Which of the following statements about absolute ceiling and service ceiling for a piston–propeller aircraft is/are correct?
Step 1: Definitions (piston–prop aircraft).
Absolute ceiling: altitude where excess power \(P_{\text{ex}}=P_{\text{avail}}-P_{\text{req}}\) becomes zero. Hence \(P_{\text{avail}}=P_{\text{req}}\) and the maximum rate of climb \(\dot h_{\max}=P_{\text{ex}}/W=0\).
Service ceiling: altitude where the maximum rate of climb reduces to a small prescribed value; for piston aircraft this is \(\dot h_{\max}=100\ \text{ft/min}\) (not \(50\ \text{ft/min}\); the latter is sometimes used for certain jets).
Step 2: Evaluate the options.
(A) Absolute ceiling corresponds to a higher altitude than service ceiling. \(\Rightarrow\) True.
(B) At absolute ceiling, \(P_{\text{req}}=P_{\text{avail}}\) (no excess power). \(\Rightarrow\) True.
(C) Says absolute ceiling is lower; contradicts (A). \(\Rightarrow\) False.
(D) States \(50\ \text{ft/min}\) for service ceiling; for piston props it is \(100\ \text{ft/min}\). \(\Rightarrow\) False.
\[ \boxed{\text{Correct: (A), (B).}} \]
A jet-powered airplane is steadily climbing at a rate of 10 m/s. The air density is 0.8 kg/m³, and the thrust force is aligned with the flight path. Using the information provided in the table below, the airplane’s thrust to weight ratio is __________ (rounded off to one decimal place).

A jet-powered airplane is steadily climbing at a rate of 10 m/s. The air density is 0.8 kg/m³, and the thrust force is aligned with the flight path. Using the information provided in the table below, the airplane’s thrust to weight ratio is __________ (rounded off to one decimal place).

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