JuliaComplexF64MatrixTranscendentalFunctionsΒΆ
jla64.spad line 1031 [edit on github]
Linear Algebra functions computed using Julia and its algorithms.
- acos: JuliaComplexF64Matrix -> JuliaComplexF64Matrix
acos(m)
computes the inverse matrix cosine ofm
.
- acosd: JuliaComplexF64Matrix -> JuliaComplexF64Matrix
acosd(m)
computes the inverse matrix cosine ofm
. Output is in degrees.
- acosh: JuliaComplexF64Matrix -> JuliaComplexF64Matrix
acosh(m)
computes the inverse matrix hyperbolic cosine ofm
.
- acot: JuliaComplexF64Matrix -> JuliaComplexF64Matrix
acot(m)
computes the inverse matrix cotangent ofm
.
- acotd: JuliaComplexF64Matrix -> JuliaComplexF64Matrix
acotd(m)
computes the inverse matrix cotangent ofm
. Output is in degrees.
- acoth: JuliaComplexF64Matrix -> JuliaComplexF64Matrix
acoth(m)
computes the inverse matrix hyperbolic cotangent ofm
.
- acsc: JuliaComplexF64Matrix -> JuliaComplexF64Matrix
acsc(m)
computes the inverse matrix cosecant ofm
.
- acscd: JuliaComplexF64Matrix -> JuliaComplexF64Matrix
acscd(m)
computes the inverse matrix cosecant ofm
. Output is in degrees.
- acsch: JuliaComplexF64Matrix -> JuliaComplexF64Matrix
acsch(m)
computes the inverse matrix hyperbolic cosecant ofm
.
- asec: JuliaComplexF64Matrix -> JuliaComplexF64Matrix
asec(m)
computes the inverse matrix secant ofm
.
- asecd: JuliaComplexF64Matrix -> JuliaComplexF64Matrix
asecd(m)
computes the inverse matrix secant ofm
. Output is in degrees.
- asech: JuliaComplexF64Matrix -> JuliaComplexF64Matrix
asech(m)
computes the inverse matrix hyperbolic secant ofm
.
- asin: JuliaComplexF64Matrix -> JuliaComplexF64Matrix
asin(m)
computes the inverse matrix sine ofm
.
- asind: JuliaComplexF64Matrix -> JuliaComplexF64Matrix
asind(m)
computes the inverse matrix sine ofm
. Output is in degrees.
- asinh: JuliaComplexF64Matrix -> JuliaComplexF64Matrix
asinh(m)
computes the inverse matrix hyperbolic sine ofm
.
- atan: JuliaComplexF64Matrix -> JuliaComplexF64Matrix
atan(m)
computes the inverse matrix tangent ofm
.
- atand: JuliaComplexF64Matrix -> JuliaComplexF64Matrix
atand(m)
computes the inverse matrix tangent ofm
. Output is in degrees.
- atanh: JuliaComplexF64Matrix -> JuliaComplexF64Matrix
atanh(m)
computes the inverse matrix hyperbolic tangent ofm
.
- cis: JuliaComplexF64Matrix -> JuliaComplexF64Matrix
cis(m)
returns exp(%i*m) computed efficiently.
- cos: JuliaComplexF64Matrix -> JuliaComplexF64Matrix
cos(m)
computes the matrix cosine ofm
.
- cosd: JuliaComplexF64Matrix -> JuliaComplexF64Matrix
cosd(m)
computes the matrix cosine ofm
, wherem
is in degrees.
- cosh: JuliaComplexF64Matrix -> JuliaComplexF64Matrix
cosh(m)
computes the matrix hyperbolic cosine ofm
.
- cot: JuliaComplexF64Matrix -> JuliaComplexF64Matrix
cot(m)
computes the matrix cotangent ofm
.
- coth: JuliaComplexF64Matrix -> JuliaComplexF64Matrix
coth(m)
computes the matrix hyperbolic cotangent ofm
.
- csc: JuliaComplexF64Matrix -> JuliaComplexF64Matrix
csc(m)
computes the matrix cosecant ofm
.
- csch: JuliaComplexF64Matrix -> JuliaComplexF64Matrix
csch(m)
computes the matrix hyperbolic cosecant ofm
.
- sec: JuliaComplexF64Matrix -> JuliaComplexF64Matrix
sec(m)
computes the matrix secant ofm
.
- sech: JuliaComplexF64Matrix -> JuliaComplexF64Matrix
sech(m)
computes the matrix hyperbolic secant ofm
.
- sin: JuliaComplexF64Matrix -> JuliaComplexF64Matrix
sin(m)
computes the matrix sine ofm
.
- sind: JuliaComplexF64Matrix -> JuliaComplexF64Matrix
sind(m)
computes the matrix sine ofm
, wherem
is in degrees.
- sinh: JuliaComplexF64Matrix -> JuliaComplexF64Matrix
sinh(m)
computes the matrix hyperbolic sine ofm
.
- tan: JuliaComplexF64Matrix -> JuliaComplexF64Matrix
tan(m)
computes the matrix tangent ofm
.
- tand: JuliaComplexF64Matrix -> JuliaComplexF64Matrix
tand(m)
computes the matrix tangent ofm
, wherem
is in degrees.
- tanh: JuliaComplexF64Matrix -> JuliaComplexF64Matrix
tanh(m)
computes the matrix hyperbolic tangent ofm
.