
Chemistry
10th Edition
ISBN: 9781305957404
Author: Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher: Cengage Learning
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Balance the following equations and express the rate of the following reactions in terms of the change in concentration of the reactants pr products.
NH3 (g) + O2 à NO (g) + H2O (g)
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- Consider the same reaction carried out two more times, both at the same condition(including concentration and temperature), but where the volume of the reaction is doubled in the second reaction. Since the concentrations are the same in both cases, the 2nd has twice the quantity of gases. How do those two rates of reaction compare to each other? Please compare using units of moles/(L•min) and separately using units of moles/min.arrow_forwardDetermine the rate law and the value of k for the following reaction using the data provided. NO,(9) + O3(g) – NO3(g) + O2(g) [NO,li (M) 0.1 0.1 [03li (M) Initial Rate (ms-1) 1 0.33 1.42 2 0.66 2.84 0.25 0.66 7.10 Rate = 43 M's INO,0,] S. -25c O Rate = 1360 M2s"INO,110,] S. Rate = 227 M25s INO,J[0,125 O Rate = 430 M?s INO,10,arrow_forwardConsider the following general reaction for which gases A and B are mixed in a constant volume container: A(g) + B(g) -> C(g) + D(g) Match what happens to the rate of the reaction under the following changes: (consider each change separately) v all of gas B is removed from the container more gas A is added to the container the temperature of the container is increased there is no change to the reaction rate ya catalyst is added to the container I. the reaction proceeds at a faster rate v gas D is also added to the container the reaction proceeds at a slower rate II. some of gas B is removed from the container Iy the reaction does not proceed at all the volume of the container is increasedarrow_forward
- The following data were obtained at constant temperature for the reaction: 4A(g) + 4B (g) → 3C(g) Initial [A] Initial [B] mol Experiment mol mol Initial Rate L-min L L 1 0.105 0.215 4.50 2 0.315 0.215 13.5 3 0.105 0.430 18.0 4 0.315 0.430 54.0 Part 1 of 2 Select the single best expression for the rate law for the reaction. Ok [A]³ [B]³ G Ok [A] [B] Ok [A] [B] Ok [A][B]²arrow_forwardConsider the reaction: A(g)+1/2B(g)→2C(g) Identify the expression for the rate of the reaction with respect to each of the reactants and products. When C is increasing at a rate of 4.0×10−2 M⋅s−1, how fast is B decreasing? Express your answer using two significant figures. How fast is A decreasing? Express your answer using two significant figures.arrow_forwardWrite the rate law for the following reaction, which represents an elementary step in a reaction. Your rate law should not include the states of matter. so,Cl, (g) · SO2(g) + Cl, (g)arrow_forward
- Match the quantities that yield straight lines for the given types of reactions molarity vs. time zero order rate equations inverse molarity vs. time secondorder rate equations In molarity vs. time firstorder rate equations inverse molarity vs. inverse time not a straight line for any type & へ へarrow_forwardGiven the following balanced equation, determine the rate of reaction with respect to [NOCI]. If the rate of Cl₂ loss is 4.84 x 10-2 M/s, what is the rate of loss of NO? 2 NO(g) + Cl2(g) 2 NOCI(g) 4.84 x 10-² M/s 2.42 x 10-² M/s 1.45 x 10-1 M/s 9.68 x 10-2 M/s 1.61 x 10-² M/sarrow_forward
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