Starts With A Bang

A dense starfield, with various colored stars shimmering through a dark cloud-like formation, lies against a deep black background in the mysterious zone of avoidance.
The Universe is out there, waiting to be discovered

Our mission is to answer the biggest questions of all, scientifically.

What is the Universe made of? How did it become the way it is today? Where did everything come from? What is the ultimate fate of the cosmos?

For most of human history, these questions had no clear answers. Today, they do. Starts With a Bang, written by Dr. Ethan Siegel, explores what we know about the universe and how we came to know it, bringing the latest discoveries in cosmology and astrophysics directly to you.

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Ethan Siegel is an award-winning PhD astrophysicist and the author of four books, including The Grand Cosmic Story, published by National Geographic.

Full Profile
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Ethan Siegel

solar system model
A graphical representation illustrating the concept of the big bang and the subsequent expansion of the universe, depicted by a transition from a singular point of energy to a wide, grid-like spread of galaxies and celestial elements
On the largest of cosmic scales, the Universe is expanding. But it isn't all-or-nothing everywhere, as "collapse" is also part of the story.
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From the explosions themselves to their unique and vibrant colors, the fireworks displays we adore require quantum physics.
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The structure of our Solar System has been known for centuries. When we finally started finding exoplanets, they surprised everyone.
Einstein with his class of students in 1896
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The last infant stars are finishing their formation inside these pillars of gas. The evaporation of those columns is almost complete.
A series of sun positions during sunset over a landscape, with trees in the foreground and mountains in the background, creating a pattern of glowing points in the sky.
Sure, there's less daylight during winter than summer, as your hemisphere is tilted away from the Sun. But darkness goes deeper than that.
bounce ball
Our thermodynamic arrow of time explains why the entropy of any isolated system always increases. But it can't explain what we perceive.