def CalculateMolLogP2(mol: Chem.Mol) -> float: """Cacluate MolLogP^2. From Wildman and G. M. Crippen JCICS _39_ 868-873 (1999). """ res = Crippen._pyMolLogP(mol) return round(res * res, 3)
def CalculateMolLogP(mol): """ ################################################################# Cacluation of LogP value based on Crippen method ---->LogP Usage: result=CalculateMolLogP(mol) Input: mol is a molecule object. Output: result is a numeric value. ################################################################# """ return round(Crippen._pyMolLogP(mol), 3)
def CalculateMolLogP(mol): """ ################################################################# Cacluation of LogP value based on Crippen method ---->LogP Usage: result=CalculateMolLogP(mol) Input: mol is a molecule object. Output: result is a numeric value. ################################################################# """ return round(Crippen._pyMolLogP(mol),3)
def CalculateMolLogP(mol: Chem.Mol) -> float: """Cacluate of MolLogP. From Wildman and G. M. Crippen JCICS _39_ 868-873 (1999). """ return round(Crippen._pyMolLogP(mol), 3)