A man named Henri found a secret. 
A scientist named Henri found a secret. 

Henri Becquerel was a French scientist. 
Becquerel set up a test. He put photographic plates under uranium salts. He also placed coins on top of the plates. Then he wrapped everything in thick black paper. He put the pile in the bright sun. He thought the sun would make the uranium glow. 
But then the weather changed. The days became dark and cloudy. Becquerel left his plates in a dark drawer. He expected the plates to stay clear. Instead, the plates showed shadows of the coins! The uranium was giving off invisible rays all by itself. This is called radioactivity.
This discovery was very important. It helped other scientists find new elements. It also helped doctors treat cancer with radiotherapy. Becquerel won the Nobel Prize in Physics in 1903. Today, we use the name Becquerel to measure radioactivity. There are even craters on the Moon and Mars named after him.
Henri Becquerel was a famous French physicist. 
In 1896, Becquerel made a very important discovery. He wanted to see if glowing materials could emit X-rays. He used uranium salts for his experiments. 
Something unexpected happened during his experiment. The weather turned dark and cloudy for a few days. Becquerel left his prepared plates inside a dark cabinet. He expected the plates to show almost nothing when he developed them. However, the shadows of the objects were still very clear. 
Becquerel shared this big news with the world in 1896. He published seven different papers about his work that year. His research helped other scientists find new elements. Marie and Pierre Curie later discovered polonium and radium. Becquerel also studied how radiation moves in a magnetic field. He found there were three types of radioactivity. These were negative, positive, and electrically neutral. In 1903, he won the Nobel Prize in Physics for his discovery.
His work still helps people today. He realized radioactivity could be used for medicine. This led to radiotherapy, which is a way to treat cancer. 
Antoine Henri Becquerel was a French experimental physicist who changed our understanding of matter. Born in Paris on December 15, 1852, he came from a family deeply rooted in science. His grandfather, Antoine César Becquerel, and his father, Edmond Becquerel, were both notable physicists. Even his son, Jean Becquerel, followed this path. Becquerel studied at the Lycée Louis-le-Grand and later at the École polytechnique and École des ponts et chaussées. He eventually earned his D.Sc. from the Sorbonne in 1888. His early research focused on how crystals absorb and polarize light. 
In early 1896, Becquerel began investigating a connection between light and X-rays. Wilhelm Röntgen had recently discovered X-rays, which are invisible rays that can penetrate black paper. Becquerel was interested in phosphorescence, which is the emission of light by an object after it has been exposed to light of another color. He wondered if phosphorescent materials might emit X-ray-like radiation when hit by bright sunlight. To test this, he used various materials, including uranium salts. He set up a specific experiment to observe this process. 
Becquerel's experimental method involved layering several items together. He placed photographic plates under coins or other small metal objects. He then wrapped these layers in thick, opaque black paper. On top of the paper, he placed slabs of phosphorescent uranium salts. He left this entire setup in bright sunlight for several hours. He hoped the sunlight would excite the uranium to emit penetrating rays. This would create shadows of the objects on the photographic plates.
In late February 1896, an unexpected event occurred. The weather became dark and overcast for two days. Because there was no sunlight, Becquerel left his prepared plates in a dark cabinet. He expected the plates to show very weak images when he finally developed them. However, when he developed the plates on March 1, he saw something astonishing. The shadows of the objects were just as distinct and intense as if they had been in the sun. 
This discovery revealed a phenomenon called spontaneous radioactivity. Becquerel realized that the penetrating radiation came from the uranium itself. The material did not need an external energy source, like sunlight, to emit these rays. This was a major shift in scientific thought. He arrived at this explanation after further experiments with non-phosphorescent uranium salts. His son, Jean, and the scientist William Crookes both witnessed this discovery. This moment is a famous example of serendipity, where chance favors a prepared mind. 
Becquerel's work opened the door to intense research into radioactive elements. He published seven papers on the subject in 1896 alone. His findings helped lead to the discovery of new elements like thorium, polonium, and radium. Marie and Pierre Curie performed much of this follow-up research. Becquerel also studied how radiation behaves in a magnetic field. He discovered three distinct classes of radioactivity: negative, positive, and electrically neutral. These classifications were based on how the substances deflected in the magnetic field.
In 1903, Becquerel shared the Nobel Prize in Physics with Marie and Pierre Curie. This award recognized his extraordinary service in discovering spontaneous radioactivity. Beyond pure physics, his work had massive implications for medicine. He noticed that radioactivity could cause physical effects, such as skin burns. This observation eventually led to the development of radiotherapy, a method used to treat cancer. 
Today, Becquerel's legacy is preserved in many ways. The SI unit used to measure radioactivity is named the becquerel. His name is also found in space, as there are craters on both the Moon and Mars named after him. Additionally, a minor planet and a uranium mineral called becquerelite carry his name. Becquerel died on August 25, 1908, at the age of 55. While he died of a heart attack, reports noted he had serious skin burns from handling radioactive materials. His life remains a cornerstone of modern nuclear science.
🖼️ Images & Media (2)
More to explore
✨ What else?
Related topics you might enjoy
🪜 Step back
Simpler topics to build understanding
What is Nepedia?
A free, ad-free encyclopedia for children. Every article is written at five reading levels, so the same page works for a five-year-old and a fifteen-year-old — use the level switcher above to see this one change. No account needed to read.