superimposable structures
सुपरिम्पोजेबल संरचनाएं
are superimposable
सुपरिम्पोजेबल होते हैं
superimposable data
सुपरिम्पोजेबल डेटा
being superimposable
सुपरिम्पोजेबल होना
superimposable image
सुपरिम्पोजेबल छवि
superimposable model
सुपरिम्पोजेबल मॉडल
superimposable result
सुपरिम्पोजेबल परिणाम
the two molecular structures are superimposable if they can be overlapped exactly.
if the two conformations are superimposable, they represent the same molecule.
the two structures are not superimposable due to the presence of a chiral center.
determine if the fischer projections are superimposable to assess enantiomeric relationship.
the mirror image is not always superimposable on the original structure.
if the rotated molecule is superimposable on the original, it's the same compound.
a molecule and its enantiomer are not superimposable; they are non-superimposable.
the key to determining superimposability lies in identifying chiral centers.
if the two structures are superimposable after rotation, they are isomers.
the concept of superimposable structures is fundamental to understanding stereochemistry.
even with rotations, some structures remain non-superimposable on each other.
superimposable structures
सुपरिम्पोजेबल संरचनाएं
are superimposable
सुपरिम्पोजेबल होते हैं
superimposable data
सुपरिम्पोजेबल डेटा
being superimposable
सुपरिम्पोजेबल होना
superimposable image
सुपरिम्पोजेबल छवि
superimposable model
सुपरिम्पोजेबल मॉडल
superimposable result
सुपरिम्पोजेबल परिणाम
the two molecular structures are superimposable if they can be overlapped exactly.
if the two conformations are superimposable, they represent the same molecule.
the two structures are not superimposable due to the presence of a chiral center.
determine if the fischer projections are superimposable to assess enantiomeric relationship.
the mirror image is not always superimposable on the original structure.
if the rotated molecule is superimposable on the original, it's the same compound.
a molecule and its enantiomer are not superimposable; they are non-superimposable.
the key to determining superimposability lies in identifying chiral centers.
if the two structures are superimposable after rotation, they are isomers.
the concept of superimposable structures is fundamental to understanding stereochemistry.
even with rotations, some structures remain non-superimposable on each other.
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