2017-09-14 19:11:35 +02:00
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// Copyright 2017 The Go Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style
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// license that can be found in the LICENSE file.
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package math_test
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import (
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"fmt"
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"math"
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)
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2018-01-09 02:23:08 +01:00
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func ExampleAcos() {
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fmt.Printf("%.2f", math.Acos(1))
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// Output: 0.00
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}
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func ExampleAcosh() {
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fmt.Printf("%.2f", math.Acosh(1))
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// Output: 0.00
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}
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func ExampleAsin() {
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fmt.Printf("%.2f", math.Asin(0))
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// Output: 0.00
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}
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func ExampleAsinh() {
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fmt.Printf("%.2f", math.Asinh(0))
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// Output: 0.00
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}
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func ExampleAtan() {
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fmt.Printf("%.2f", math.Atan(0))
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// Output: 0.00
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}
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func ExampleAtan2() {
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fmt.Printf("%.2f", math.Atan2(0, 0))
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// Output: 0.00
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}
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func ExampleAtanh() {
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fmt.Printf("%.2f", math.Atanh(0))
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// Output: 0.00
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}
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func ExampleCos() {
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fmt.Printf("%.2f", math.Cos(math.Pi/2))
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// Output: 0.00
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}
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func ExampleCosh() {
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fmt.Printf("%.2f", math.Cosh(0))
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// Output: 1.00
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}
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func ExampleSin() {
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fmt.Printf("%.2f", math.Sin(math.Pi))
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// Output: 0.00
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}
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func ExampleSincos() {
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sin, cos := math.Sincos(0)
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fmt.Printf("%.2f, %.2f", sin, cos)
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// Output: 0.00, 1.00
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}
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func ExampleSinh() {
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fmt.Printf("%.2f", math.Sinh(0))
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// Output: 0.00
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}
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func ExampleTan() {
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fmt.Printf("%.2f", math.Tan(0))
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// Output: 0.00
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}
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func ExampleTanh() {
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fmt.Printf("%.2f", math.Tanh(0))
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// Output: 0.00
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}
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2017-09-14 19:11:35 +02:00
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func ExampleSqrt() {
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const (
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a = 3
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b = 4
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)
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c := math.Sqrt(a*a + b*b)
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fmt.Printf("%.1f", c)
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// Output: 5.0
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}
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2018-09-24 23:46:21 +02:00
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func ExampleCeil() {
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c := math.Ceil(1.49)
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fmt.Printf("%.1f", c)
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// Output: 2.0
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}
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func ExampleFloor() {
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c := math.Floor(1.51)
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fmt.Printf("%.1f", c)
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// Output: 1.0
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}
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func ExamplePow() {
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c := math.Pow(2, 3)
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fmt.Printf("%.1f", c)
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// Output: 8.0
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}
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func ExamplePow10() {
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c := math.Pow10(2)
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fmt.Printf("%.1f", c)
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// Output: 100.0
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}
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2019-01-18 20:04:36 +01:00
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func ExampleRound() {
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p := math.Round(10.5)
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fmt.Printf("%.1f\n", p)
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n := math.Round(-10.5)
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fmt.Printf("%.1f\n", n)
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// Output:
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// 11.0
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// -11.0
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}
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func ExampleRoundToEven() {
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u := math.RoundToEven(11.5)
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fmt.Printf("%.1f\n", u)
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d := math.RoundToEven(12.5)
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fmt.Printf("%.1f\n", d)
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// Output:
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// 12.0
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// 12.0
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}
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