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81 lines
1.9 KiB
JavaScript
81 lines
1.9 KiB
JavaScript
'use strict';
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var bigArcCsc = require('../../util/bignumber').arcsin_arccsc;
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var HALF_PI = 1.5707963267948966;
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function factory (type, config, load, typed) {
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var collection = load(require('../../type/collection'));
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var complexAsin = load(require('./asin')).signatures['Complex'];
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/**
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* Calculate the inverse cosecant of a value.
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*
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* For matrices, the function is evaluated element wise.
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*
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* Syntax:
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*
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* math.acsc(x)
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*
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* Examples:
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*
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* math.acsc(0.5); // returns Number 0.5235987755982989
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* math.acsc(math.csc(1.5)); // returns Number ~1.5
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*
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* math.acsc(2); // returns Complex 1.5707963267948966 -1.3169578969248166 i
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*
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* See also:
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*
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* csc, asin, asec
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*
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* @param {Number | Boolean | Complex | Array | Matrix | null} x Function input
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* @return {Number | Complex | Array | Matrix} The arc cosecant of x
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*/
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var acsc = typed('acsc', {
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'number': function (x) {
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if (x <= -1 || x >= 1) {
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return Math.asin(1 / x);
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}
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return _complexAcsc(new type.Complex(x, 0));
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},
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'Complex': _complexAcsc,
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'BigNumber': function (x) {
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return bigArcCsc(x, type.BigNumber, true);
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},
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'Array | Matrix': function (x) {
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return collection.deepMap(x, acsc);
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}
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});
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/**
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* Calculate acsc for a complex value
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* @param {Complex} x
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* @returns {Complex}
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* @private
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*/
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function _complexAcsc (x) {
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if (x.re == 0 && x.im == 0) {
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return new type.Complex(HALF_PI, Infinity);
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}
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var den = x.re*x.re + x.im*x.im;
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x = (den != 0)
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? new type.Complex(
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x.re = x.re / den,
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x.im = -x.im / den)
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: new type.Complex(
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(x.re != 0) ? (x.re / 0) : 0,
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(x.im != 0) ? -(x.im / 0) : 0);
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return complexAsin(x);
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}
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return acsc;
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}
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exports.name = 'acsc';
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exports.factory = factory;
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