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19 October, 00:56

Finding the Actual Speed and Direction of an Aircraft. A Boeing 747 jumbo jet maintains a constant airspeed of 550 miles per hour (mi/hr) headed due north. The jet stream is 100 mi/hr in the northeasterly direction. (a) Express the velocity va of the 747 relative to the air and the velocity vw of the jet stream in terms of i and j. (b) Find the velocity of the 747 relative to the ground. (c) Find the actual speed and direction of the 747 relative to the ground.

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  1. 19 October, 00:58
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    A. Va: 0i+550j, Vw: 50√2i+50√2j

    B. 50√2i+50√2j+550j

    C. 624.7mph and N6.5E

    Step-by-step explanation:

    A. For va, recall that it just has the y (i) component, which is just equal to its velocity.

    for vw, there is an angle of 45 degrees, so to find the components do speed*sin (theta)

    and speed * cos (theta)

    Therefore,

    Va: 0i+550j, Vw: 50√2i+50√2j

    B. Simply add the I's and j's together to get your answers here, which gives

    (0i+550j) + (50√2i+50√2j)

    = 0i+50√2i+550j+50√2j

    = 50√2i+50√2j+550j

    C. Using Pythagoras theorem

    a²+b² = c²

    c² = (50√2i+50) ² + (50√2j+550j) ²

    where a is i and b is j

    For the angle, recall that it's just arctan (j/i)

    when putting this into the calculator remember not to include the i and j in the arctan. This number should be 83.5 degrees, however this is not your final answer, compass bearings starting from the left in pre-calculus and other math courses, so subtract 83.5 from 90 to find your bearing.

    90°-83.5° = 6.5

    This gives, 624.7mph and N6.5E
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