Compute the half-value coversed cosine.
The half-value coversed cosine is defined as
var hacovercos = require( '@stdlib/math/base/special/hacovercos' );
Computes the half-value coversed cosine (in radians).
var v = hacovercos( 0.0 );
// returns 0.5
v = hacovercos( 3.141592653589793/2.0 );
// returns 1.0
v = hacovercos( -3.141592653589793/6.0 );
// returns 0.25
var uniform = require( '@stdlib/random/array/uniform' );
var logEachMap = require( '@stdlib/console/log-each-map' );
var TWO_PI = require( '@stdlib/constants/float64/two-pi' );
var hacovercos = require( '@stdlib/math/base/special/hacovercos' );
var opts = {
'dtype': 'float64'
};
var x = uniform( 100, 0.0, TWO_PI, opts );
logEachMap( 'hacovercos(%0.4f) = %0.4f', x, hacovercos );
#include "stdlib/math/base/special/hacovercos.h"
Computes the half-value coversed cosine (in radians).
double out = stdlib_base_hacovercos( 0.0 );
// returns 0.5
out = stdlib_base_hacovercos( 3.141592653589793 / 2.0 );
// returns 1.0
The function accepts the following arguments:
- x:
[in] double
input value.
double stdlib_base_hacovercos( const double x );
#include "stdlib/math/base/special/hacovercos.h"
#include <stdio.h>
int main( void ) {
const double x[] = { 0.0, 0.523, 0.785, 1.047, 3.14 };
double y;
int i;
for ( i = 0; i < 5; i++ ) {
y = stdlib_base_hacovercos( x[ i ] );
printf( "hacovercos(%lf) = %lf\n", x[ i ], y );
}
}
@stdlib/math/base/special/hacoversin
: compute the half-value coversed sine.@stdlib/math/base/special/havercos
: compute the half-value versed cosine.