学習環境
- Surface 3 (4G LTE)、Surface 3 タイプ カバー、Surface ペン(端末)
- Windows 10 Pro (OS)
- 数式入力ソフト(TeX, MathML): MathType
- MathML対応ブラウザ: Firefox、Safari
- MathML非対応ブラウザ(Internet Explorer, Microsoft Edge, Google Chrome...)用JavaScript Library: MathJax
- 参考書籍
ラング線形代数学(上)(S.ラング (著)、芹沢 正三 (翻訳)、ちくま学芸文庫)の1章(R^n におけるベクトル)、3(ベクトルのノルム)、練習問題3、4.を取り組んでみる。
コード(Emacs)
Python 3
#!/usr/bin/env python3 # -*- coding: utf-8 -*- from sympy import pprint, symbols, Matrix, pi print('3.') A = [(2, -1), (-1, 3), (2, -1, 5), (-1, -2, 3), (pi, 3, -1), (15, -2, 4)] B = [(-1, 1), (0, 4), (-1, 1, 1), (-1, 3, -4), (2 * pi, -3, 7), (pi, 3, -1)] for i, (A0, B0) in enumerate(zip(A, B), 1): print(f'{i}.') MA = Matrix(A0) MB = Matrix(B0) for X in [MA, MB, (MA.dot(MB) / MB.dot(MB)) * MB]: pprint(X.T) print() print() print('4.') for i, (A0, B0) in enumerate(zip(A, B), 1): print(f'{i}.') MA = Matrix(A0) MB = Matrix(B0) pprint(MA.dot(MB) / MA.dot(MA)) print()
入出力結果(Terminal, Jupyter(IPython))
$ ./sample3.py 3. 1. [2 -1] [-1 1] [3/2 -3/2] 2. [-1 3] [0 4] [0 3] 3. [2 -1 5] [-1 1 1] [-2/3 2/3 2/3] 4. [-1 -2 3] [-1 3 -4] ⎡17 -51 34⎤ ⎢── ──── ──⎥ ⎣26 26 13⎦ 5. [π 3 -1] [2⋅π -3 7] ⎡ ⎛ 2⎞ ⎛ 2⎞ ⎛ 2⎞⎤ ⎢2⋅π⋅⎝-16 + 2⋅π ⎠ -3⋅⎝-16 + 2⋅π ⎠ 7⋅⎝-16 + 2⋅π ⎠⎥ ⎢──────────────── ──────────────── ──────────────⎥ ⎢ 2 2 2 ⎥ ⎣ 4⋅π + 58 4⋅π + 58 4⋅π + 58 ⎦ 6. [15 -2 4] [π 3 -1] ⎡π⋅(-10 + 15⋅π) 3⋅(-10 + 15⋅π) -(-10 + 15⋅π) ⎤ ⎢────────────── ────────────── ──────────────⎥ ⎢ 2 2 2 ⎥ ⎣ π + 10 π + 10 π + 10 ⎦ 4. 1. -3/5 2. 6/5 3. 1/15 4. -17 ──── 14 5. 2 -16 + 2⋅π ────────── 2 π + 10 6. 2 3⋅π - ── + ─── 49 49 $
HTML5
<div id="graph0"></div> <pre id="output0"></pre> <label for="r0">r = </label> <input id="r0" type="number" min="0" value="0.5"> <label for="dx">dx = </label> <input id="dx" type="number" min="0" step="0.0001" value="0.001"> <br> <label for="x1">x1 = </label> <input id="x1" type="number" value="-5"> <label for="x2">x2 = </label> <input id="x2" type="number" value="5"> <br> <label for="y1">y1 = </label> <input id="y1" type="number" value="-5"> <label for="y2">y2 = </label> <input id="y2" type="number" value="5"> <button id="draw0">draw</button> <button id="clear0">clear</button> <script type="text/javascript" src="https://cdnjs.cloudflare.com/ajax/libs/d3/4.2.6/d3.min.js" integrity="sha256-5idA201uSwHAROtCops7codXJ0vja+6wbBrZdQ6ETQc=" crossorigin="anonymous"></script> <script src="sample3.js"></script>
JavaScript
let div0 = document.querySelector('#graph0'), pre0 = document.querySelector('#output0'), width = 600, height = 600, padding = 50, btn0 = document.querySelector('#draw0'), btn1 = document.querySelector('#clear0'), input_r = document.querySelector('#r0'), input_dx = document.querySelector('#dx'), input_x1 = document.querySelector('#x1'), input_x2 = document.querySelector('#x2'), input_y1 = document.querySelector('#y1'), input_y2 = document.querySelector('#y2'), inputs = [input_r, input_dx, input_x1, input_x2, input_y1, input_y2], p = (x) => pre0.textContent += x + '\n', range = (start, end, step=1) => { let res = []; for (let i = start; i < end; i += step) { res.push(i); } return res; }; let draw = () => { pre0.textContent = ''; let r = parseFloat(input_r.value), dx = parseFloat(input_dx.value), x1 = parseFloat(input_x1.value), x2 = parseFloat(input_x2.value), y1 = parseFloat(input_y1.value), y2 = parseFloat(input_y2.value); if (r === 0 || dx === 0 || x1 > x2 || y1 > y2) { return; } let points = [], lines = [[0, 0, 2, -1, 'red'], [0, 0, -1, 1, 'green'], [0, 0, -1, 3, 'blue'], [0, 0, 0, 4, 'orange']], fns = [], fns1 = [], fns2 = []; fns .forEach((o) => { let [f, color] = o; for (let x = x1; x <= x2; x += dx) { let y = f(x); points.push([x, y, color]); } }); fns2 .forEach((o) => { let [f, color] = o; for (let x = x1; x <= x2; x += dx0) { let g = f(x); lines.push([x1, g(x1), x2, g(x2), color]); } }); let xscale = d3.scaleLinear() .domain([x1, x2]) .range([padding, width - padding]); let yscale = d3.scaleLinear() .domain([y1, y2]) .range([height - padding, padding]); let xaxis = d3.axisBottom().scale(xscale); let yaxis = d3.axisLeft().scale(yscale); div0.innerHTML = ''; let svg = d3.select('#graph0') .append('svg') .attr('width', width) .attr('height', height); svg.selectAll('line') .data([[x1, 0, x2, 0], [0, y1, 0, y2]].concat(lines)) .enter() .append('line') .attr('x1', (d) => xscale(d[0])) .attr('y1', (d) => yscale(d[1])) .attr('x2', (d) => xscale(d[2])) .attr('y2', (d) => yscale(d[3])) .attr('stroke', (d) => d[4] || 'black'); svg.selectAll('circle') .data(points) .enter() .append('circle') .attr('cx', (d) => xscale(d[0])) .attr('cy', (d) => yscale(d[1])) .attr('r', r) .attr('fill', (d) => d[2] || 'green'); svg.append('g') .attr('transform', `translate(0, ${height - padding})`) .call(xaxis); svg.append('g') .attr('transform', `translate(${padding}, 0)`) .call(yaxis); [fns, fns1, fns2].forEach((fs) => p(fs.join('\n'))); }; inputs.forEach((input) => input.onchange = draw); btn0.onclick = draw; btn1.onclick = () => pre0.textContent = ''; draw();
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