Overload List
| # | Signature | Description |
|---|---|---|
| 1 | TMtxVec *InvCbrt() const; | The inverse of cube root 1/(v)^1/3. |
| 2 | TMtxVec *InvCbrt(int Index, int Len) const; | Calculate the inverse of cube root for calling object elements [Index]..[Index+Len-1] in-place. |
| 3 | TMtxVec *InvCbrt(TMtxVec *X) const; | Calculate the inverse of cube root for all X elements. |
| 4 | TMtxVec *InvCbrt(TMtxVec *X, int XIndex, int Index, int Len) const; | Calculate the inverse of cube root for X elements [XIndex]..[XIndex+Len-1]. |
Overload 1: TMtxVec *InvCbrt() const;
The inverse of cube root 1/(v)^1/3.
Calculate the inverse cube root (1/(element)^(1/3)) of all calling object elements in-place.
Overload 2: TMtxVec *InvCbrt(int Index, int Len) const;
Calculate the inverse of cube root for calling object elements [Index]..[Index+Len-1] in-place.
| # | Name | Type | Description |
|---|---|---|---|
| 1 | Index | int | |
| 2 | Len | int |
An exception is raised if Vector::ConditionCheck is True and array borders are overrun.
Overload 3: TMtxVec *InvCbrt(TMtxVec *X) const;
Calculate the inverse of cube root for all X elements.
| # | Name | Type | Description |
|---|---|---|---|
| 1 | X | TMtxVec * |
Store the results in the calling object. Size and Vector::Complex properties of the calling vector are set implicitly to match the X object.
Overload 4: TMtxVec *InvCbrt(TMtxVec *X, int XIndex, int Index, int Len) const;
Calculate the inverse of cube root for X elements [XIndex]..[XIndex+Len-1].
| # | Name | Type | Description |
|---|---|---|---|
| 1 | X | TMtxVec * | |
| 2 | XIndex | int | |
| 3 | Index | int | |
| 4 | Len | int |
Store the results in the calling object elements [Index]..[Index+Len-1]. Size and Vector::Complex properties of the calling object must be set explicitly. An exception is raised if Vector::ConditionCheck is True and array borders are overrun.