Ülesanne:
Lainete levimine, difraktsioon, interferents
Interaktiivne lainete labor
Tere tulemast interaktiivsesse lainelaborisse! Siin saad uurida kolme olulist lainenähtust: levimist, difraktsiooni ja interferentsi.
Vali eksperiment:
📡 Levimine
🌊 Difraktsioon
⚡ Interferents
📊 Laineprofiil
Lainete levimine
Lained levivad allikast igas suunas konstantse kiirusega.
🌐 Lainete levimine
Lained edastavad energiat ilma ainet edasi kandmata. Nad levivad allikast kontsentriliste ringidena.
Levimiskiirus sõltub keskkonnast
Amplituud määrab laine intensiivsuse
Sagedus jääb levimisel konstantseks
🌊 Lainete difraktsioon
Difraktsioon on lainete võime painduda ümber takistuste ja läbida kitsaid pilusid.
Rohkem märgatav, kui takistus on lainepikkusega sarnases mõõdus
Pilu taga levib laine lehvikuna
Selgitab heli levimist nurga taha
⚡ Lainete interferents
Interferents on kahe koherentse allika lainete liitumine (Youngi kakspilukatse).
Heledad ribad – konstruktiivne interferents
Tumedad ribad – destruktiivne interferents
Ribade vahekaugus sõltub lainepikkusest
📊 Laineprofiil
Külgvaade näitab laine kuju – ruumis liikuvat sinusoidi.
Amplituud – maksimaalne hälve tasakaaluasendist
Lainepikkus sõltub sagedusest ja kiirusest
Mida kõrgem sagedus, seda lühem lainepikkus
🎯 Praktilised rakendused
🎵 Akustika
Kontserdisaalide projekteerimisel arvestatakse helilainete interferentsi
📡 Raadioside
Difraktsioon võimaldab raadiolainetel painduda ümber mägede ja hoonete
🔬 Optika
Valguse interferentsi kasutatakse laserites ja holograafias
🌊 Okeanoloogia
Merelainete uurimine aitab prognoosida ilma
0.5) {
ctx.globalAlpha = intensity * (amplitude / 40);
ctx.beginPath();
ctx.moveTo(x, 0);
ctx.lineTo(x, canvas.height);
ctx.stroke();
}
}
ctx.globalAlpha = 1;
// Дифрагированные волны справа от щели
const slitSource = { x: barrierX, y: slitY };
for (let angle = -Math.PI/2; angle <= Math.PI/2; angle += Math.PI/20) {
const maxDist = canvas.width - barrierX;
for (let dist = 0; dist < maxDist; dist += 3) {
const x = slitSource.x + dist * Math.cos(angle);
const y = slitSource.y + dist * Math.sin(angle);
if (x >= barrierX && x < canvas.width && y >= 0 && y < canvas.height) {
const wavePhase = (dist / waveLength - time * frequency) * 2 * Math.PI;
const waveValue = Math.sin(wavePhase);
const distanceFactor = Math.max(0, 1 - dist / maxDist);
const angleFactor = Math.cos(angle) * Math.cos(angle);
if (waveValue > 0.3) {
const intensity = waveValue * distanceFactor * angleFactor * (amplitude / 40);
if (intensity > 0.1) {
ctx.fillStyle = 'rgba(255, 152, 0, ' + intensity + ')';
ctx.fillRect(x-1, y-1, 2, 2);
}
}
}
}
}
// Подписи (отодвинули от краев)
ctx.fillStyle = '#fff';
ctx.font = '12px Arial';
ctx.textAlign = 'center';
ctx.fillText("Pilu", barrierX, Math.max(30, 20));
ctx.fillText("Difraktsioon", Math.min(barrierX + 80, canvas.width - 50), Math.max(slitY - 40, 30));
}
// Рисование интерференции от двух щелей с экраном
function drawInterference() {
ctx.clearRect(0, 0, canvas.width, canvas.height);
const barrierX = canvas.width * 0.25;
const screenX = canvas.width * 0.6; // Экран ближе к щелям
const slitDistance = 50;
const centerY = canvas.height / 2;
const slit1Y = centerY - slitDistance/2;
const slit2Y = centerY + slitDistance/2;
const slitWidth = 6;
const waveSpeed = 50;
const waveLength = waveSpeed / frequency;
// Рисуем барьер с двумя щелями
ctx.fillStyle = '#444';
ctx.fillRect(barrierX - 3, 0, 6, slit1Y - slitWidth/2);
ctx.fillRect(barrierX - 3, slit1Y + slitWidth/2, 6, slit2Y - slitWidth/2 - (slit1Y + slitWidth/2));
ctx.fillRect(barrierX - 3, slit2Y + slitWidth/2, 6, canvas.height - (slit2Y + slitWidth/2));
// Падающие волны слева
ctx.strokeStyle = 'rgba(33, 150, 243, 0.6)';
ctx.lineWidth = 1;
for (let x = 0; x < barrierX; x += waveLength/3) {
const wavePhase = (x / waveLength - time * frequency) * 2 * Math.PI;
const intensity = Math.sin(wavePhase);
if (intensity > 0.5) {
ctx.globalAlpha = intensity * 0.5;
ctx.beginPath();
ctx.moveTo(x, 0);
ctx.lineTo(x, canvas.height);
ctx.stroke();
}
}
ctx.globalAlpha = 1;
// Источники в щелях
ctx.fillStyle = '#ff4444';
ctx.beginPath();
ctx.arc(barrierX, slit1Y, 3, 0, 2 * Math.PI);
ctx.fill();
ctx.beginPath();
ctx.arc(barrierX, slit2Y, 3, 0, 2 * Math.PI);
ctx.fill();
// Анимированные волны от источников
ctx.strokeStyle = 'rgba(76, 175, 80, 0.3)';
ctx.lineWidth = 1;
for (let i = 0; i < 5; i++) {
const radius = (time * 30 + i * 25) % 120; // Уменьшили радиус
if (radius > 5) {
const alpha = Math.max(0, 0.3 - radius / 400);
ctx.globalAlpha = alpha;
// От первой щели
ctx.beginPath();
ctx.arc(barrierX, slit1Y, radius, 0, 2 * Math.PI);
ctx.stroke();
// От второй щели
ctx.beginPath();
ctx.arc(barrierX, slit2Y, radius, 0, 2 * Math.PI);
ctx.stroke();
}
}
ctx.globalAlpha = 1;
// Экран справа
ctx.fillStyle = '#222';
ctx.fillRect(screenX - 2, 0, 4, canvas.height);
// Статичная интерференционная картина на экране
const pattern = createInterferencePattern();
pattern.forEach(stripe => {
const { y, color, alpha, width } = stripe;
ctx.fillStyle = 'rgba(' + color[0] + ', ' + color[1] + ', ' + color[2] + ', ' + alpha + ')';
ctx.fillRect(screenX + 2, y, width, 1);
});
// Подписи (размещены подальше от краев)
ctx.fillStyle = '#fff';
ctx.font = '12px Arial';
ctx.textAlign = 'center';
// Подписи щелей
const labelX = Math.max(barrierX - 25, 40);
ctx.fillText("Pilu 1", labelX, Math.max(slit1Y - 10, 20));
ctx.fillText("Pilu 2", labelX, Math.min(slit2Y + 20, canvas.height - 10));
// Подпись экрана
ctx.fillText("Ekraan", screenX, Math.max(canvas.height - 15, canvas.height - 10));
// Подпись интерференции (размещена безопасно)
const interferenceX = Math.min(screenX + 30, canvas.width - 60);
const interferenceY = Math.max(35, 25);
ctx.font = '11px Arial';
ctx.fillText("Interferents", interferenceX, interferenceY);
}
// Рисование бокового вида волны
function drawSideView() {
ctx.clearRect(0, 0, canvas.width, canvas.height);
const centerY = canvas.height / 2;
const waveLength = 100 / frequency;
const maxAmplitude = Math.min(amplitude, canvas.height / 3);
// Ось X
ctx.strokeStyle = '#666';
ctx.lineWidth = 1;
ctx.beginPath();
ctx.moveTo(0, centerY);
ctx.lineTo(canvas.width, centerY);
ctx.stroke();
// Разметка оси
ctx.fillStyle = '#888';
ctx.font = '10px Arial';
ctx.textAlign = 'center';
for (let x = 0; x < canvas.width; x += waveLength) {
if (x > 20 && x < canvas.width - 20) { // Отступ от краев
ctx.beginPath();
ctx.moveTo(x, centerY - 5);
ctx.lineTo(x, centerY + 5);
ctx.stroke();
ctx.fillText('λ', x, centerY + 15);
}
}
// Волна
ctx.strokeStyle = '#4CAF50';
ctx.lineWidth = 3;
ctx.beginPath();
for (let x = 0; x < canvas.width; x += 2) {
const phase = (x / waveLength + time * frequency * 2) * 2 * Math.PI;
const y = centerY - maxAmplitude * Math.sin(phase);
if (x === 0) {
ctx.moveTo(x, y);
} else {
ctx.lineTo(x, y);
}
}
ctx.stroke();
// Стрелки амплитуды
ctx.strokeStyle = '#ff4444';
ctx.lineWidth = 2;
const arrowX = canvas.width * 0.25;
// Стрелка вверх
ctx.beginPath();
ctx.moveTo(arrowX, centerY);
ctx.lineTo(arrowX, centerY - maxAmplitude);
ctx.stroke();
// Стрелка вниз
ctx.beginPath();
ctx.moveTo(arrowX, centerY);
ctx.lineTo(arrowX, centerY + maxAmplitude);
ctx.stroke();
// Подписи (размещены с отступом от краев)
ctx.fillStyle = '#fff';
ctx.font = '14px Arial';
ctx.textAlign = 'left';
const labelY = Math.max(centerY - maxAmplitude - 10, 25);
ctx.fillText("Amplituud", Math.max(arrowX - 20, 20), labelY);
ctx.fillText('A = ' + amplitude, Math.max(arrowX - 20, 20), Math.max(labelY - 15, 15));
ctx.textAlign = 'center';
ctx.fillText("Levimissuund \u2192", canvas.width/2, Math.max(40, 30));
ctx.fillText("Sagedus = " + frequency + " Hz", canvas.width/2, Math.min(canvas.height - 10, canvas.height - 20));
}
// Анимация
function animate() {
if (!isAnimating) return;
switch(currentExperiment) {
case 'propagation':
drawPropagation();
break;
case 'diffraction':
drawDiffraction();
break;
case 'interference':
drawInterference();
break;
case 'sideview':
drawSideView();
break;
}
time += 0.02;
animationFrame = requestAnimationFrame(animate);
}
// Управление экспериментами
window.switchExperiment = function(experiment) {
const buttons = document.querySelectorAll('.experiment-btn');
const cards = document.querySelectorAll('.theory-card');
const info = document.getElementById('experimentInfo');
buttons.forEach(btn => btn.classList.remove('active'));
cards.forEach(card => card.style.display = 'none');
currentExperiment = experiment;
time = 0;
const btnIds = {
'propagation': 'wavePropBtn',
'diffraction': 'diffractionBtn',
'interference': 'interferenceBtn',
'sideview': 'sideViewBtn'
};
const activeBtn = document.getElementById(btnIds[experiment]);
const activeCard = document.getElementById(experiment + 'Card');
if (activeBtn) activeBtn.classList.add('active');
if (activeCard) activeCard.style.display = 'block';
if (info) {
const titles = {
'propagation': "Lainete levimine",
'diffraction': "Lainete difraktsioon",
'interference': "Lainete interferents",
'sideview': "Laineprofiil"
};
const descriptions = {
'propagation': "Lained levivad allikast kontsentriliste ringidena.",
'diffraction': "Laine l\u00e4bib pilu ja hajub lehvikuna.",
'interference': "Kaks pilu tekitavad ekraanile staatilise interferentsiv\u00f5re.",
'sideview': "Sinusoidaalne laine liigub ruumis."
};
info.innerHTML = '
' + titles[experiment] + ' ' + descriptions[experiment] + '
';
}
};
// Обновление параметров волн
window.updateWaveParams = function() {
const freqSlider = document.getElementById('frequencySlider');
const ampSlider = document.getElementById('amplitudeSlider');
const freqValue = document.getElementById('frequencyValue');
const ampValue = document.getElementById('amplitudeValue');
if (freqSlider && freqValue) {
frequency = parseFloat(freqSlider.value);
freqValue.textContent = frequency + " Hz";
}
if (ampSlider && ampValue) {
amplitude = parseFloat(ampSlider.value);
ampValue.textContent = amplitude;
}
// Пересчитать интерференционную картину при изменении параметров
interferencePattern = null;
};
// Управление анимацией
window.toggleWaveAnimation = function() {
const btn = document.getElementById('playPauseWaveBtn');
if (!btn) return;
if (isAnimating) {
isAnimating = false;
cancelAnimationFrame(animationFrame);
btn.textContent = "\u25b6\ufe0f M\u00e4ngi";
} else {
isAnimating = true;
animate();
btn.textContent = "\u23f8\ufe0f Paus";
}
};
window.resetWaveAnimation = function() {
time = 0;
if (!isAnimating) {
switch(currentExperiment) {
case 'propagation':
drawPropagation();
break;
case 'diffraction':
drawDiffraction();
break;
case 'interference':
drawInterference();
break;
case 'sideview':
drawSideView();
break;
}
}
};
// Запуск анимации
animate();
})()"
style="display: none;">