more drawing
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@ -116,18 +116,6 @@ for i, v in enumerate(vertices[1:]):
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v.coords = Point(prev.coords.acadx + dx, prev.coords.acady + dy)
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"""
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Kelio A-03 plotis = 17.401 + A =
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Kelio A-05 plotis = 13.705 + B =
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Kelio A-08 plotis = 29.006 + C =
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Griovio G-11 plotis = 14.776 + N =
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"""
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KA03_plotis = Dec('17.401') + A
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KA05_plotis = Dec('13.705') + B
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KA08_plotis = Dec('29.006') + C
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G11_plotis = Dec('14.776') + N
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# 9-kampio krastine D1
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D1 = Dec('174.667') + C
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# Daugiakampio pasukimo kampas (K1)
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@ -144,6 +132,7 @@ if __name__ == '__main__':
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print("angle sum %.4f, theoretical angle sum %d" % \
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(angle_sum, theoretical_angle_sum))
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"""
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for i, v in enumerate(vertices):
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nxt = vertices[0 if i == len(vertices) - 1 else i+1]
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@ -151,11 +140,12 @@ if __name__ == '__main__':
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draw = "@%.3f<%.4f" % (v.len, normalize(90 - v.dirang))
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print("%5s: %19s acadcoords:(%.3f,%.3f)" % \
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(pts, draw, v.coords.acadx, v.coords.acady))
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"""
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print("""
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Kelio A-03 plotis = 17.401 + A = %.3f""" % KA03_plotis + """
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Kelio A-05 plotis = 13.705 + B = %.3f""" % KA05_plotis + """
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Kelio A-08 plotis = 29.006 + C = %.3f""" % KA08_plotis + """
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Kelio A-03 plotis = 17.401 + A = %.3f""" % A03_plotis + """
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Kelio A-05 plotis = 13.705 + B = %.3f""" % A05_plotis + """
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Kelio A-08 plotis = 29.006 + C = %.3f""" % A08_plotis + """
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Griovio G-11 plotis = 14.776 + N = %.3f""" % G11_plotis + """
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Prognozuojamo uzliejimo zona, tai taisyklingas 9-kampis
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@ -166,4 +156,16 @@ if __name__ == '__main__':
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Tikroji uzliejimo zona, tai taisyklingas apskritimas, kurio centras TURI SUTAPTI su daugiakampio centru.
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Atstumas iki tikrosios uzliejimo zonos (A1) (0.001 tikslumu)
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A1 = %.3f""" % A1 + """
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A-05:
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x(l) = %.3f""" % (A05_plotis*L3/(L2+L3)) + """
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x(r) = %.3f""" % (A05_plotis*L2/(L2+L3)) + """
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A-08:
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x(l) = %.3f""" % (A08_plotis*(L7+L8+L9)/(L7+L8+L9+L6+L5+L4)) + """
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x(r) = %.3f""" % (A08_plotis*(L6+L5+L4)/(L7+L8+L9+L6+L5+L4)) + """
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G-11:
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x(l) = %.3f""" % (G11_plotis*(L12+L13)/(L10+L11+L12+L13)) + """
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x(r) = %.3f""" % (G11_plotis*(L10+L11)/(L10+L11+L12+L13)) + """
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""")
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