Classify each of the reactions. Pb(NO3)2 + NiCl₂- combination double replacement decomposition -> PbCl₂ + Ni(NO3)2 single replacement PC13 + Cl₂ ->> PC15 single replacement combination decomposition double replacement C12H₂2011 - 12C+11H₂O decomposition combination double replacement single replacement ZnSO4 + Mg → Zn + MgSO4 decomposition combination double replacement single replacement
Catalysis and Enzymatic Reactions
Catalysis is the kind of chemical reaction in which the rate (speed) of a reaction is enhanced by the catalyst which is not consumed during the process of reaction and afterward it is removed when the catalyst is not used to make up the impurity in the product. The enzymatic reaction is the reaction that is catalyzed via enzymes.
Lock And Key Model
The lock-and-key model is used to describe the catalytic enzyme activity, based on the interaction between enzyme and substrate. This model considers the lock as an enzyme and the key as a substrate to explain this model. The concept of how a unique distinct key only can have the access to open a particular lock resembles how the specific substrate can only fit into the particular active site of the enzyme. This is significant in understanding the intermolecular interaction between proteins and plays a vital role in drug interaction.
![Classify each of the reactions.
Pb(NO3)2 + NiCl₂
combination
->
double replacement
decomposition
single replacement
PC13 + Cl₂ PC15
single replacement
PbCl2 + Ni(NO3)2
combination
decomposition
double replacement
C12H22011
→ 12C+11H₂O
decomposition
combination
double replacement
single replacement
ZnSO4 + Mg →→→ Zn + MgSO4
decomposition
combination
double replacement
single replacement](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F902c26ff-dca5-4710-91bd-da6e2112f0de%2F7a6bf1ca-085b-4503-ace2-83e14d1dc2e1%2F55mu5f_processed.jpeg&w=3840&q=75)
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