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Max von Laue

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Max von Laue was a smart man.

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He studied how light works. He won a big prize for his work. This prize is called a Nobel Prize. He helped many other people in science. Do you like to learn new things?

42 words

Max von Laue was a great scientist.

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He studied how special light works. He used light to see inside crystals. This helped him win a Nobel Prize.
Interferenz-Erscheinungen bei Röntgenstrahlen Tafel II Fig. 5.jpg
Interferenz-Erscheinungen bei Röntgenstrahlen Tafel II Fig. 5.jpg

Max was a good friend to Albert Einstein. He also helped other scientists during hard times. He did not like the bad leaders in his land. He stood up for what was right.

Laue, Max Theodor Felix von – Relativitätsprinzip, 1913 – BEIC 6467296.jpg
Laue, Max Theodor Felix von – Relativitätsprinzip, 1913 – BEIC 6467296.jpg

His gold prize was even hidden in acid! This kept it safe from bad people. The gold was used to make a new prize later. Max was a very brave man.

104 words

Max von Laue was a famous German physicist.

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He won the Nobel Prize in 1914. He won it for a big discovery. He found a way to use X-rays to see crystals. X-rays are a type of light. When X-rays hit a crystal, they bend and make patterns. This is called diffraction.
Interferenz-Erscheinungen bei Röntgenstrahlen Tafel II Fig. 5.jpg
Interferenz-Erscheinungen bei Röntgenstrahlen Tafel II Fig. 5.jpg
This helped scientists understand the tiny parts of a crystal.

Max was a close friend of Albert Einstein. He helped people understand Einstein's ideas about relativity. Max also worked on how things like magnets and electricity work. He studied superconductivity, which is when some materials let electricity flow easily.

Laue, Max Theodor Felix von – Relativitätsprinzip, 1913 – BEIC 6467296.jpg
Laue, Max Theodor Felix von – Relativitätsprinzip, 1913 – BEIC 6467296.jpg

Max lived through a very hard time in Germany. He did not like the Nazi leaders. He stood up for what was right. He helped Jewish scientists find new homes. He even spoke out against unfair rules. During the war, his gold Nobel Prize was hidden in acid. This kept the gold safe from the Nazis. Later, the gold was used to make a new medal.

Grave of Max von Laue at Stadtfriedhof Göttingen 2017 01.jpg
Grave of Max von Laue at Stadtfriedhof Göttingen 2017 01.jpg

190 words

Max von Laue was a famous German physicist who changed how we see the tiny world.

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He is best known for discovering how X-rays interact with crystals. X-rays are a special kind of light with very short wavelengths. When these rays pass through a crystal, they bend in a specific way. This bending creates a pattern of spots that scientists can study. This process is called diffraction, which means light spreading out after hitting an object.
Interferenz-Erscheinungen bei Röntgenstrahlen Tafel II Fig. 5.jpg
Interferenz-Erscheinungen bei Röntgenstrahlen Tafel II Fig. 5.jpg
This discovery allowed people to understand the hidden structures inside solid objects.

His work followed a very interesting path of discovery. In early 1912, a student named Paul Peter Ewald was talking to Laue about his thesis. Ewald was thinking about using much smaller wavelengths than normal visible light. He wondered what would happen if he used something much smaller. Laue and his team, including Paul Knipping and Walter Friedrich, tested this idea. They used X-rays to see if they would create patterns in a crystal. In June 1912, it was reported that they had successfully achieved this. This amazing result led to Laue winning the Nobel Prize in Physics in 1914.

Laue had a very busy and important career in many cities. He was born on October 9, 1879, in Pfaffendorf, Germany. He studied at several places like the University of Strassburg and the University of Berlin. At Berlin, he studied under the famous Max Planck. He later became a professor at the University of Zurich in 1912. By 1914, he was a professor at the University of Frankfurt. He spent many years teaching at the University of Berlin from 1919 to 1943. He also worked on making vacuum tubes for wireless communication in 1916.

Throughout his life, Laue was involved with many great scientific minds. He was a close friend of Albert Einstein. Their friendship helped many people accept Einstein's theory of relativity. Laue also studied superconductivity, which is when a material lets electricity flow without any resistance. He worked with Walther Meissner to learn about how magnetic fields act in these materials.

Laue, Max Theodor Felix von – Relativitätsprinzip, 1913 – BEIC 6467296.jpg
Laue, Max Theodor Felix von – Relativitätsprinzip, 1913 – BEIC 6467296.jpg
He even wrote a book about the history of physics. He was a leader who helped organize German science for forty years.

Laue also showed great courage during a very difficult time in history. He strongly opposed the Nazi party and their unfair rules. He believed that science should not be about race or religion. He secretly helped many scientists find safety in other countries. During World War II, his gold Nobel Prize medal was actually hidden in acid. A chemist named George de Hevesy dissolved the gold to keep it safe from the Nazis. After the war, the gold was recovered and used to make a new medal.

Grave of Max von Laue at Stadtfriedhof Göttingen 2017 01.jpg
Grave of Max von Laue at Stadtfriedhof Göttingen 2017 01.jpg
Laue's life shows how science and bravery can go together.

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Max von Laue was a highly influential German physicist. He is most famous for discovering the diffraction of X-rays by crystals.

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This discovery changed how scientists study the structure of matter. Laue also made major contributions to several other fields. These included optics, quantum theory, superconductivity, and the theory of relativity. Beyond his research, he held many administrative roles. These positions helped guide German scientific development for forty years. He was a man who believed that science has no race or religion.

Laue's most famous discovery happened through a specific scientific process called X-ray diffraction. In early 1912, a student named Paul Peter Ewald discussed his doctoral thesis with Laue. Ewald was studying wavelengths in the visible light spectrum. These wavelengths were much larger than the spacing between atoms in a crystal model. Ewald wondered what would happen if much smaller wavelengths were used. To test this, Laue, Paul Knipping, and Walter Friedrich used X-rays. X-rays have much shorter wavelengths than visible light. When these X-rays pass through a crystal, they interact with the atomic structure. This causes the rays to bend and create specific interference patterns.

Interferenz-Erscheinungen bei Röntgenstrahlen Tafel II Fig. 5.jpg
Interferenz-Erscheinungen bei Röntgenstrahlen Tafel II Fig. 5.jpg
This successful experiment was reported to the Physical Society of Göttingen in June 1912. It earned Laue the Nobel Prize in Physics in 1914.

Laue's career involved many different types of physics research. He studied superconductivity, which is a state where a material conducts electricity without resistance. He worked with Walther Meissner to study the Meissner effect. This effect occurs when a weak magnetic field decays to zero inside a superconductor. Laue also published 12 papers and a book on this topic. He worked with the brothers Fritz and Heinz London on related research. Additionally, Laue contributed to the development of vacuum tubes. In 1916, he worked on these at the University of Würzburg for military telephony and wireless communication. He also wrote two volumes of a book regarding the theory of relativity.

Laue's educational journey took him through several major European universities. He was born on October 9, 1879, in Pfaffendorf, Germany. After passing his Abitur, he studied mathematics, physics, and chemistry at the University of Strassburg. He then attended the University of Göttingen, where he was influenced by Woldemar Voigt and Max Abraham. In 1902, he spent a semester at the University of Munich before moving to the University of Berlin. At Berlin, he studied under Max Planck. Planck had delivered his famous paper on quantum theory in December 1900. Laue earned his Ph.D. in 1903 with a thesis on interference phenomena in plane-parallel plates. He later completed his habilitation under Arnold Sommerfeld in 1906.

Throughout his life, Laue was connected to many of the most important scientists of his era. He was a close friend of Albert Einstein. This friendship helped the scientific community accept and develop the theory of relativity. In Berlin, he was part of a group of notable scientists including Walther Nernst and Fritz Haber. He also served as a trustee and later deputy director of the Kaiser Wilhelm Institute for Physics. This institute was founded in 1914 with Einstein as its director. Laue's students included Leó Szilárd and Fritz London. He even wrote a book titled Geschichte der Physik, which covers the history of physics. This book was eventually translated into seven other languages.

Laue also showed great personal courage during the rise of the Nazi party. He was a strong objector to Nazism and the movement known as Deutsche Physik. Proponents of Deutsche Physik tried to label the theory of relativity as "Jewish physics." Laue found this idea ridiculous. He and his friend Otto Hahn secretly helped persecuted scientists emigrate from Germany. He also openly opposed antisemitism, even when it led to government reprimands. For example, he attended a memorial for Fritz Haber in 1935. The government had forbidden professors from attending such events. His bravery and principles remained steady even during very difficult political times.

During World War II, Laue's Nobel Prize underwent a strange journey to stay safe. When Germany invaded Denmark, a chemist named George de Hevesy took action. To prevent the Nazis from seizing the gold, de Hevesy dissolved the gold medals of Laue and James Franck in aqua regia. This is a highly corrosive mixture of acids. The solution was hidden on a shelf in a laboratory at the Niels Bohr Institute. After the war, de Hevesy recovered the gold from the acid. The Nobel Society then used that original gold to recast the medals.

Grave of Max von Laue at Stadtfriedhof Göttingen 2017 01.jpg
Grave of Max von Laue at Stadtfriedhof Göttingen 2017 01.jpg
After the war, Laue helped reorganize German science. He lived until April 24, 1960.
Laue, Max Theodor Felix von – Relativitätsprinzip, 1913 – BEIC 6467296.jpg
Laue, Max Theodor Felix von – Relativitätsprinzip, 1913 – BEIC 6467296.jpg

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