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Ch.14 - Chemical Kinetics
Tro - Chemistry: A Molecular Approach 4th Edition
Tro4th EditionChemistry: A Molecular ApproachISBN: 9780134112831당신이 사용하는 게 아니라요?교과서 변경
14장, 문제 26

Consider the reaction: 2 N2O(g) → 2 N2(g) + O2(g). In the first 15.0 s of the reaction, 0.015 mol of O2 is produced in a reaction vessel with a volume of 0.500 L. a. What is the average rate of the reaction during this time interval? b. Predict the rate of change in the concentration of N2O during this time interval, i.e., what is ∆[N2O]/∆t?

검증된 단계별 안내
1
The balanced chemical equation is 2 N2O(g) → 2 N2(g) + O2(g). This tells us that for every 2 moles of N2O that decompose, 1 mole of O2 is produced.
Use the formula for concentration: [O2] = moles of O2 / volume of the vessel. Here, moles of O2 = 0.015 mol and volume = 0.500 L.
The average rate of formation of O2 is given by the change in concentration of O2 over the change in time: rate = Δ[O2]/Δt. Use the concentration from Step 2 and the time interval of 15.0 s.
According to the stoichiometry of the reaction, the rate of formation of O2 is half the rate of decomposition of N2O. Therefore, rate of reaction = 2 * rate of formation of O2.
Use the relationship from Step 4 to find Δ[N2O]/Δt. Since the rate of reaction is equal to the rate of disappearance of N2O, Δ[N2O]/Δt = -2 * rate of formation of O2.>

주요 개념

질문에 올바르게 답하기 위해 반드시 이해해야 하는 핵심 개념들은 다음과 같습니다.

Average Rate of Reaction

The average rate of a chemical reaction is defined as the change in concentration of a reactant or product over a specific time interval. It is calculated using the formula: rate = Δ[product]/Δt or rate = -Δ[reactant]/Δt. In this case, the average rate can be determined by measuring the amount of O2 produced and dividing it by the time interval, providing insight into the speed of the reaction.
추천 영상:
가이드 코스
02:03
Average Rate of Reaction

Concentration and Molarity

Concentration refers to the amount of a substance (in moles) present in a given volume of solution, typically expressed in mol/L (molarity). In the context of the reaction, the concentration of O2 produced can be calculated by dividing the number of moles of O2 by the volume of the reaction vessel. Understanding concentration is crucial for predicting how the amounts of reactants and products change over time.
추천 영상:
가이드 코스
00:53
Molarity Concept

Stoichiometry

Stoichiometry is the study of the quantitative relationships between the amounts of reactants and products in a chemical reaction, based on the balanced chemical equation. For the given reaction, the stoichiometric coefficients indicate that for every 2 moles of N2O that decompose, 2 moles of N2 and 1 mole of O2 are produced. This relationship allows us to predict the rate of change in concentration of N2O based on the rate of O2 production.
추천 영상:
가이드 코스
01:16
Stoichiometry Concept