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- 5:10 Question 4 of 15 .5G Which of the following describes the entropy change in the given reaction? 2 Cl₂O(g) → 2 Cl₂(g) + 7 O₂(g) Submit A) The entropy change is negative because a larger molecule (Cl₂O₂) is converted into two smaller molecules (Cl₂ and O₂). B) The entropy change is zero because the reactants and products are all gases. C) The entropy change cannot be determined because the temperature is not specified. D) The entropy change is negative because there are more moles of products than reactants. Tap here or pull up for additional resources E) The entropy change is positive because there are more moles of products than reactants.9:43 Question 8 of 17 If the reaction quotient (Q) is larger than the equilibrium constant (K) for a reaction then which way will the reaction proceed? A) The reaction will proceed toward products B) The reaction will proceed towards reactants. Submit C) The reaction is at equilibrium and the reaction will stop completely. D) The reaction is at equilibrium and the reaction will proceed at equal rates in the reverse and forward direction. E) The reaction equation is required to answer this question. Tap here or pull up for additional resources5:13 Question 7 of 17 If the reaction quotient (Q) is equal to the equilibrium constant (K) for a reaction then A) the reaction will proceed toward products. B) the reaction will pr reactants. towards Submit C) the reaction is at equilibrium and the reaction will stop completely. D) the reaction is at equilibrium and the reaction will proceed at equal rates in the reverse and forward direction. E) The reaction equation is required to answer this question. Tap here or pull up for additional resources
- Decay Problem My Solutions > A zircon sample contains 4000 atoms of the radioactive element 235U. Given that 235U has a half-life of 700 million years, how long would it take to decay to 125 atoms? Solve the equation via MATLAB making sure that you passed though the following: 1. Initialization of variables 2. Setting up the differential equations 3. Listing down initial Conditions 4. Solving for the parameter k. 5. Finding the resulting model 6. Finding the period where the amount will be 125 atoms 7. Graph the solutions12:40 Question 2 of 14 Which of the following does the change in the free energy of a reaction predict? A) the work done B) the speed C) the spontaneity D) the final temperature E) the heat released Submit Tap here or pull up for additional resources3. The velocity of a particle which starts from rest is given by the following table. t see) 0 2 8 10 12 14 16 v (fusee) o 12| 16 26 40| 44 25 12 18 Evaluate using trapezium rule, the total distance travelled in 18 seconds.
- Decay Problem My Solut A zircon sample contains 4000 atoms of the radioactive element 235U. Given that 235U has a half-life of 700 million years, how long would it take to decay to 125 atoms? Solve the equation via MATLAB making sure that you passed though the following: 1. Initialization of variables 2. Setting up the differential equations 3. Listing down initial Conditions 4. Solving for the parameter k. 5. Finding the resulting model 6. Finding the period where the amount will be 125 atoms 7. Graph the solutions2. RADIOACTIVE DECAY, REVISITED This is a modified version of chapter 1 problem 4 in your textbook. Consider the radioactive decay of nuclei A into nuclei B, which can then also decay. The numbers of each species as a function of time are given by N₁ (t) and NB (t), and the decay of each species is governed by¹: dNA dt == NA dNB NA NB = dt ΤΑ TB where T and T are the decay time constants for each type of nucleus.9:30 1 4 7 +/- Question 11 of 12 What is the concentration of A after 43.1 minutes for the reaction A → Products when the initial concentration of A is 0.800 M? (k = 0.00651 M/min) 2 5 8 M 3 60 9 O Submit Tap here or pull up for additional resources XU x 100
- 1:58 7 STARTING AMOUNT ADD FACTOR x( ) A liquid in the lab has a density of 1.24 g/cm³. What is the mass in grams of 254 mL of the liquid? 100 1.24 10 205 315 254 1 10³ Question 24 of 60 0.1 0.01 3.15 x 105 0.001 X g ANSWER kg cm³ g/cm³ WWLE mL Submit Tap here or pull up for additional resources RESET 59:19 Question 14.b of 16 The value of Kp for the reaction 2 A(g) + B(g) + 3 C(g) → 2 D(g) + E(g) is 10490 at a particular temperature. Submit What does the magnitude of Kp tell us about the equilibrium position of the reaction? A) There are many more products than reactants. B) There are only a few more products than reactants. C) There are many more reactants than products. D) There are only a few more reactants than products. Tap here or pull up for additional resources8:34 1 4 7 +/- Question 11 of 12 2 5 8 What is the concentration of A after 43.1 minutes for the reaction A → Products when the initial concentration of A is 0.800 M? (k = 0.00651 M/min) M 3 60 9 O ..5GW Tap here or pull up for additional resources Submit XU x 100