CaCO,(6) + 2N2CI(aq)
FeS(s) + 2HCI(aq) → H,S(g) + FECL(aq)
HC(aq) + NAOH(aq)H,O(1) + NaC(aq)
FeBr, (aq) + K,PO,(aq) - FEPO,(6) + 3KB1(aq)
AgCl(s) + NaNO,(aq)
+ 3Ca(s) → 3Ca(NO,),(aq) + 2Al(s)
000
F4
DII
DD
F5
F6
E7
F8
F9
Transcribed Image Text:Types of Chemical Reactions Do atoms rearrange in predictable patterns during chemical reactions? Why? 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,(s) N,g) + 3H,(g) → 2NH,) 250,(e) + 0,g - 25O,(g) MgO(s)+ H,O() Mg(OH),(aq) PO,() + 3H,O) → 2H,PO,(aq) SO,(g) + H,O(1) - H,sO,(aq) MGCO,(6) → MgO(s) + CO,(g) 8Li S(s) → 16Lİ(s) + S,(6) 2H,O¶) → 2H,(g) + 0,g) 2KCIO,(6) → 2KCI(s) + 30,(g) 2Na,0,(6) → 2Na,O(3) + O,(g) (NH,),CO,6) → 2NH,(g) + H,O() + CO,(g) Set C Set D 2FeCl, (aq) + 3Zn(s) 2Fe(s) + 3ZNC1,(aq) 2AI(NO,),(aq) Mg(s) + CUSO,(aq)→MgSO,(aq) + Cu(s) 2AI(s) + 6HCI(aq) →2AICI,(aq) + 3H,) C1,(g) + 2NaBr(aq)2N2CI(aq) + Br,() ZnBr,(aq) + F,(g) -→ ZnF,(aq) + Br,() AGNO,(aq) + NaCI(aq) 2HNO,(aq) + Mg(OH),(aq) Mg(NO), (aq) + 2H,Ó() Na CO,(aq) + CaClL (aq) CaCO,(6) + 2N2CI(aq) FeS(s) + 2HCI(aq) → H,S(g) + FECL(aq) HC(aq) + NAOH(aq)H,O(1) + NaC(aq) FeBr, (aq) + K,PO,(aq) - FEPO,(6) + 3KB1(aq) AgCl(s) + NaNO,(aq) + 3Ca(s) → 3Ca(NO,),(aq) + 2Al(s) 000 F4 DII DD F5 F6 E7 F8 F9
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