Step 1: One–shaft (single-spool) power balance.
Turbine and compressor sit on the same shaft. In steady state with no losses,
\[
P_t = P_c \Rightarrow \dot m\,W_t = \dot m\,W_c \Rightarrow W_t = W_c,
\]
where \(W\) is specific shaft work (per unit mass flow \(\dot m\)). The number of stages only divides the same total work among stages.
Step 2: Euler turbomachinery view (why stage count is irrelevant).
Compressor: per stage \( \Delta h_{0,\text{stg}} = U\,(V_{\theta 2}-V_{\theta 1}) \) (positive for compressor).
Turbine: per stage \( \Delta h_{0,\text{stg}} = U\,(V_{\theta 1}-V_{\theta 2}) \) (delivers work).
Total compressor work \(W_c = \sum_{i=1}^{6}\Delta h_{0,\text{stg},i}\).
Total turbine work \(W_t = \sum_{j=1}^{2}\Delta h_{0,\text{stg},j}\).
On a single spool in lossless idealization, the sums must be equal so that the shaft neither accelerates nor decelerates:
\[
\sum_{j=1}^{2}\Delta h_{0,\text{stg},j} \;=\; \sum_{i=1}^{6}\Delta h_{0,\text{stg},i}.
\]
Step 3: What multipliers (2, 3, 6) would imply.
Any \(W_t \neq W_c\) would yield net shaft power \(\dot m (W_t - W_c)\neq 0\), violating steady single-spool operation (unless unmodelled losses/drives are present, which the problem excludes).
Final Answer:
\[
\boxed{W_t = W_c}
\]
An ideal two-stage rocket has identical specific impulse and structural coefficient for its two stages. For an optimized rocket, the two stages have identical payload ratio as well. The payload is 2 tons and the initial mass of the rocket is 200 tons. The mass of the second stage of the rocket (including the final payload mass) is ___________ tons.
A gaseous fuel mixture comprising 3 moles of methane and 2 moles of ammonia is combusted in \( X \) moles of pure oxygen in stoichiometric amount. Assuming complete combustion, with only \( {CO}_2 \), \( {H}_2{O} \), and \( {N}_2 \) in the product gases, the value of \( X \) is ____________. \[ 3 \, {CH}_4 + 2 \, {NH}_3 + X \, {O}_2 \rightarrow {Products (CO}_2, \, {H}_2{O}, \, {N}_2{)} \]
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Air at temperature 300 K is compressed isentropically from a pressure of 1 bar to 10 bar in a compressor. Eighty percent of the compressed air is supplied to a combustor. In the combustor, 0.88 MJ of heat is added per kg of air. The specific heat at constant pressure is \( C_p = 1005 \, {J/kg/K} \) and the specific heat ratio is \( \gamma = 1.4 \). The temperature of the air leaving the combustor is _______ K (rounded off to one decimal place).
A monopropellant liquid rocket engine has 800 injectors of diameter 4 mm each, and with a discharge coefficient of 0.65. The liquid propellant of density 1000 kg/m³ flows through the injectors. There is a pressure difference of 10 bar across the injectors. The specific impulse of the rocket is 1500 m/s. The thrust generated by the rocket is __________ kN (rounded off to one decimal place).
A monopropellant liquid rocket engine has 800 injectors of diameter 4 mm each, and with a discharge coefficient of 0.65. The liquid propellant of density 1000 kg/m³ flows through the injectors. There is a pressure difference of 10 bar across the injectors. The specific impulse of the rocket is 1500 m/s. The thrust generated by the rocket is __________ kN (rounded off to one decimal place).
An ideal ramjet with an optimally expanded exhaust is travelling at Mach 3. The ambient temperature and pressure are 260 K and 60 kPa, respectively. The inlet air mass flow rate is 50 kg/s. Exit temperature of the exhaust gases is 700 K. Fuel mass flow rate is negligible compared to air mass flow rate. Gas constant is \( R = 287 \, {J/kg/K} \), and specific heat ratio is \( \gamma = 1.4 \). The thrust generated by the engine is __________ kN (rounded off to one decimal place).
Courage : Bravery :: Yearning :
Select the most appropriate option to complete the analogy.
We __________ tennis in the lawn when it suddenly started to rain.
Select the most appropriate option to complete the above sentence.
A 4 × 4 digital image has pixel intensities (U) as shown in the figure. The number of pixels with \( U \leq 4 \) is:

In the given figure, the numbers associated with the rectangle, triangle, and ellipse are 1, 2, and 3, respectively. Which one among the given options is the most appropriate combination of \( P \), \( Q \), and \( R \)?

A rectangle has a length \(L\) and a width \(W\), where \(L>W\). If the width, \(W\), is increased by 10%, which one of the following statements is correct for all values of \(L\) and \(W\)?
Select the most appropriate option to complete the above sentence.