Deductions
- complex unit has quality superclass ⇐ (complex unit has quality inequality), (inequality has quality superclass), (has quality is a transitive relation)
- complex unit has quality arity ⇐ (complex unit has quality inequality), (inequality has quality arity), (has quality is a transitive relation)
- complex unit has quality abstract entity ⇐ (complex unit has quality inequality), (inequality has quality abstract entity), (has quality is a transitive relation)
- complex unit has quality number of entities ⇐ (complex unit has quality inequality), (inequality has quality number of entities), (has quality is a transitive relation)
- complex unit has quality mathematical property ⇐ (complex unit has quality inequality), (inequality has quality mathematical property), (has quality is a transitive relation)
- complex unit has quality mathematical object ⇐ (complex unit has quality inequality), (inequality has quality mathematical object), (has quality is a transitive relation)
- complex unit has quality type of property ⇐ (complex unit has quality inequality), (inequality has quality type of property), (has quality is a transitive relation)
- complex unit has quality entity ⇐ (complex unit has quality inequality), (inequality has quality entity), (has quality is a transitive relation)
- complex unit has quality set ⇐ (complex unit has quality inequality), (inequality has quality set), (has quality is a transitive relation)
- complex unit has quality relation ⇐ (complex unit has quality inequality), (inequality has quality relation), (has quality is a transitive relation)
- complex unit has quality taxonomic rank ⇐ (complex unit has quality inequality), (inequality has quality taxonomic rank), (has quality is a transitive relation)
- complex unit has quality class ⇐ (complex unit has quality inequality), (inequality has quality class), (has quality is a transitive relation)
- complex unit has quality property ⇐ (complex unit has quality inequality), (inequality has quality property), (has quality is a transitive relation)
- complex unit has quality quality ⇐ (complex unit has quality inequality), (inequality has quality quality), (has quality is a transitive relation)
- complex unit has quality criterion ⇐ (complex unit has quality inequality), (inequality has quality criterion), (has quality is a transitive relation)
- complex unit has quality type ⇐ (complex unit has quality inequality), (inequality has quality type), (has quality is a transitive relation)
- complex unit has quality inequality ⇐ (triangle inequality is subclass of inequality), (complex unit has quality triangle inequality)
- complex unit has quality existence ⇐ (complex unit is subclass of complex number), (complex number has quality existence)
- complex unit has quality existence ⇐ (complex unit has quality theorem), (theorem has quality existence), (has quality is a transitive relation)
- complex unit has quality class ⇐ (complex unit has quality theorem), (theorem has quality class), (has quality is a transitive relation)
- complex unit has part complex number ⇐ (imaginary unit is a complex number), (complex unit has part imaginary unit)
- complex unit has part quaternion ⇐ (imaginary unit is a quaternion), (complex unit has part imaginary unit)
- complex unit is for example imaginary unit ⇐ (imaginary unit is a complex unit), (is a is inverse of is for example)
- complex unit has quality inequality ⇐ (complex unit has quality absolute value), (absolute value has quality inequality), (has quality is a transitive relation)
- complex unit has quality triangle inequality ⇐ (complex unit has quality absolute value), (absolute value has quality triangle inequality), (has quality is a transitive relation)
- complex unit has quality theorem ⇐ (complex unit has quality absolute value), (absolute value has quality theorem), (has quality is a transitive relation)
- imaginary unit is a complex unit ⇐ (-i is a complex unit), (-i is opposite of imaginary unit)
- complex unit has part imaginary unit ⇐ (complex unit is subclass of complex number), (complex number has part imaginary unit)
- complex unit has part mathematical constant ⇐ (complex unit is subclass of complex number), (complex number has part mathematical constant)
- complex unit has quality real-valued function ⇐ (complex unit is subclass of complex number), (complex number has quality real-valued function)
- complex unit has quality absolute value ⇐ (complex unit is subclass of complex number), (complex number has quality absolute value)
- complex unit is for example -i ⇐ (-i is a complex unit), (is a is inverse of is for example)