Replace CntrlComparison with LeafGasComparison
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using LeafWeb.Core.Utility;
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namespace LeafWeb.Core.Entities
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{
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/// <summary>
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/// First model prediction is calculated at each sampling point.
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/// Then model prediction is calculated at many selected levels of intercelluar CO2 partial pressure
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/// levels under three limitation states to enable plotting curves.The same structure is then repeated for
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/// each fitting of the same curve with different parameters to be estimated and with different curves. Note
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/// that some common information about a curve is repeated for each data point to make the structure of the
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/// file as regular as possible.
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/// </summary>
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public class LeafGasComparisonFittingInfo
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{
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/// <summary>
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/// the curve identifier, repeated for each point
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/// </summary>
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[ParseInfo(1)]
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public string CurveID { get; set; }
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/// <summary>
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/// whether or not the internal conductance (gi) is fitted for.
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/// 0 = not fitted and gi is either infinite or fixed at the value provided by the user.
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/// 1 = gi is estiamted, repeated for each point
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/// </summary>
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[ParseInfo(2, boolEncodedPosition: 1, alternateTitle: "FitRwp|Rch|ha?")] // formerly FitGi
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public bool FitRwp {get; set;}
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/// <summary>
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/// whether or not the chloroplastic CO2 partial pressure photocompensation point is
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/// fitted for. 0= not fitted, a prescribed value is used, repeated for each point
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/// </summary>
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[ParseInfo(4, boolEncodedPosition: 1, alternateTitle: "FitGamma*?")]
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public bool FitGammaStar {get; set; }
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/// <summary>
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/// intercellular CO2 partial pressure
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/// </summary>
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[ParseInfo(10, units:"Pa")]
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public double CO2i_obs { get; set; }
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/// <summary>
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/// chloroplastic CO2 partial pressure corresponding to the PCO2i of a point.
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/// PCO2c=PCO2i-AnetCal/internal conductance
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/// </summary>
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[ParseInfo(12, units:"Pa")]
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public double CO2c { get; set; }
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/// <summary>
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/// measured net assimilation rate
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/// </summary>
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[ParseInfo(13, units: "umol/m2/s")]
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public double Anet_obs { get; set; }
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/// <summary>
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/// 1 = point limited by rubisco
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/// 2 = point limited by RuBP regeneration
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/// 3 = point limited by TPU
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/// </summary>
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[ParseInfo(15, units:"1,2,3")]
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public int LimitState { get; set; }
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public virtual LeafGasComparison LeafGasComparison { get; set; }
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}
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}
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