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Tasya [4]
4 years ago
10

A gas in a piston–cylinder assembly undergoes a compression process for which the relation between pressure and volume is given

by pVn 5 constant. The initial volume is 0.1 m3, the final volume is 0.04 m3, and the final pressure is 2 bar. Determine the initial pressure, in bar, and the work for the process, in kJ, if (a) n 5 0, (b) n 5 1, (c) n 5 1.3.
Engineering
1 answer:
viktelen [127]4 years ago
5 0

Answer:

A.) P = 2bar, W = - 12kJ

B.) P = 0.8 bar, W = - 7.3 kJ

C.) P = 0.608 bar, W = - 6.4kJ

Explanation: Given that the relation between pressure and volume is

PV^n = constant.

That is, P1V1^n = P2V2^n

P1 = P2 × ( V2/V1 )^n

If the initial volume V1 = 0.1 m3,

the final volume V2 = 0.04 m3, and

the final pressure P2 = 2 bar. 

A.) When n = 0

Substitute all the parameters into the formula

(V2/V1)^0 = 1

Therefore, P2 = P1 = 2 bar

Work = ∫ PdV = constant × dV

Work = 2 × 10^5 × [ 0.04 - 0.1 ]

Work = 200000 × - 0.06

Work = - 12000J

Work = - 12 kJ

B.) When n = 1

P1 = 2 × (0.04/0.1)^1

P1 = 2 × 0.4 = 0.8 bar

Work = ∫ PdV = constant × ∫dV/V

Work = P1V1 × ln ( V2/V1 )

Work = 0.8 ×10^5 × 0.1 × ln 0.4

Work = - 7330.3J

Work = -7.33 kJ

C.) When n = 1.3

P1 = 2 × (0.04/0.1)^1.3

P1 = 0.6077 bar

Work = ∫ PdV

Work = (P2V2 - P1V1)/ ( 1 - 1.3 )

Work = (2×10^5×0.04) - (0.608 10^5×0.1)/ ( 1 - 1.3 )

Work = (8000 - 6080)/ -0.3

Work = -1920/0.3

Work = -6400 J

Work = -6.4 kJ

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As resistors are added in series to a circuit, the total resistance will
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Resistance is the obstruction offered whenever the current is flowing through the circuit.

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8 0
2 years ago
The top surface of an L = 5­mm­thick anodized aluminum plate is irradiated with G = 1000 W/m2 while being simultaneously exposed
puteri [66]

Answer:

J=1963W/m^2

q_{rad}=963w/m^2

\triangle T= -0.378k/s

Explanation:

From the question we are told that:

L=5mm => 5*10^{-3}\\Irradiation G=1000W/m^2\\h=50W/m^2\\T_{infinity} = 25C.\\Plate\ temperature\ T_p= 400 K\\\alpha=0.14\\E=0.76

at Temp=400K

E=2702kg/m^2,c=949J/kgk

Generally the equation for Radiosity is mathematically given by

J=eG+\in E_p

J=(1-\alpha)G+\in \sigma T^4

J=(1-0.14)1000+0.76 (5.67*10^_{8}) (400)^4

J=1963W/m^2

Generally the equation for net radiation heat flux q_{rad} is mathematically given by

q_{rad}=J-G\\q_{rad}=1963-1000

q_{rad}=963w/m^2

Generally the equation for and the rate of plate temp \triangleT is mathematically given by

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