This is a Fill in the blanks Type Question as classified in NCERT Exemplar
Ans: Correct option A
Activation Energy → The amount of energy required to overcome the obstacle and generate a product
The activation energy of a forward reaction can be seen in the [Eaf = E1 + E2] (This is an endothermic reaction.
Therefore, [Eaf > Eab]
The energy of the product is high, while the energy of the reactant is low.
The lower the energy, the more stable and positive the situation becomes.
Δ? = posistive
<p>This is a Fill in the blanks Type Question as classified in NCERT Exemplar</p><p><strong>Ans: </strong>Correct option A</p><p>Activation Energy <strong>→</strong> The amount of energy required to overcome the obstacle and generate a product</p><p>The activation energy of a forward reaction can be seen in the <strong> [E<sub>af</sub> = E<sub>1</sub> + E<sub>2</sub>]</strong> (This is an endothermic reaction.</p><p>Therefore, <strong> [E<sub>af</sub> > E<sub>ab</sub>]</strong> </p><p>The energy of the product is high, while the energy of the reactant is low.</p><p>The lower the energy, the more stable and positive the situation becomes.</p><p><strong>Δ</strong><strong>? </strong><strong>=</strong><strong> posistive</strong></p>
Reaction rate is used to measure how fast or slow reactions occur per unit time. The rate constant is a proportionality factor that remains constant for every reaction.
Yes, in elementary reactions, order and molecularity can be the same, but this is not always the case because order is an experimental quantity, and molecularity is a theoretical concept.
Reaction Kinetics, also known as chemical kinetics, is the study of the rate of chemical reaction and the factors affecting the reaction rate, such as temperature, concentration, and catalyst.
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