The Mystery of Matter (2024)

The Leyden papyrus – the earliest known document of chemistry – describes a way to make metals that look like gold. The Mystery of Matter (2)Hernán Cortés was one of many European explorers who ransacked the world in search of gold. The Mystery of Matter (3)Isaac Newton was one of several great scientists captivated by alchemy. The Mystery of Matter (4)When they weren’t trying to make gold, alchemists made all sorts of salable products, including pigments and perfumes. The Mystery of Matter (5)Alchemists developed many instruments later used in chemistry, including bellows and flasks. The Mystery of Matter (6)One night in 1669, German alchemist Hennig Brandt, searching for a way to make gold, instead discovered phosphorus – one of several chemical elements discovered by the alchemists.

The Origins of Chemistry

Tucked away in a vault in a Dutch museum is the earliest known document about the science of chemistry – an ancient scroll called the Leyden Papyrus. Written in Egypt about 1,700 years ago and found among the wrappings of a mummy in the early 19th century, it includes dozens of metallurgical recipes. One of the most famous, says historian Lawrence Principe of Johns Hopkins University, is for the “water of sulfur,” a liquid that could make silver mimic the appearance of gold. So right from its earliest days, the science of chemistry was tied up with the human fascination with gold.

Of all the metals found on earth, none has so captured the human imagination. Too soft for making tools, gold has been prized instead for its beauty and unfading luster. For thousands of years, explorers and conquerors crossed oceans, continents, deserts and mountains in pursuit of the yellow metal, sometimes dispatching whole civilizations in the process. Small wonder this precious substance, a source of wealth and power for those who had it, drew the attention of Egypt's ancient metallurgists.

The Birth and Spread of Alchemy

But around the time the Leyden papyrus was written, an important change took place. What had begun as an attempt to create imitations of gold turned into a quest to make real gold from lesser metals. It was the beginning of alchemy. The quest to make gold would occupy thousands of workers for the next 1,500 years, making alchemy the longest laboratory tradition in human history.

After its birth in ancient Alexandria, alchemy was embraced by Islamic scholars and became an Arabic science. In fact, the very word “alchemy” reveals these origins – “al” is the Arabic word for “the.” From northern Africa, alchemy spread throughout the Islamic world, including Spain. Beginning in the 12th century, it spread from Spain to the rest of Europe, reaching its peak in the 16th and 17th centuries, when it commanded the attention of scientific greats like Robert Boyle and Isaac Newton.

Turning One Element into Another

The long and fruitless quest to turn lead into gold seems silly to many people today – a colossal waste of time and effort. Thanks to modern science we now know that matter comes in more than 100 varieties, neatly arrayed in the Periodic Table, and that most of these elements (all but the radioactive ones) are fixed and unchanging: Lead is lead, and gold is gold, and you can't turn one into the other. But it took many centuries for this concept of the chemical elements to evolve. The alchemists, Principe says, had a different theory of matter – one that made the “transmutation” of one element into another seem “absolutely reasonable from their point of view.”

While today we think of metals like gold and tin and lead as elements, the alchemists believed these metals were compounds, produced underground through the combination of simpler substances – a wet substance, which they called mercury, and a dry one, which they called sulfur.

By combining these simpler substances in the laboratory in just the right ratios, alchemists believed, they could turn base metals like lead into gold. But it was a laborious process requiring many steps. The better way, Principe says, was to use the shortcut known as the Philosophers’ Stone – “if only you could figure out how to make it.”

Chemistry’s Debt to Alchemy

While many people today think of alchemy as the misbegotten effort to turn lead into gold, it was actually much more than this. Alchemists made all sorts of materials for commerce, including medicines, pigments, metallic alloys, perfumes and cosmetics. In working with these materials, the alchemists learned an enormous amount about the nature of matter and how different materials could be isolated and combined. They handed this knowledge down to modern science.

Alchemists invented experimental techniques (distillation, for example) and laboratory tools (funnels, flasks, cupels, etc.) still used by chemists today. They were also the first to isolate certain metals we now know to be elements, including antimony, arsenic and zinc. There’s no better illustration of how alchemy contributed to scientific knowledge than the story of the discovery of phosphorus.

Phosphorus: An Accidental Discovery

One night in 1669, a German alchemist named Hennig Brandt was searching, as he did every night, for a way to make gold. For some time, Brandt had focused his research on urine. He was certain the "golden stream" held the key.

On this night, Brandt’s patience would at last be rewarded. He had boiled the urine down to a concentrated paste. Now he subjected it to intense heat. Suddenly, glowing fumes filled the vessel, giving off a powerful odor. Was this the legendary elixir that would turn lead into gold?

Alas, it was not. Brandt had stumbled on the element phosphorus. It was in just this way that many of the elements were discovered by alchemists and later investigators. Working with the substances of nature, they set out to make something useful or valuable ... but sometimes found knowledge instead.

Sound Bite: A Horrible-Smelling Liquid – Historian Lawrence Principe reveals the ancient recipe for a liquid called the “water of sulfur,” which could color metals gold.

Sound Bite: Prized for its Beauty – While gold is too soft to have many uses, Principe notes, it has captured the human imagination for centuries.

Sound Bite: Where Alchemy Begins – What began as an effort to make metals that could pass for gold turned into an effort to make real gold.

Sound Bite: The Philosophers’ Stone – The object of the alchemists’ quest was an elixir, prepared by an arduous and secret process, that could instantly turn lead into gold.

Sound Bite: Transmutation – The idea of turning one element into another, Principe notes, had a sound theoretical basis: The alchemists believed metals were compounds made by mixing a few more basic “principles” in different ratios.

Sound Bite: Union of Head and Hand – The alchemists weren’t just looking for gold, Principe explains. They were also making things for sale – and thinking hard about matter as they did so.

Sound Bite: Alchemy’s Legacy – In working with materials, alchemists developed many instruments and laboratory processes later handed down to chemistry – even the very idea of doing experiments.

Sound Bite: The Many Uses of Urine – In 1669, a German alchemist named Hennig Brandt decided the path to the Philosophers’ Stone started with human urine, which, as Principe explains, was one of the alchemists’ favorite materials.

Sound Bite: An Element that Glowed – While Brandt did not find the Philosophers’ Stone, Principe notes, he did discover an element with remarkable properties: phosphorus.

The Mystery of Matter (2024)

FAQs

Where can I watch Mystery of matter? ›

Watch The Mystery of Matter: Search for the Elements | Prime Video.

What happened in episode 2 of the mystery of matter? ›

Episode 2: “Unruly Elements (1859-1902)”airs Wed., Oct. 7 at 11 p.m. - Dmitri Mendeleev invents the Periodic Table, bringing order to the elements. This order is shattered when Marie Curie discovers radioactivity, revealing that elements can change identities — and atoms contain undiscovered parts.

What is the mystery of matter into the atom documentary all about? ›

The PBS documentary, in three-episodes of one hour each, was directed by Stephen Lyons and Muffie Meyer. The series, which took ten years to make, describes the search for the basic chemical elements that form matter by focusing on the lives and times of seven scientific visionaries.

What is the movie about Mendeleev? ›

The Mystery of Matter: Search for the Elements.

What was the new instrument called Unruly elements? ›

NARR: Davy had found a powerful new tool for the discovery of elements: the battery. Davy watches the bubbles generated by electricity in water. HUMPHRY DAVY VO Nothing promotes the advancement of knowledge so much as a new instrument.

Is unsolved mysteries on peaco*ck? ›

By signing up for Peaco*ck, you will have access to Unsolved Mysteries as well as other movies and TV shows. Select a plan to get started or to upgrade your existing account. You can also visit peaco*cktv.com/account to change your existing plan at any time.

Who was the ground shaking female scientist? ›

Inge Lehmann was a Danish seismologist who discovered Earth has a solid inner core. Between 1929 and 1939, she compared various data sets from earthquakes to conclusively prove what was at the Earth's core.

Why was Marie Curie an unlikely work-changing chemist? ›

Final answer: Marie Curie was an unlikely world-changing chemist because of her sacrifices, dedication, and pioneering work in the field of radioactivity. Her groundbreaking discoveries, such as the elements polonium and radium, led to her winning Nobel Prizes in both physics and chemistry.

How many elements were known at this time: the mystery of matter, unruly elements? ›

The Russian chemist D'mitri Ivanovich Mendeleev studied the chemical properties of all the 63 elements and their compounds known at that time.

What did James Chadwick know about the atom? ›

James Chadwick is most notable for his discovery of the neutron in the atom and its intrinsic contribution to the Atomic Theory. While experimenting with the other scientists, Chadwick uncovered a neutrally charged subatomic particle that was neither positively charged nor negatively charged.

What did Rutherford win a Nobel Prize for? ›

The Nobel Prize in Chemistry for this year (1908) has been awarded by the Royal Academy of Sciences to Ernest Rutherford, Professor of Physics at the Victoria University, Manchester (England), for his researches concerning the disintegration of elements and the chemistry of radioactive substances.

What is Moseley's staircase based on? ›

Film Clip: Moseley's Staircase – To Moseley's surprise, when he lays out the spectra of consecutive elements, they rise in frequency, step by step, forming a striking pattern that comes to be known as “Moseley's staircase.” The pattern reveals an amazingly simple relationship between an element's X-ray spectrum and its ...

Did Mendeleev have kids? ›

Mendeleev had six children from his two marriages: a son and a daughter from his first marriage – Vladimir and Olga; and four children from his second marriage – Liubov, Ivan, Vasily and Maria. He loved them all dearly. Mendeleev's children were well educated and they all left a mark in history even if it was small.

Did Mendeleev dream the periodic table? ›

He later reported, 'I saw in a dream a table where all the elements fell into place as required. Awakening, 1 immediately wrote it down on a piece of paper. Only in one place did a correction later seem necessary. ' As a result of this dream, the periodic table of the elements was created."

Did Mendeleev get married? ›

Mendeleev was married twice. He wed Feozva Nikitchna Leshcheva in 1862, but the couple divorced after 19 years. He married Anna Ivanova Popova the year after the divorce, in 1882. He had a total of six children from these marriages.

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