A 17100 lb airplane is travelling at 360 mph IAS at 10000 ft on a standard day. The airplane's wingspan and average chord are 59.5 ft and 6.4 ft respectively. What is the airplane's TAS (mph, tenth's)? Your Answer: Answer units
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Q: Needs Complete solution with 100 % accuracy don't use chat gpt or ai plz plz plz.
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Q: Needs Complete solution with 100 % accuracy don't use chat gpt or ai plz plz plz plz plz.
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- Figure E TE D D C 130⁰ R 5 F V 3 of 3 > 5 T G 6 Copyright © 2023 Pearson Education Inc. All rights reserved. I Terms of Use | Privacy Policy Permissions Contact Us I B Part C Evaluate the dot product of the vectors in (Figure 3). Express your answer using two significant figures. IVE ΑΣΦΑΛ Submit H Provide Feedback X Incorrect: Try Again; 5 attempts remaining MacBook Air 7 12.85 N Previous Answers Request Answer U 8 J M 19 9 K MOSISO O < ? O 2 P command opticA student spins a rubber stopper, tied to a string, over his head in a horizontal circle. The radius of the circle is, r, meters and the stopper has a mass of, m, grams. The stopper has period of, T, seconds, which results in a tension, 6.3 N. If the radius of the swing was changed by a factor of 2.4, what would be the resulting tension? Give your answer to 3 sig figs (1 decimal place in this case)Needs Complete typed solution with 100 % accuracy. Don't use chat gpt please.
- One day, you are driving your car down the highway, and you notice that you are driving well over the speed limit. You apply the brakes of the carapplying a variable stopping force, until the car slows down to a rea sonable speed of 22.4 m/s (50 mph)A computer plots the force versus time for the vehicle and then measures the area under the curve. It is found that the area is - 18.950N . The total breaking time was 5.4 s. Given that the combined mass of you and your car 1sm = 1200 kg how fast were you moving before applying the breaks? What is the average force applied by the road to the car during breaking? (Note: 1Ns=1kg* m/s)Figure x Part A - Moment due to a force specified by magnitude and endpoints F As shown, a member is fixed at the origin, point O, and has an applied force F, the tension in the rope, applied at the free end, point B. (Figure 1) VE ΑΣΦ ↓↑ vec Mo 0.013,97.9, - 196 Submit The force has magnitude F = 140 N and is directed as shown. The dimensions are x₁ = 0.450 m, x₂ = 1.70 m, y₁ = 2.60 m, and z₁ = 1.30 m. B What is the moment about the origin due to the applied force F? Express the individual components of the Cartesian vector to three significant figures, separated by commas. ► View Available Hint(s) Previous Answers X Incorrect; Try Again; 4 attempts remaining 1 of 3 ? i, j, k] N · mTo be compliant with regulations the inclination angle of awheelchair ramp must not exceed 4.76°. If the wheelchair rampmust have a vertical height of 1.22 m, what is its minimum horizontal length?