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Quantum, But Friendly · Sección 1/4: How Small Is Small?

Toca Siguiente (o usa las teclas de flecha) para avanzar idea por idea. No hay temporizador: el cuestionario de 5 preguntas te espera con calma al final. La ← en la parte superior te permite salir cuando quieras; el progreso se guarda.

Welcome! Let's shrink.

🍰🍰 🍰🍰 …millions more cuts… an atom! cut… cut… cut…

Take a chocolate cake. Cut it in half. Cut that half in half. Keep going… how long until you can't cut anymore?

Way, WAY longer than you'd think. You'd pass crumb, then speck, then dust. You'd still have millions of cuts to go before you hit the bottom.

Everything is made of pieces much smaller than you'd expect.

Dato curioso: If an apple were blown up to the size of Earth, its atoms would be about the size of the original apple.

The staircase of small

🧍🐜🦠 🧬 youant cellmoleculeatom each step down is a whole new world

Here's the zoom-out: you → an ant → a hair's width → a cell → a molecule → an atom. Each step down is a whole new world.

Atoms are so small that a single glass of water holds more molecules than there are glasses of water in all the oceans.

Inside an atom

nucleus electron electron photon (a piece of light)

Atoms aren't the bottom floor. Inside: a tiny, heavy center (the nucleus) with even tinier electrons buzzing around it.

And light comes in tiny pieces too, they're called photons. Electrons and photons are the main characters of this whole site.

So what does 'quantum' mean?

normal world: a ramp any height allowed quantum world: stairs steps only, no in-between ✗ can't stand here

'Quantum' literally means the smallest possible chunk of something.

Down at atom-size, energy doesn't flow smoothly like a ramp: it comes in steps, like a staircase. You can stand on step 1 or step 2, but never in between. That's the 'quantum' in quantum physics.

Quantum = the smallest chunk nature allows.

Dato curioso: The word comes from Latin 'quantus', 'how much?'

Why you should care

Down at that size, the normal rules stop working. Things can be in two states at once, act like waves, and stay weirdly linked across distances.

Those strange rules aren't just fun facts. They're being turned into new kinds of computers, uncrackable codes, and better medicines. That's the rest of this course.

Tiny things play by different rules, and those rules are useful.

Mini quiz: How Small Is Small?

5 preguntas: generadas de nuevo desde el banco en cada intento. Nota mínima 60%. Intentos ilimitados.

Leer el texto completo de la lección

1. Welcome! Let's shrink.

Take a chocolate cake. Cut it in half. Cut that half in half. Keep going… how long until you can't cut anymore?

Way, WAY longer than you'd think. You'd pass crumb, then speck, then dust. You'd still have millions of cuts to go before you hit the bottom.

Everything is made of pieces much smaller than you'd expect.

If an apple were blown up to the size of Earth, its atoms would be about the size of the original apple.

2. The staircase of small

Here's the zoom-out: you → an ant → a hair's width → a cell → a molecule → an atom. Each step down is a whole new world.

Atoms are so small that a single glass of water holds more molecules than there are glasses of water in all the oceans.

3. Inside an atom

Atoms aren't the bottom floor. Inside: a tiny, heavy center (the nucleus) with even tinier electrons buzzing around it.

And light comes in tiny pieces too, they're called photons. Electrons and photons are the main characters of this whole site.

4. So what does 'quantum' mean?

'Quantum' literally means the smallest possible chunk of something.

Down at atom-size, energy doesn't flow smoothly like a ramp: it comes in steps, like a staircase. You can stand on step 1 or step 2, but never in between. That's the 'quantum' in quantum physics.

Quantum = the smallest chunk nature allows.

The word comes from Latin 'quantus', 'how much?'

5. Why you should care

Down at that size, the normal rules stop working. Things can be in two states at once, act like waves, and stay weirdly linked across distances.

Those strange rules aren't just fun facts. They're being turned into new kinds of computers, uncrackable codes, and better medicines. That's the rest of this course.

Tiny things play by different rules, and those rules are useful.

Quantum, But Friendly

How Small Is Small?The Spinning CoinBit vs QubitSpooky Friends Prueba final

Inside a Quantum Computer

The Golden ChandelierHow It ThinksGood At, Bad At Prueba final

Quantum in the Real World

Quantum You Already OwnThe Great Quantum RaceFollowing the Quantum Money Prueba final

La Academia

Quantum Computing FoundationsQuantum Circuits, Algorithms, and IndustryFault-Tolerant Quantum Computing and Technical Strategy El currículo completo

Respuestas rápidas

GlosarioFAQ Recursos adicionalesPregunta a Quantum Noticias cuánticas