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fun main() { | |
} | |
typealias Function = (x: Double) -> Double | |
typealias Rule = (f: Function, x: Double, h: Double) -> Double | |
fun leftRectangle(f: Function, x: Double, h: Double) = f(x) | |
fun midRectangle(f: Function, x: Double, h: Double) = f(x + h / 2.0) | |
fun rightRectangle(f: Function, x: Double, h: Double) = f(x + h) | |
fun trapezium(f: Function, x: Double, h: Double) = (f(x) + f(x + h)) / 2.0 | |
fun simpson(f: Function, x: Double, h: Double) = (f(x) + 4.0 * f(x + h / 2.0) + f(x + h)) / 6.0 | |
fun integral( | |
from: Double, | |
to: Double, | |
columns: Int, | |
rule: Rule, | |
f: (Double) -> Double | |
): Double { | |
val h = (to - from) / columns | |
var sum = 0.0 | |
for (i in 0 until columns) { | |
val x = from + i * h | |
sum += rule(f, x, h) | |
} | |
val integral = sum * h | |
println(integral) | |
return integral | |
} |
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import org.junit.jupiter.api.Assertions.* | |
import org.junit.jupiter.api.Test | |
import kotlin.math.ln | |
import org.junit.jupiter.api.Assertions.assertEquals as equals | |
internal class MainKtTest { | |
private val n = 10000 | |
private val delta = 0.01 | |
@Test | |
fun integralShould() { | |
val methods = mapOf( | |
"LeftRectangle" to ::leftRectangle, | |
"MidRectangle" to ::midRectangle, | |
"RightRectangle" to ::rightRectangle, | |
"Trapezium" to ::trapezium, | |
"Simpson" to ::simpson | |
) | |
for ((name, method) in methods) { | |
println(name) | |
val powerOfTwo: (Double) -> Double = { it * it } | |
equals(1.0 / 3.0, integral(0.0, 1.0, n, method, powerOfTwo), delta) | |
equals(8.0 / 3.0, integral(0.0, 2.0, n, method, powerOfTwo), delta) | |
equals(9.0, integral(0.0, 3.0, n, method, powerOfTwo), delta) | |
val oneOver: (Double) -> Double = { 1.0 / it } | |
equals(ln(100.0), integral(1.0, 100.0, n, method, oneOver), delta) | |
equals(ln(20.0 / 3.0), integral(6.0, 40.0, n, method, oneOver), delta) | |
} | |
} | |
} |
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import std/sugar | |
import std/strformat | |
import std/math | |
type | |
F = proc(x: float): float | |
Rule = proc(f: F, x, h: float): float | |
Experiment = ref object | |
name: string | |
f: F | |
start, to, answer: float | |
rule: Rule | |
proc integral( | |
start, to: float, | |
cols: int, | |
rule: Rule, | |
f: F): float = | |
let h = (to - start) / cols.toFloat() | |
var sum = 0.0 | |
for i in 0..<cols: | |
let x = start + i.toFloat() * h | |
sum += rule(f, x, h) | |
sum * h | |
proc leftRectangle(f: F, x, h: float): float = f(x) | |
proc rightRectangle(f: F, x, h: float): float = f(x + h) | |
proc midRectangle(f: F, x, h: float): float = f(x + h / 2.0) | |
proc trapezium(f: F, x, h: float): float = (f(x) + f(x + h)) / 2.0 | |
proc simpson(f: F, x, h: float): float = (f(x) + 4.0 * f(x + h / 2.0) + f(x + h)) / 6.0 | |
proc main() = | |
const | |
cols = 100 | |
powerOfTwo = (x: float) => x * x | |
oneOver = (x: float) => 1.0 / x | |
echo fmt"Columns: {cols}" | |
for ex in @[ | |
Experiment(name: "Left-Rectangle x^2", f: powerOfTwo, start: 0.0, to: 1.0, answer: 1.0/3.0, rule: leftRectangle), | |
Experiment(name: "Simpson, x^2", f: powerOfTwo, start: 0.0, to: 1.0, answer: 1.0/3.0, rule: simpson), | |
Experiment(name: "Left-Rectangle 1/x", f: oneOver, start: 1.0, to: 100.0, answer: ln(100.0), rule: leftRectangle), | |
Experiment(name: "Simpson 1/x", f: oneOver, start: 1.0, to: 100.0, answer: ln(100.0), rule: simpson) | |
]: | |
stdout.write ex.name & ": " | |
echo fmt"{integral(ex.start, ex.to, cols, ex.rule, ex.f)} == {ex.answer} ?" | |
main() |
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