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Victor Weisskopf was born on 19 September, 1908 in Vienna, Austria-Hungary, is an Austrian-born American theoretical physicist (1908–2002). Discover Victor Weisskopf's Biography, Age, Height, Physical Stats, Dating/Affairs, Family and career updates. Learn How rich is he in this year and how he spends money? Also learn how he earned most of networth at the age of 93 years old?

Popular As N/A
Occupation N/A
Age 93 years old
Zodiac Sign Virgo
Born 19 September 1908
Birthday 19 September
Birthplace Vienna, Austria-Hungary
Date of death 22 April, 2002
Died Place Newton, Massachusetts, U.S.
Nationality Hungary

We recommend you to check the complete list of Famous People born on 19 September. He is a member of famous with the age 93 years old group.

Victor Weisskopf Height, Weight & Measurements

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Victor Weisskopf Net Worth

His net worth has been growing significantly in 2023-2024. So, how much is Victor Weisskopf worth at the age of 93 years old? Victor Weisskopf’s income source is mostly from being a successful . He is from Hungary. We have estimated Victor Weisskopf's net worth, money, salary, income, and assets.

Net Worth in 2024 $1 Million - $5 Million
Salary in 2024 Under Review
Net Worth in 2023 Pending
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Timeline

1908

Victor Frederick "Viki" Weisskopf (also spelled Viktor; September 19, 1908 – April 22, 2002) was an Austrian-born American theoretical physicist.

He did postdoctoral work with Werner Heisenberg, Erwin Schrödinger, Wolfgang Pauli, and Niels Bohr.

During World War II he was Deputy Division Leader of the Theoretical Division of the Manhattan Project at Los Alamos, and he later campaigned against the proliferation of nuclear weapons.

1930

By the late 1930s, he realized that, as a Jew, he needed to get out of Europe.

Bohr helped him find a position in the United States.

In the 1930s and 1940s, "Viki", as everyone called him, made major contributions to the development of quantum theory, especially in the area of quantum electrodynamics.

One of his few regrets was that his insecurity about his mathematical abilities may have cost him a Nobel Prize when he did not publish results (which turned out to be correct) about what is now known as the Lamb shift.

Nevertheless, he was nominated for the Nobel Prize in Physics numerous times later in his career.

1931

Weisskopf was born in Vienna to Jewish parents and earned his doctorate in physics at the University of Göttingen in Germany in 1931.

His brilliance in physics led to work with the great physicists exploring the atom, especially Niels Bohr, who mentored Weisskopf at his institute in Copenhagen.

1937

From 1937 to 1943 he was a Professor of Physics at the University of Rochester.

There, he met graduate student Esther Conwell, and together they formulated the Conwell–Weisskopf theory, which describes the movement of electrons through semiconductors and led to a better understanding of integrated circuits, knowledge that became essential for modern computing.

After World War II, Weisskopf joined the physics faculty at MIT, ultimately becoming head of the department.

1956

In 1956, he became one of the founding members of the Physical Science Study Committee (PSSC), developing the curriculum for a revolutionary method of teaching physics at the high school level.

At MIT, he encouraged students to ask questions, and even in undergraduate physics courses, taught his students to think like physicists, not just to memorize the equations of physics.

He was a memorable teacher, and delighted in posing "Fermi questions" and then helping students to work out approximate answers.

For example, he would ask the maximum possible height of a mountain on the Earth, calculated from known basic physical constants.

It took him about half an hour to work through an explanation of his computations, with the end result being of the same order of magnitude as the known height of Mount Everest.

For an encore, he would quickly work out the analogous answers for Mars, and then Jupiter; when Mars Orbiter survey results later became available, they were consistent with his computed elevation.

For his finale, he would compute the energy released by dropping a bowling ball off the highest theoretical mountain on Jupiter.

Weisskopf was a co-founder and board member of the Union of Concerned Scientists.

Weisskopf was awarded the Max Planck Medal in 1956 and the Prix mondial Cino Del Duca in 1972, the National Medal of Science (1980), the Wolf Prize (1981) and the Public Welfare Medal from the National Academy of Sciences (1991).

Weisskopf was a member of the National Academy of Sciences and the American Philosophical Society.

1957

In class one day, speaking to junior physics majors (Spring, 1957): "There is no such thing as a stupid question."

Citing initial teacher–student interactions, Noam Chomsky attributes to Victor the educational maxim,

"It doesn't matter what we cover. It matters what you discover."

1960

He was president of the American Physical Society (1960–61) and the American Academy of Arts and Sciences (1976–1979).

1961

He served as director-general of CERN from 1961 to 1966.

1966

In 1966 a Festschrift was published in his honor.

1975

He was appointed by Pope Paul VI to the 70-member Pontifical Academy of Sciences in 1975, and in 1981 he led a team of four scientists sent by Pope John Paul II to talk to President Ronald Reagan about the need to prohibit the use of nuclear weapons.

In a joint statement "Preserving and Cherishing the Earth" with other noted scientists including Carl Sagan, it concluded that: "The historical record makes clear that religious teaching, example, and leadership are powerfully able to influence personal conduct and commitment ... Thus, there is a vital role for religion and science."

1989

His first wife, Ellen Tvede, died in 1989.

2002

Wiesskopf died on April 22, 2002, and was survived by his second wife Duscha, daughter of accidental Night of the Long Knives victim Willi Schmid.

There is a street, Route Weisskopf, named after Weisskopf at CERN, Geneva, Switzerland.

"Human existence is based upon two pillars: Compassion and knowledge. Compassion without knowledge is ineffective; knowledge without compassion is inhuman."