Remove redundant info
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@ -1,6 +1,5 @@
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#!/usr/bin/env python3
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from math import sqrt
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import numpy as np
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from scipy.spatial.distance import euclidean
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@ -16,177 +15,40 @@ M = -5.285
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# Atraminiu liniju koordinates ir uzkirciu ilgiai(m) [Koord. LKS94 sistemoje jau sukeistos]:
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# -- Atrama T23-T24-T25 --
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XT23 = 564383.829 + N
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YT23 = 6173144.853 + A
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T23 = np.array([XT23, YT23])
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# ---------------
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XT24 = 564444.357 + F
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YT24 = 6173086.343 + C
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T24 = np.array([XT24, YT24])
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# ---------------
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XT25 = 564673.556 + B
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YT25 = 6173055.598 + M
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T25 = np.array([XT25, YT25])
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# ---------------
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bearings = {
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23: np.array([564383.829+N, 6173144.853+A]),
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24: np.array([564444.357+F, 6173086.343+C]),
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25: np.array([564673.556+B, 6173055.598+M]),
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26: np.array([564414.733+G, 6173298.332+N]),
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27: np.array([564564.172+G, 6173312.063+B]),
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28: np.array([564770.145+N, 6173230.520+N]),
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}
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print("""Atraminiu liniju koordinates ir uzkirciu ilgiai(m):""")
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for id, bearing in bearings.items():
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print("T%d: (%.3f,%.3f)" % (id, bearing[0], bearing[1]))
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print("""
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Kontrolinis atstumas T23-T24 = 82.293 ?= %.3f""" % euclidean(T23,T24) + """
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Kontrolinis atstumas T24-T25 = 242.105 ?= %.3f""" % euclidean(T24,T25) + """
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----- 1 tasko uzkirciai (metrais)----------
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T23-1 = 161.722
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T24-1 = 125.560
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T25-1 = 169.686
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----- 2 tasko uzkirciai (metrais)----------
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T23-2 = 91.681
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T24-2 = 58.350
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T25-2 = 220.938
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----- 3 tasko uzkirciai (metrais)----------
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T23-3 = 82.431
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T24-3 = 126.263
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T25-3 = 294.537
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----- 9 tasko uzkirciai (metrais)----------
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T23-9 = 265.534
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T24-9 = 227.287
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T25-9 = 132.783
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----- 10 tasko uzkirciai (metrais)----------
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T23-10 = 288.522
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T24-10 = 238.487
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T25-10 = 89.932
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----- 11 tasko uzkirciai (metrais)----------
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T23-11 = 211.001
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T24-11 = 165.636
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T25-11 = 126.845
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-- Atrama T26-T27-T28 --
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""")
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XT26 = 564414.733 + G
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YT26 = 6173298.332 + N
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T26 = np.array([XT26, YT26])
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print("""
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XT26 = %.3f""" % XT26 + """
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YT26 = %.3f""" % YT26 + """
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---------------
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""")
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XT27 = 564564.172 + G
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YT27 = 6173312.063 + B
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T27 = np.array([XT27, YT27])
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print("""
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XT27 = %.3f""" % XT27 + """
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YT27 = %.3f""" % YT27 + """
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---------------
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""")
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XT28 = 564770.145 + N
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YT28 = 6173230.520 + N
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T28 = np.array([XT28, YT28])
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print("""
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XT28 = %.3f""" % XT28 + """
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YT28 = %.3f""" % YT28 + """
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---------------
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Kontrolinis atstumas T26-T27 = 151.109 ?= %.3f""" % euclidean(T26, T27) + """
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Kontrolinis atstumas T27-T28 = 214.908 ?= %.3f""" % euclidean(T27, T28) + """
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----- 4 tasko uzkirciai (metrais)----------
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T26-4 = 101.226
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T27-4 = 137.261
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T28-4 = 284.950
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----- 5 tasko uzkirciai (metrais)----------
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T26-5 = 32.511
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T27-5 = 125.052
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T28-5 = 319.540
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----- 6 tasko uzkirciai (metrais)----------
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T26-6 = 155.114
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T27-6 = 46.286
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T28-6 = 196.223
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----- 7 tasko uzkirciai (metrais)----------
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T26-7 = 247.440
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T27-7 = 128.403
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T28-7 = 107.731
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----- 8 tasko uzkirciai (metrais)----------
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T26-8 = 258.183
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T27-8 = 149.388
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T28-8 = 109.161
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Kontr. atst. T23-T24 = 82.293 ?= %.3f""" % euclidean(bearings[23],bearings[24]) + """
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Kontr. atst. T24-T25 = 242.105 ?= %.3f""" % euclidean(bearings[24],bearings[25]) + """
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Kontr. atst. T26-T27 = 151.109 ?= %.3f""" % euclidean(bearings[26], bearings[27]) + """
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Kontr. atst. T27-T28 = 214.908 ?= %.3f""" % euclidean(bearings[27], bearings[28]) + """
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Objektu koordinates:
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X12 = 564474.034 + M
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Y12 = 6173175.426 + F
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---------------
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X13 = 564505.240 + C
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Y13 = 6173237.929 + E
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---------------
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X14 = 564519.570 + C
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Y14 = 6173255.007 + F
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---------------
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X15 = 564615.010 + A
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Y15 = 6173215.649 + Z
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---------------
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X16 = 564627.375 + E
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Y16 = 6173220.989 + Z
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---------------
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X17 = 564627.105 + N
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Y17 = 6173210.067 + Z
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---------------
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X18 = 564607.740 + C
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Y18 = 6173171.025 + Z
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---------------
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X19 = 564558.331 + B
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Y19 = 6173177.716 + Z
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---------------
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X20 = 564546.236 + M
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Y20 = 6173183.298 + Z
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---------------
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X21 = 564558.601 + N
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Y21 = 6173188.638 + C
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---------------
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X22 = 564539.728 + F
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Y22 = 6173230.148 + E
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---------------
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--------- Kiti duomenys ----------------
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N1 objekto kampu skaicius = 10
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Objektu N1,M1,M2,M3 matmenys (metrais)
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B1 = 7.844
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B2 = 21.868
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B3 = 11.344
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B4 = 12.464
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B5 = 23.702
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B6 = 15.508
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Objekto M3 pasukimo kampas (laipsniais)
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K1 = 58.5910
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---- A sklypui prikauso: ----
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1 objektas = M3
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2 objektas = N3
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3 objektas = N2
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Pastaba. Like objektai priklauso B sklypui.
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Sklypus pradeti dalinti nuo ribos tasko Nr. 4
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Pastaba. Dalinimas baigiamas bet kuriame kitame (ne pradiniame)sklypo ribos taske.
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Sklypo ribu (tvoru) Sutartiniai Zenklai (SZ)
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1. Isorine sklypo riba:
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SZ virsuniu skaicius
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SZ1 = 4
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Daugiakampio krastines ilgis (m)
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R1 = 2.550
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Atstumas tarp sutartiniu zenklu centru (m)
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D1 = 10.863
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Tvoros aukstis (m)
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H1 = 1.95
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2. Sklypo zemes dalijimo riba:
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SZ virsuniu skaicius
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SZ2 = 6
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Daugiakampio krastines ilgis (m)
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R2 = 1.454
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Atstumas tarp sutartiniu zenklu centru (m)
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D2 = 4.173
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Ribos tvoros aukstis (m)
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H2 = 2.20
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Medziu aukstis (m)
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Hm = 2.94
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""")
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Objektu koordinates:""")
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objs = {
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12: np.array([564474.034+M, 6173175.426+F]),
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13: np.array([564505.240+C, 6173237.929+E]),
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14: np.array([564519.570+C, 6173255.007+F]),
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15: np.array([564615.010+A, 6173215.649+Z]),
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16: np.array([564627.375+E, 6173220.989+Z]),
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17: np.array([564627.105+N, 6173210.067+Z]),
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18: np.array([564607.740+C, 6173171.025+Z]),
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19: np.array([564558.331+B, 6173177.716+Z]),
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20: np.array([564546.236+M, 6173183.298+Z]),
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21: np.array([564558.601+N, 6173188.638+C]),
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22: np.array([564539.728+F, 6173230.148+E]),
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}
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for id, obj in objs.items():
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print("%d: (%.3f,%.3f)" % (id, obj[0], obj[1]))
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