A key challenge for engineers designing high-altitude airplanes is ensuring structural integrity and performance in extreme atmospheric conditions. At high altitudes, the air pressure is significantly lower, which can affect engine efficiency and aerodynamic stability. Additionally, engineers must address temperature variations and the potential for reduced oxygen levels, which necessitate advanced materials and systems to maintain safety and functionality. Balancing these factors while optimizing fuel efficiency and operational range adds further complexity to the design process.
The airplane may succumb to the power of gravity as lift decreases at higher altitudes.
One major challenge an engineer of a high-altitude airplane must consider is the decreased air density at high altitudes, which affects both lift and engine performance. This requires the design of specialized wings and propulsion systems that can operate efficiently in thin air. Additionally, engineers must address temperature extremes and the potential for structural fatigue due to low pressure and temperature fluctuations. Ensuring passenger safety and comfort at such altitudes also presents significant design challenges.
Engineer or Design Engineer. However in England, the term "engineer" can refer to a mechanic who works on an airplane.
£65,000 a year
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The airplane may succumb to the power of gravity as lift decreases at higher altitudes.
The airplane may succumb to the power of gravity as lift decreases at higher altitudes.
One major challenge an engineer of a high-altitude airplane must consider is the decreased air density at high altitudes, which affects both lift and engine performance. This requires the design of specialized wings and propulsion systems that can operate efficiently in thin air. Additionally, engineers must address temperature extremes and the potential for structural fatigue due to low pressure and temperature fluctuations. Ensuring passenger safety and comfort at such altitudes also presents significant design challenges.
One challenge that the engineer of a high-altitude airplane would need to consider is the thin air at high altitudes, which can impact engine performance and aircraft stability. This can require specialized engine designs and aerodynamic considerations to ensure safe and efficient operation at high altitudes. Additionally, maintaining cabin pressurization systems to provide a breathable environment for passengers and crew is crucial.
Engineer or Design Engineer. However in England, the term "engineer" can refer to a mechanic who works on an airplane.
loads or millions
£65,000 a year
the difference between aircraft maintenance engineer and aeronautical engineer is, aeronautical engineer dose the design work theoritically,while the aircraft engineer maintain and service the airplane
Aeronautical Engineer I believe so
No one they did it themselves.
A pilot is a crew member who flies the airplane. A pilot must be licensed by the FAA to fly an airplane. He has to be licensed to fly a specific type airplane. An aeronautical engineer is a person who helps design an airplane. That is a term for a college degree. They are also referred to as aerospace engineer. In the US, the engineer does not have to be licensed. He only has to meet the criteria of the company who designs the airplane. A mechanic is a person who is licensed to repair an airplane or build an airplane. I mention this because in Europe, the term "engineer" can sometimes refer to a mechanic. The FAA does license some engineers to be the industry representative for the FAA and to approve design changes to meet the Federal Regulations. These are called Designated Engineering Representatives.
The first female airplane designer was Elsie Macgill. She was a Canadian who was born in 1905 and was not only the first female airplane designer, she was also the world's first female aeronautical engineer.