Chemists cannot control reaction rates through factors such as temperature fluctuations, which can lead to unpredictable kinetic energy changes. Additionally, variations in concentration of reactants can cause inconsistencies in reaction speed. The presence of impurities or catalysts can also alter reaction dynamics in unforeseen ways. Lastly, external conditions like pressure changes, particularly in gaseous reactions, can unpredictably affect the rate of reaction.
It is important to control chemical reactions in industry.
Increase in Surface area,Increase in temperature,Increase in concentration,and the presence of catalysts or inhibitors.
Chemical kinetics is the study of the rates at which chemical reactions occur and the factors that influence these rates. Its components include the rate of reaction, activation energy, reaction mechanisms, and reaction orders. By understanding these components, chemists can predict and control the speed of chemical reactions.
enzymes
yes, it depends on the chemical reaction.
It is important to control chemical reactions in industry.
Varying the following parameters:- temperature- pressure- concentraton- stirring
The reaction rate is dependet on temperature, pressure and reactants concentration.
Increase in Surface area,Increase in temperature,Increase in concentration,and the presence of catalysts or inhibitors.
Chemical kinetics is the study of the rates at which chemical reactions occur and the factors that influence these rates. Its components include the rate of reaction, activation energy, reaction mechanisms, and reaction orders. By understanding these components, chemists can predict and control the speed of chemical reactions.
enzymes
paasa >.<
By changing concentration, temperature; pressure and volume (in the case of gases).
At equilibrium, the rates of the forward and reverse reactions are equal, but chemical reactions are still occurring.
yes, it depends on the chemical reaction.
No, enzymes actually increase the rates of chemical reactions by lowering the activation energy required for the reaction to occur. They do this by providing an alternative pathway for the reaction to proceed more easily.
Nuclear decay rates vary, but chemical reaction rates are constant