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110年 - 110 國立清華大學碩士班考試入學試題_工程與系統科學系/乙組:熱力學#105638
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Q6. Derive the cycle thermal efficiency in terms of r and k.
相關申論題
Q1. Estimate the mole number of cach gas species in the container.
#449401
Q2. If the partition in the box is removed and a heat loss takes place during the mixing process, how do you simplify the 1st law below to evaluate the mixture temperature at its equilibrium state? The first law of thermodynamics for transient processes is expressed as:Subscripts 1 and 2 are states; subscripts i and o are inlet and outlet, respectively.
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Q3. Using the simplified equation to calculate the mixture temperature at its equilibrium state.
#449403
Q4. Determine the mixture pressure at its equilibrium state.
#449404
Problem 2. Complete the questions below (16%; 8 pts each): Q1. To estimate the steady-state heat transfer rate of the liquid-to-steam in the serpentine pipe shown below, how do you simplify the law of thermodynamics in Problem 1-Q2 to do the estimation?
#449405
Q2. The questions below are relevant to the humidity in the air conditioning: Q2-1. In the equation of the humidity ratio, ω= mv/ma = 0.622*Pv /(P-Pv), what are P . and Pv, my and ma?Q2-2. In the equation of the relative humidity, RH = Pv /Pg, what is Pg? How can Pg be obtained?
#449406
Q1. Sketch the temperature of the ice cube versus time, as it, solely exposed to air at a room temperature, slowly turns from a solid state to a complete liquid state.
#449407
Q2. The project is based on a problem that an insulated container is partially filled with a liquid in gas at an isothermal condition where the fluid temperature is higher than the ice temperature. Then, several ice cubes are dropped into the container (see the image below). Regarding this transient process of heat transfer, you are asked to develop a formula based on the first law of thermodynamics to predict the needed ice mass or needed ice initial temperature to achieve a targeted final temperature at its thermal equilibrium. Assuming that you know the liquid mass, liquid temperature, gas mass, gas temperature and thermodynamics properties of liquid, gas and ice. To simplify the analysis, let us assume that the mass of gas remains unchanged after the addition of ice to the container and the process of heat transfer in the container is isobaric. To derive a practical cquation for the analysis described herein, how do you make assumptions and simplify the first law of the thermodynamics based on the equation shown in Problem 1-Q2? List the notations for each parameter and variable in the equation proposed by you.
#449408
Q1. Identify the processes by numbers where the heat addition, heat rejection, compression and expansion are involved in one cycle.
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Q2. Using the first law of thermodynamics to derive equations for each term in Q1 in terms of the gas temperature.
#449410
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