
Concept explainers
A piston–cylinder device contains 0.85 kg of refrigerant-134a at −10°C. The piston that is free to move has a mass of 12 kg and a diameter of 25 cm. The local atmospheric pressure is 88 kPa. Now, heat is transferred to refrigerant-134a until the temperature is 15°C. Determine (a) the final pressure, (b) the change in the volume of the cylinder, and (c) the change in the enthalpy of the refrigerant-134a.
FIGURE P3–30
(a)

The final pressure of the refrigerant R-134a.
Answer to Problem 30P
The final pressure of the refrigerant R-134a is
Explanation of Solution
The final pressure is equal to the initial pressure of the refrigerant R-134a.
Here, atmospheric pressure is
Conclusion:
Substitute 88 kPa for
Thus, the final pressure of the refrigerant R-134a is
(b)

The change in the volume of the cylinder.
Answer to Problem 30P
The change in the volume of the cylinder is
Explanation of Solution
Convert the unit of initial pressure from kPa to MPa.
Write the formula of interpolation method of two variables at
Here, the variables denote by x and y are pressure and specific volume.
Calculate the initial volume of cylinder.
Here, the initial state specific volume is
Calculate the final volume of cylinder.
Here, the final state specific volume is
Calculate the change in the volume of cylinder.
Conclusion:
Refer to Table A-13, obtain the values of below variables as in Table (I) at
Pressure, MPa | Specific volume, |
0.06 | 0.35048 |
0.0904 | ? |
0.10 | 0.20743 |
Substitute 0.06 for
Thus, the specific volume of refrigerant R-134a at the initial state of 90.4 kPa and
Refer to Table A-13, obtain the values of below variables as in Table (II) at
Pressure, MPa | Enthalpy, |
0.06 | 248.60 |
0.0904 | ? |
0.10 | 247.51 |
Substitute 0.06 for
Thus, the enthalpy of refrigerant R-134a at the initial state of 90.4 kPa and
Apply spreadsheet and solve the final state specific volume at
Refer to Table A-13, obtain the values of below variables as in Table (III) at
Temperature, | Specific volume, |
10 | 0.37893 |
15 | ? |
20 | 0.39302 |
Substitute 10 for
Similarly, solve final state specific volume at
Now use interpolation method again to solve the final state specific volume at
Pressure, MPa | Specific volume, |
0.06 | 0.386 |
0.0904 | ? |
0.10 | 0.2294 |
Substitute 0.06 for
Thus, the final state specific volume at
Apply the above steps to calculate the enthalpy at
Substitute 0.85 kg for m and
Substitute 0.85 kg for m and
Substitute
Thus, the change in the volume of the cylinder is
(c)

The change in the enthalpy of the refrigerant R-134a.
Answer to Problem 30P
The change in the enthalpy of the refrigerant R-134a is
Explanation of Solution
Calculate the total enthalpy change of refrigerant R-134a.
Here, enthalpy at initial state and final state are
Conclusion:
Substitute 0.85 kg for m,
Thus, the change in the enthalpy of the refrigerant R-134a is
Want to see more full solutions like this?
Chapter 3 Solutions
THERMODYNAMICS (LL)-W/ACCESS >CUSTOM<
- Using the Bernoulli equation to find the general solution. If an initial condition is given, find the particular solution. y' + xy = xy¯¹, y(0) = 3arrow_forwardTest for exactness. If exact, solve. If not, use an integrating factor as given or obtained by inspection or by the theorems in the text. a. 2xydx+x²dy = 0 b. (x2+y2)dx-2xydy = 0 c. 6xydx+5(y + x2)dy = 0arrow_forwardNewton's law of cooling. A thermometer, reading 5°C, is brought into a room whose temperature is 22°C. One minute later the thermometer reading is 12°C. How long does it take until the reading is practically 22°C, say, 21.9°C?arrow_forward
- Solve a. y' + 2xy = ex-x² b. y' + y sin x = ecosx, y(0) = −1 y(0) = −2.5arrow_forward= MMB 241 Tutorial 3.pdf 2/6 90% + + 5. The boat is traveling along the circular path with a speed of v = (0.0625t²) m/s, where t is in seconds. Determine the magnitude of its acceleration when t = 10 s. 40 m v = 0.0625² 6. If the motorcycle has a deceleration of at = (0.001s) m/s² and its speed at position A is 25 m/s, determine the magnitude of its acceleration when it passes point B. .A 90° 300 m n B 2arrow_forward= MMB 241 Tutorial 3.pdf 4/6 67% + 9. The car is traveling along the road with a speed of v = (2 s) m/s, where s is in meters. Determine the magnitude of its acceleration when s = 10 m. v = (2s) m/s 50 m 10. The platform is rotating about the vertical axis such that at any instant its angular position is u = (4t 3/2) rad, where t is in seconds. A ball rolls outward along the radial groove so that its position is r = (0.1+³) m, where t is in seconds. Determine the magnitudes of the velocity and acceleration of the ball when t = 1.5s.arrow_forward
- The population of a certain country is known to increase at a rate proportional to the number of people presently living in the country. If after two years the population has doubled, and after three years the population is 20,000, estimate the number of people initially living in the country.arrow_forward= MMB 241 Tutorial 3.pdf 6/6 100% + | 日 13. The slotted link is pinned at O, and as a result of the constant angular velocity *= 3 rad/s it drives the peg P for a short distance along the spiral guide r = (0.40) m, where 0 is in radians. Determine the radial and transverse components of the velocity and acceleration of P at the instant = 1/3 rad. 0.5 m P r = 0.40 =3 rad/sarrow_forward= MMB 241 Tutorial 3.pdf 1/6 90% + DYNAMICS OF PARTICLES (MMB 241) Tutorial 3 Topic: Kinematics of Particles:- Path and Polar coordinate systems and general curvilinear QUESTIONS motion. 1. Determine the acceleration at s = 2 m if v = (2 s) m/s², where s is in meters. At s = 0, v = 1 m/s. 3 m 2. Determine the acceleration when t=1s if v = (4t2+2) m/s, where t is in seconds. v=(4²+2) m/s 6 marrow_forward
- 5.112 A mounting bracket for electronic components is formed from sheet metal with a uniform thickness. Locate the center of gravity of the bracket. 0.75 in. 3 in. ༧ Fig. P5.112 1.25 in. 0.75 in. y r = 0.625 in. 2.5 in. 1 in. 6 in. xarrow_forward4-105. Replace the force system acting on the beam by an equivalent resultant force and couple moment at point B. A 30 in. 4 in. 12 in. 16 in. B 30% 3 in. 10 in. 250 lb 260 lb 13 5 12 300 lbarrow_forwardSketch and Describe a hatch coaming and show how the hatch coamings are framed in to ships strucure?arrow_forward
- Elements Of ElectromagneticsMechanical EngineeringISBN:9780190698614Author:Sadiku, Matthew N. O.Publisher:Oxford University PressMechanics of Materials (10th Edition)Mechanical EngineeringISBN:9780134319650Author:Russell C. HibbelerPublisher:PEARSONThermodynamics: An Engineering ApproachMechanical EngineeringISBN:9781259822674Author:Yunus A. Cengel Dr., Michael A. BolesPublisher:McGraw-Hill Education
- Control Systems EngineeringMechanical EngineeringISBN:9781118170519Author:Norman S. NisePublisher:WILEYMechanics of Materials (MindTap Course List)Mechanical EngineeringISBN:9781337093347Author:Barry J. Goodno, James M. GerePublisher:Cengage LearningEngineering Mechanics: StaticsMechanical EngineeringISBN:9781118807330Author:James L. Meriam, L. G. Kraige, J. N. BoltonPublisher:WILEY





