You pilot an airplane with the intent to fly 392 km in a direction 55.0° south of east from the starting airport. Air traffic control requires you to first fly due south for 85.0 km. (a) After completing the 85.0-km flight due south, how far are you from your destination? (b) In what direction should you point your airplane to complete the trip? Give your answer as an angle relative to due east. (c) It your airplane has an average ground speed of 485 km/h, what estimated time of travel should you give to your passengers?
You pilot an airplane with the intent to fly 392 km in a direction 55.0° south of east from the starting airport. Air traffic control requires you to first fly due south for 85.0 km. (a) After completing the 85.0-km flight due south, how far are you from your destination? (b) In what direction should you point your airplane to complete the trip? Give your answer as an angle relative to due east. (c) It your airplane has an average ground speed of 485 km/h, what estimated time of travel should you give to your passengers?
You pilot an airplane with the intent to fly 392 km in a direction 55.0° south of east from the starting airport. Air traffic control requires you to first fly due south for 85.0 km. (a) After completing the 85.0-km flight due south, how far are you from your destination? (b) In what direction should you point your airplane to complete the trip? Give your answer as an angle relative to due east. (c) It your airplane has an average ground speed of 485 km/h, what estimated time of travel should you give to your passengers?
please help with the abstract. Abstract - This document outlines the format of the lab report and describes the Excel assignment. The abstract should be a short paragraph that very briefly includes the experiment objective, method, result and conclusion. After skimming the abstract, the reader should be able to decide whether they want to keep reading your work. Both the format of the report and the error analysis are to be followed. Note that abstract is not just the introduction and conclusion combined, but rather the whole experiment in short including the results. I have attacted the theory.
Using the Experimental Acceleration due to Gravity values from each data table, Data Tables 1, 2, and 3; determine the Standard Deviation, σ, mean, μ, variance, σ2 and the 95% Margin of Error (Confidence Level) Data: Ex. Acc. 1: 12.29 m/s^2. Ex. Acc. 2: 10.86 m/s^2, Ex. Acc. 3: 9.05 m/s^2
In the Super Smash Bros. games the character Yoshi’s has a “ground pound” down special move where he launches himself downward to attack an enemy beneath him. A) If Yoshi flings himself downwards at 9.76 miles per hour to hit an enemy 10.5 m below him, how fast is Yoshi traveling when he hits the enemy? 1 mile = 1609 m B) How much time does it take Yoshi to hit the enemy beneath him?
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, physics and related others by exploring similar questions and additional content below.