Thermodynamics Flashcards
7 cards from real EIT practice questions. Tap to flip, then mark Knew It or Still Learning — missed cards come back until you master them.
Read the first 7 Thermodynamics flashcards as text
In a steady-flow system, the energy equation per unit mass is: h1 + V1²/2 + gz1 + q = h2 + V2²/2 + gz2 + w. For an adiabatic nozzle with negligible elevation change and no work, which simplification applies?
Answer: h1 + V1²/2 = h2 + V2²/2
With q = 0, w = 0, and Δz ≈ 0, the energy equation reduces to h1 + V1²/2 = h2 + V2²/2.
Which of the following is a valid statement of the second law of thermodynamics?
Answer: No heat engine can have 100% thermal efficiency
The Kelvin-Planck statement of the second law prohibits any cyclic device from converting heat entirely to work.
For a van der Waals gas, the equation of state is (P + a/v²)(v - b) = RT. The term a/v² accounts for:
Answer: Intermolecular attractive forces
The term a/v² corrects for intermolecular attractive forces that reduce the effective pressure.
In a Rankine cycle, what component increases the pressure of the working fluid?
Answer: Pump
The pump increases the pressure of the liquid condensate from condenser pressure to boiler pressure.
For an ideal gas, the internal energy is a function of temperature only. This means that (∂u/∂v)_T equals:
Answer: 0
For an ideal gas, internal energy depends only on temperature, so (∂u/∂v)_T = 0.
The polytropic process PV^n = constant becomes isothermal when n equals:
Answer: 1
When n = 1, PV = constant, which for an ideal gas gives T = constant (isothermal process).
A heat pump has a COP of 4 and delivers 8 kW of heat to a building. How much power does it consume?
Answer: 2 kW
COP_HP = Q_H / W_net → W_net = Q_H / COP = 8 / 4 = 2 kW.