An airplane, approching an airport for landing, had been asked to wait until the runway is clear. The plane flies a "holding pattern," which basically means it will fly in a circle at a constant height and speed. Suppose the 4.700x104 kg airplane has a speed of 565 km/h and needs to fly in a circle with a radius of 5.30 km. To turn, it will bank (tilt) its wings at some angle; this makes the aerodynamic lift force [(L)\vec] point up and to the left as shown below. What is the magnitude of the lift force on the plane as it travels in this circle?

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Question 1
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An airplane, approching an airport for landing, had been asked to wait until the runway is clear. The plane flies a "holding pattern," which basically means it will fly in a circle at a
constant height and speed. Suppose the 4.700x104 kg airplane has a speed of 565 km/h and needs to fly in a circle with a radius of 5.30 km. To turn, it will bank (tilt) its wings at
some angle; this makes the aerodynamic lift force [(L)\vec] point up and to the left as shown below. What is the magnitude of the lift force on the plane as it travels in this circle?
Transcribed Image Text:Question 1 Bank Angle An airplane, approching an airport for landing, had been asked to wait until the runway is clear. The plane flies a "holding pattern," which basically means it will fly in a circle at a constant height and speed. Suppose the 4.700x104 kg airplane has a speed of 565 km/h and needs to fly in a circle with a radius of 5.30 km. To turn, it will bank (tilt) its wings at some angle; this makes the aerodynamic lift force [(L)\vec] point up and to the left as shown below. What is the magnitude of the lift force on the plane as it travels in this circle?
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