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52 | 52 |
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53 | 53 | import numpy as np |
54 | 54 |
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55 | | -from astropy.modeling.functional_models import (AiryDisk2D, ArcCosine1D, ArcSine1D, ArcTangent1D, |
56 | | - Box1D, Box2D, Const1D, Const2D, Cosine1D, Disk2D, |
57 | | - Exponential1D, Gaussian1D, Gaussian2D, |
58 | | - KingProjectedAnalytic1D, Linear1D, Logarithmic1D, |
59 | | - Lorentz1D, Moffat1D, Moffat2D, Planar2D, |
60 | | - RickerWavelet1D, RickerWavelet2D, Ring2D, Sersic1D, |
61 | | - Sersic2D, Sine1D, Tangent1D, Trapezoid1D, |
62 | | - TrapezoidDisk2D, Voigt1D) |
| 55 | +from astropy.modeling.functional_models import ( |
| 56 | + AiryDisk2D, ArcCosine1D, ArcSine1D, ArcTangent1D, Box1D, Box2D, Const1D, Const2D, Cosine1D, |
| 57 | + Disk2D, Exponential1D, Gaussian1D, Gaussian2D, KingProjectedAnalytic1D, Linear1D, Logarithmic1D, |
| 58 | + Lorentz1D, Moffat1D, Moffat2D, Planar2D, RickerWavelet1D, RickerWavelet2D, Ring2D, Sersic1D, |
| 59 | + Sersic2D, Sine1D, Tangent1D, Trapezoid1D, TrapezoidDisk2D, Voigt1D) |
63 | 60 | from astropy.modeling.physical_models import Drude1D, Plummer1D |
64 | 61 | from astropy.modeling.polynomial import Polynomial1D, Polynomial2D |
65 | | -from astropy.modeling.powerlaws import (BrokenPowerLaw1D, ExponentialCutoffPowerLaw1D, |
66 | | - LogParabola1D, PowerLaw1D, SmoothlyBrokenPowerLaw1D) |
| 62 | +from astropy.modeling.powerlaws import ( |
| 63 | + BrokenPowerLaw1D, ExponentialCutoffPowerLaw1D, LogParabola1D, PowerLaw1D, |
| 64 | + SmoothlyBrokenPowerLaw1D) |
67 | 65 |
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68 | 66 | # 1D Models |
69 | 67 | models_1D = { |
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