Figure I shows the P-V graph for a sample of a gas at 298 K. If this sample were heated to 312 K, this would be represented by a point atm Figure 1 50 100 V/e A At the top, left end of the line в Off the line, above and to the right of it. C At the lower, right end of the line D Off the line, below and to the right of it.
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A: Given data, UHeinitial=7500 J nAr =2 nHe=1
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A: Number of moles (n) = 9Initial temperature (T) = 267.3 k Final temperature (T') = 285.8 k
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A: TB =TC pv=nRT PbVb =PcVc Vc = VpPb/Pc
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A: Using Boyle's law PV = C V = CP V = CP-1 Differentiating the above expression dV = C-1P-1-1dP dVdP =…
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Q: (I) A concrete highway is built of slabs 12 m long (15°C). How wide should the expansion cracks…
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Q: A sample of a monatomic ideal gas occupies S.00 L at atmospheric pressure and 300 K (point A in the…
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Q: you have 9 moles of a monoatomic ideal gas, how much heat is required to raise the temperature of…
A: here we have to use first law of thermodynamics
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A: Let Pa, Pb and Pc are the value of pressure, Va, Vb and Vc are the value of volume and Ta, Tb and Tc…
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A: The ideal gas equation is PV=nRTSolve for TT=PVnR
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A: Internal energy is the sum of the potential energy and kinetic energy of the particles of the given…
Q: If you have 4 moles of a diatomic ideal gas (such as oxygen or nitrogen), how much heat is required…
A: Initial temperature (T) = 269.5 k Final temperature (T') = 288.3 kNumber of moles of diatomic gas…
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A: Given information:Temperature of the oxygen gas (T) = 140 0C = 140 + 273 = 413 0KPressure of the of…
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Q: P (atm) 3- 2 2 1- 0+ V (cm³) 100 200 300 A gas with an initial temperature of 840 •C•C undergoes the…
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Q: What is the number of moles contained in 1 m3 of ideal gas at this temperature and pressure?
A: Given: Temperature = 350C Atmospheric pressure = 1.1455 Kg/m3
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Q: One type of gas mixture used in anesthesiology is a 50% / 50% mixture (by volume) of nitrous oxide…
A: From Dolton’s law, total Pressure= Pn + Po; where Pn and Po are pressures from N2O and O2…
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A: Given data:
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Q: Q 1: Calculate the specific heat C of a gas whose diatomic molecules have transitional, rotational…
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A: Here the concept of heat capacity at constant pressure and volume is used. Cp-Cv=R
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- At sufficiently high temperatures, the thermal speeds ofgas molecules may be high enough that collisions may ionize amolecule (that is, remove an outer electron). An ionized gas inwhich each molecule has lost an electron is called a “plasma.”Determine approximately the temperature at which air becomesa plasma.I want the calculation for this expiremnt Note: the unit of thermal conductivity w/m.kThe porous catalyst pellet shown in Figure 1 has an overall radius R and a thermal conductivity k (which may be assumed constant). Because of the chemical reaction occurring within the porous pellet, heat is generated at a constant rate of Se cal/em s. Heat is lost at the outer surface of the pellet to a gas stream at a constant temperature T, by convective heat transfer coefficient h. Gas bemperature T, Figure I. Sphere with internal heat generation Answer the following questions (a) Make a list of assumptions that apply to the above situation. (b) Set up the differential equation by making a shell energy balance. Show the units for all variables that are used. (c) Specify the proper boundary conditions. (d) Integrate the differential equation with the above boundary conditions to obtain an expression for the temperature profile, and make a sketch of the function profile T(r) (e) What is the limiting form of T(r) when h co? (f) What is the maximum temperature in the system? (g)…
- Problem 1: An iron-constantan thermocouple is used to measure the temperature in an oven. The cold junction is at ambient temperature of 82oF (about 28oC), and the thermocouple voltage is 12 mV. Use the given information and the table below to: Determine the voltage at the cold junction. Determine the voltage at the hot junction. Determine the approximate temperature of the oven in oC and oThe total power emitted by a spherical black body of radius Rat a temperature T is P,. R Let P, be the total power emitted by another spherical black body of radius kept at 2 temperature 27T . The ratio, is (Give your answer upto two decimal places) P2Water vapor at a pressure 0f 2X10 N/m2 0nd a dempirature of as0°c is 0.32 x106 N/m2.following expanded to a yoessune of ec.For the low P.V1.25 this expanston determine: a. Pinal vapor condnion b. Syecipie haat transpan c. Changis in tntroyy SIDU
- to vyrons lamstal sat to (asluojolid nt) ognalo odi ei jed hour. Her 26. A monatomic gas at a temperature of 600 °K and pressure 300 kPa is inside a container whose volume is 0.100 m³. How many atoms of gas are there? Express your answer as a 00.21 multiple of 1.0 x 1024. degree 20.10 szodato soon (a) 3.62 (b) 3.45 (c) 5.43 (d) 6.46, (e) none of these3 of 4 A stainless-steel-bottomed kettle, its bottom 25 cm in diameter and 1.6 mm thick, sits on a burner. The kettle holds boiling water, and energy flows into the water from the kettle bottom at 800 W. Review I Constants I Periodic Tabl Part A What is the temperature of the bottom surface of the kettle? Thermal conductivity of stainless steel is 14 W/(m K). Express your answer using four significant figures. VO AEO ? T = 102.65 °C Submit Previous Answers Request Answer X Incorrect; Try Again; 5 attempts remaining Review your calculations and make sure you round to 4 significant figures in the last step. Ne Provide FeedbackThe temperature at state A is 20ºC, that is 293 K, what is the temperature at state D, in Kevin? Your answer needs to have 2 significant figures, including the negative sign in your answer if needed. Do not include the positive sign if the answer is positive. No unit is needed in your answer, it is already given in the question statement.
- Please help. Refer to the picture attached. The following pressure, temperature and specific humidity measurementswere made from radiosonde soundings on day 11 of the Wangara PBLexperiment: (a) Calculate and plot virtual temperature as a function of height. Answer in the format of Given, Required, & Solution. (b) Calculate and plot virtual potential temperature as a function of height. Answer in the format of Given, Required, & Solution. (c) Characterize the various layers on the basis of local and nonlocal stability and discuss the differences between the two.(d) Estimate the height of the inversion base (zi), as well as the PBL height (h). Discuss the sensitivity of the latter to the near-surface temperature. Answer in the format of Given, Required, & Solution.Unreasonable results. (a) Find the temperature of 0.360 kg of water, modeled as an ideal gas, at a pressure of 1.01105 Pa if it has a volume of 0.615 m3. (b) What is unreasonable about this answer? How could you get a better answer?A mercury thermometer still in use for meteorology has a bulb with a volume of 0.780 cm3 and a tube for the mercury to expand into of inside diameter 0.130 mm. (a) Neglecting the thermal expansion of the glass, what is the spacing between marks 1 apart? (b) If the thermometer is made of ordinary glass (not a good idea), what is the spacing?