At constant pressure, which of these systems do work on the surroundings? Check all that apply. 1. 2A(g)+2B(g)--> 3C(g) 2. A(s)+B(g)--> 2C(g) 3. 2A(g)+2B(g)--> 5C(g)From the information provided, determine the system and the surroundings. Concept: Heat and Work Problem : At constant pressure, which of these systems do work on the surroundings?a. 2A(g) + 3B(g) → 4C(g)b.At constant pressure, which of these systems do work on the surroundings? A. 2A(g) + 3B(g) → 4C(g) B. A(s) + B(s) → C(g) C. 2A(g) + 2B(g) → 3C(g) D. 2A(g) +B(g) → 4C(g) E. More than one of the aboveFind an answer to your question "At constant pressure, which of these systems do work on the surroundings?A (s) + B (s) C (g) A (s) + B (s) C (g) 2 A (g) + 2 B (g) 5" in 📘 Chemistry if you're in doubt about the correctness of the answers or there's no answer, then try to use the smart search and find answers to the similar questions.At constant pressure, which of these systems do work on the surroundings? Check all that apply. If you can't find your institution, please check your spelling and do not use abbreviations.
Solution: At constant pressure, which of | Chemistry
At constant pressure, which of these systems do work on the surroundings? Check all that apply. A(s)+B(s)-->C(g) 2A(g)+3B(g)-->4C(g) A(g)+B(g)-->3C(g) 2A(g)+B(g)-->3C(g)Question: At Constant Pressure, Which Of These Systems Do Work On The Surroundings? 2A(g)+3B(g) 4C(g) 2A(g)+B(g) C(g) A(s)+B(g) 2C(g) 2A(g)+B(g) 4C(g) This problem has been solved! See the answerAnswers for At constant pressure, which of these systems do work on the surroundings? Check all that apply.. Ask for homework help with other questions and get the answer fast!A gas is confined to a cylinder under constant atmospheric pressure, as illustrated in the following figure. When the gas undergoes a particular chemical reaction, it absorbs 827 J of heat from its surroundings and has 0.66 kJ of
Solution: At constant pressure, which of t... | Clutch Prep
The system is at constant pressure, however, because the total pressure inside the container is always equal to atmospheric pressure. If a gas is driven out of the flask during the reaction, the system does work on its surroundings. If the reaction pulls a gas into the flask, the surroundings do work on the system.A gas is confined to a cylinder under constant atmospheric pressure, as illustrated in the following figure. When the gas undergoes a particular chemical reaction, it absorbs 827 J of heat from its surroundings and has 0.66 kJ ofThe work done is therefore V*P where V is the volume of gas evolved, and P is the atmospheric pressure. A(g) + B(g) ---> C(g) In this reaction 2 volumes of reagent combine to form 1 vol of product. The total volume falls, so the work done is negative (the atmosphere does work on the gaseous system).For each of the reactions at constant pressure, determine whether the system does work on the surroundings, the surroundings does work on the system, or essentially no work is performed. (a) 4Fe + 3O2 -> 2Fe2O3 (b) 2H2O2 -> O2 + 2H2O. Answer.If the gases of a reaction system perform net work on the surroundings, then this requires a net increase in pressure for the reaction after it proceeds to completion. Therefore, the reaction...
thermodynamic
Energy is added to a piston-cylinder arrangement. The piston is withdrawn in this type of means that the temperature stays constant. The initial drive and quantity are 2 hundred KPa and 2m^3, respectively. If the final power is 100 KPa,
chemistryGiven that the normal boiling level of CCl4 is 77 °C, which of the following statements about the process underneath is/are right kind? You may make a selection a couple of, or none, of the statements. CCl4(l, 68 °C, 1 atm) ⟶ CCl4(g, 101 °C,
ChemistryConsider these changes. (a) Hg(l)->Hg(g) (b) 3O2(g)->2O3(g) (c) CuSo4*5H2O(s)->CuSO4(s)+5H2O(g) (d) H2(g)+F2(g)->2HF(g) At constant drive, in which of the reactions is work executed through the machine on the surroundings? By the
physicsIf an excellent gasoline does certain work on its surroundings, we would possibly suppose, with regard to the fuel: A. Volume will increase B. Internal energy decreases C. Pressure decreases D. Temperature increases E. Pressure will increase
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