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1. Find the equation of state of a solid that has an isobaric expansion coefficient dVidT = 2cT - bp and an isothermal pressure-volume coefficient

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1. Find the equation of state of a solid that has an isobaric expansion coefficient dVidT = 2cT - bp and an isothermal pressure-volume coefficient dVidp = -bT. 2. what is the fractional increase in the volume of the gas of 30 L? In a quasi-static isobaric expansion, 600 J of work are done by the gas. If the gas pressure is 0.80 atm, 3. As shown below, calculate the work done by the gas in the quasi-static processes represented by the paths p (atm) 4.0 3.0 D C 2.0 1.0 - A B 1.0 2.0 3.0 4.0 5.0 V (L)I (a) AD (b) ACB (C) ADCB. 4. What is the internal energy of 8 mol of an ideal monatomic gas at 220 .C ?5. When a gas expands along AB (see below), it does 600 J of work and absorbs 240 J of heat. When the gas expands along AC, it does 750 J of work and absorbs 340 J of heat. How much heat does the gas exchange along BCBe careful-files from the Internet can contain viruses. Unless you need to edit, it's safer to stay in Protected View. Enable Editing PA D C B 6. Find the work done in each of the processes AB, BC, AD, and DC. In the processes, AB and BC, 3600 J and 2400 J of heat are added to the system, respectively. p (atm) 4 5 - B C A D Focus6. Find the work done in each of the processes AB, BC, AD, and DC. In the processes, AB and BC, 3600 J and 2400 J of heat are added to the system, respectively. p (atm) A 5 B C 2- A D 7 V ( L ) 7. In the processes, AB and BC, 3600 J and 2400 J of heat are added to the system, respectively.p (atm) 5 B C 2- A D 3 7 V ( L ) Find the internal energy change in processes AB and BC. 8. Pressure and volume measurements of a dilute gas undergoing a quasi-static adiabatic expansion are shown below. Plot In p vs V and determine y for this gas from your graph. P (atm) V (L) 20 17 1 14 1.1 11 1.3 8 1.5 5 2 2.6P (atm) V ( L) 20 1 17 1.1 14 1.3 11 1.5 8 2 5 2.6 9. Calculate the internal energy of 20 mg of helium at a temperature of 0 C. 10. What is the work done by an ideal monatomic gas at a pressure of 3 x 10'N/m2 and a temperature of 300 K undergoes a quasi-static isobaric expansion from 2.0 x 103 to 4.0 x 103 2.5 x 103 to 4 x 103 cm3

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