P(105 pa) 3 1 10000 V(cm³) 1.2 Mol of nitrogen an ideal diatomic gas is undergoing the process shown find a) The work done by the gas b) The heat added or removed and c) its change in internal energy
Q: Three moles of an ideal monatomic gas are at a temperature of 387 K. Then 2915 Jof heat is added to…
A: Given : n = 3 Ti = 387 K Q = 2915 J W = -801 J (negative because work is done on the gas)
Q: 67) 2 cubic meter containing 100 mol of a diatomic gas and at a pressure of 6 ATM is allowed to…
A:
Q: Q5-Calculate the total work done for the path (a b c) of (3 mole) of ideal gas b V Cv=20.786…
A: Solution Given: Ta= 600 K Tb=300 K Tc=492 K Cv = 20.786 J/mole K R = 8.314 J/mole K
Q: In the shown Figure, the net work done by the gas during the close cycle is equal to: p (P.) 6x10…
A:
Q: A gas in a cylinder undergoes change from an initial state i to a final state f shown in the figure…
A:
Q: A car tire contains 0.0360 m3 of air at a pressure of 2.70 ✕ 105 N/m2 (about 39 psi). How much more…
A: The ideal gas equation can be written as PV=nkT 1 The…
Q: Molar specific heat of monatomic gas at constant pressure is (a) 5/2 R (b) 3/2 R (c) 7/2 R (d). R
A:
Q: A gas with a fixed number of molecules does 32 J of work on its surroundings, and 16 J of heat are…
A: The heat transfer to a gas is given by Q = ∆U + W, where ∆U = change in internal energy of the gas W…
Q: P (atm) 0.800 Be 0.600 0.400 A 0.200 V (L) 2 4 6 8 Figure P12.22
A:
Q: You have 0.150 mol of a gas (Cy= 5R/2 and Cp = 7R/2) at absolute temperature 310 K. You allow the…
A:
Q: A quantity of monatomic ideal gas expands adiabatically from a volume of 2.5 liters to 6.3 liters.…
A:
Q: Which figure represents the path for the work on the gas, if the work was given by: W=P,(V-V)?
A:
Q: Air with an initially at: P,= 920 kPa, T;= 800 K and V,= 0.13 m?, expands in a reversible adiabatic…
A: Given-P1=920 kPaT1=800 kV1=0.13 m3W=130 kJ To find-(a) Mass of air in kg(b) Final pressure and…
Q: a 0.25 mol of a monotomic ideal gas at 27 degrees celcius is contained in a cylinder that is fittted…
A:
Q: Calculate the work done (J) by 7 mole of O2 (gas) when it expands reversibly at a constant pressure…
A: Given : No.of moles, n = 7 moles Gas constant, R = 8.314J/mol-K Temperature T1 = 198 K Temperature,…
Q: An ideal monatomic gas increases in pressure from 149 kPa to 242 kPa at a constant volume of 2.2 m³.…
A: Formula to calculate the energy transferred by heat during the process: Q = ΔU + W where Q is the…
Q: A mole of a diatomic gas at 0.1 m^3 is expanded isothermally at 298 Kelvins to 1.0 m^3 bar against a…
A: We have a diatomic gas at initial volume V1=0.1 m3 expanded isothermally to volume V2=1 m3 at…
Q: 16) A gas undergoes a series of pressure and volume changes as shown in figure below. How much work…
A:
Q: Two cylinders each contain 0.30 mol of a diatomic gas at 280K and a pressure of 3.0 atm.…
A:
Q: p(atm) 1+ tv(L) 1 What is the work done by the gas when it undergoes the isobaric (constant…
A: Given data: Constant pressure (P) = 2 atm Initial volume (Vi) = 1 L Final volume (Vf) = 5 L…
Q: 3 mole of ideal gas expands from 2.2 bar to 6 bar at 298 K. Calculate work done (J) for the…
A: P1=2.2 barP2=6 barT=298 Kn=3 gas constant R= 8.31 Work done= W
Q: In an adiabatic process, 550 J of net work is done on a gas to significantly reduce its volume.…
A: Given Net work done on the gas= 550 J Process is adiabatic
Q: When a gas expands adiabatically, the temperature of the gas remains constant. O the internal…
A: please see the next step for solution
Q: A sealed cylinder has a piston and contains 8.20 x 10° cm³ of an ideal gas at a pressure of 8.00…
A: Given that, We have the work done(w) expressed through following expression:
Q: .... The increase in internal energy is One mole of water at a pressure of 1013 N/m2 and a degree…
A: Given Number of a mole of water (n) = 1 Pressure (P)…
Q: An ideal gas undergoes an isothermal expansion to 110% of its original volume ata temperature of…
A:
Q: 13. How much work is necessary to compress an ideal diatomic gas adiabatically from a pressure of 1…
A: The objective of this question is to calculate the work done in compressing an ideal diatomic gas…
Q: how much work is done on the gas in this process? P (KPa) 400 200- 0- V (cm³) 100 200 300
A:
Q: A cylinder contains a gas; in its upper part it has a plunger (whose mass is negligible) which…
A: According to 1st law of thermodynamics, heat input to a thermodynamic system is used in change in…
Q: 1. During the isobaric expansion from A to B represented below, -110 J of heat is removed from the…
A:
Q: During the adiabatic expansion, the temperature of 0.1 mol of oxygen drops from 30C to 10C. a) How…
A: Given data Final temperature = 10°C Initial temperatures= 30°C Argon Moles = 0.1mole R = 8.314
Q: A thermodynamical system performs work and at the time exchanges energy to the outside environment…
A: First law of thermodynamics: The way of expressing the first law of thermodynamics is that any…
Q: An ideal monatomic gas expands isothermally from 0.500 m³ to 1.25 m³ at a constant tempera- ture of…
A:
Q: An ideal gas has been subjected transformations AB and BC (see pic/link) Find the change in the…
A:
Q: 1. When the pins fall away, the gas is compressed by a constant external pressure to 5 atm.…
A: Given: A box includes 0.5 moles of an ideal gas at 1 atm is beings compressed by an external…
Q: In a certain process involving a gas, - 1000 J of work is done on the gas as it absorbs 3000 J of…
A:
Q: A 1 mol of an ideal diatomic gas is contained in a system. What is the temperature change when an…
A: given: heat supplied Q = 72.5 J work applied on system W = 235 J number of moles n=1 mol
Q: Twp cylinders of equal size are filled with equal amount of ideal diatomic gas at room temperature.…
A: The heat transferred to a system is given by, Q = nc∆T where, Q is the amount of heat transferred,…
Q: A monatomic gas is cooled from 300 K to 250 K at constant volume when 100 J of energy is removed…
A: The specific heat capacity at constant volume of monoatomic gas is 12.5 J/mol.K
Trending now
This is a popular solution!
Step by step
Solved in 3 steps