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Station Measured Traverse Angle Azimuth Length y x Coordinates (m) Point n (grad) (grad) (m) (m) (m) Y X 1 50 5 AB. 12 5

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Station

Measured Traverse Angle

Azimuth

Length

y

x

Coordinates (m)

Point

n (grad)

(grad)

(m)

(m)

(m)

Y

X

1

50

5AB.12

5AB.12

2

3

4

5

1

AB=21

Q.1) With given values of the closed-loop traverse shown below, calculate the coordinates of points 2.3.4.5? You must show your control of angle misclosure etros, and computation of departure (AY) and latitude (AX) closure.conditions (40 points) s1 - s5 s2 5 3 $4 33 B1 2485 41 16 Si 100.47m B2 28321 84 S2 150.20m B3 308 48 36 S3 122.85m B4 251: 02 66 S4 130.19m B5 308: 86 28 S5 116.14m Azimuth 50+ 00 00 angle of line 1-2 (al) 150 Fm = 1 + [S] (n-1). In Fs = Fx2 + Fy2 Fmax = 0.01 VS F, =[B]-(n + 2)* 200 Q.1) With given values of the closed-loop traverse shown below, calculate the coordinates of points 2.3.4.5? You must show your control of angle misclosure etros, and computation of departure (AY) and latitude (AX) closure.conditions (40 points) s1 - s5 s2 5 3 $4 33 B1 2485 41 16 Si 100.47m B2 28321 84 S2 150.20m B3 308 48 36 S3 122.85m B4 251: 02 66 S4 130.19m B5 308: 86 28 S5 116.14m Azimuth 50+ 00 00 angle of line 1-2 (al) 150 Fm = 1 + [S] (n-1). In Fs = Fx2 + Fy2 Fmax = 0.01 VS F, =[B]-(n + 2)* 200

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