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VMariaS [17]
2 years ago
11

Given: PFST is a rectangle m∠SOT = 60°, OS = R=4 Find: ST and PT

Mathematics
2 answers:
yuradex [85]2 years ago
7 0
The complete question in the attached figure

we know that

radius r of a circle=4 units

in the triangle OST
OT=OS=4 units
m∠OST = 60°
cos 60°=(ST/2)/r-------> ST=2*r*cos 60°-----> 2*4*(1/2)----> 4 units
so 
triangle OST 
<span>it's an equilateral triangle
</span>
the answer Part a) is 
ST=4 units

Part b)
Find PT
in the triangle POT
m∠POT = (180°-60°)---------> 120°
m∠OTP = 30°
cos 30°=(PT/2)/r------> PT=2*r*cos 30°------> 2*4*√3/2----> 4√3 units

the answer Part b) is
PT=4√3 units



klemol [59]2 years ago
5 0

Answer:

pt=8\sqrt{3

st=4

Step-by-step explanation:

ha;f of pt is 4sqrt 3

and st is given by r which is 4

find pt htrough 30-60-90

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1. slope of the line connecting airplane one and the airport: m = 2 you can see this clearly if you graph the two points. From airplane 1 location we rise 8 units and move to the right 4 units to get to the airport. Slope is defined as rise over run: so 8 divided by 4 = 2(the slope) Now substitute the slope and the point (2,4) into point-slope form of a line:

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2. slope of the line connecting airplane 2 and the airport: m = -\frac{1}{3} To find this slope, simply observe the vertical change of down 3 and a horizontal shift of right 9 from the airport to airplane 2. Now substitute this slope and and the point (15,9) into point-slope form of a line:

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Let's write the system:
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PS: You just have to do a little algebra to get from point-slope form of the two equations to standard form. I did not show this process, but if you need it just let me know... thanks
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2 years ago
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Answer:

B. AD = sqrt(CD * BD)

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By the right triangle altitude theorem,

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