@stdlib/math-strided-special-ssqrt
Compute the principal square root for each element in a single-precision floating-point strided array.
Compute the principal square root for each element in a single-precision floating-point strided array.
Compute the reciprocal square root for each element in a double-precision floating-point strided array according to a strided mask array.
Compute the principal square root for each element in a double-precision floating-point strided array according to a strided mask array.
Compute the reciprocal square root for each element in a double-precision floating-point strided array.
Compute the principal square root for each element in a double-precision floating-point strided array.
Compute the reciprocal square root for each element in a strided array.
Compute the cube root of each element in a single-precision floating-point strided array.
Compute the cube root of each element in a strided array.
Compute the cube root of each element retrieved from an input strided array via a callback function.
Compute the cube root of each element in a double-precision floating-point strided array.
Compute the cube root of each element retrieved from a double-precision floating-point strided array via a callback function.
Compute the cube root for each element in a double-precision floating-point strided array according to a strided mask array.
Create an iterator which computes the cube root of each iterated value.
Create an iterator which computes the principal square root of each iterated value.
Create an iterator which computes `sqrt(1+x) - 1` for each iterated value.
Create an iterator which computes the reciprocal (inverse) square root of each iterated value.
Compute the principal square root of a double-precision floating-point number.
Compute sqrt(1 + x) - 1.
Compute the principal square root of a single-precision floating-point number.
Compute the principal square root of the product of π and a positive double-precision floating-point number.