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Herman Goldstine (Herman Heine Goldstine) was born on 13 September, 1913 in Chicago, Illinois, U.S., is an American mathematician (1913–2004). Discover Herman Goldstine'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 90 years old?

Popular As Herman Heine Goldstine
Occupation N/A
Age 90 years old
Zodiac Sign Virgo
Born 13 September 1913
Birthday 13 September
Birthplace Chicago, Illinois, U.S.
Date of death 16 June, 2004
Died Place Bryn Mawr, Pennsylvania, U.S.
Nationality United States

We recommend you to check the complete list of Famous People born on 13 September. He is a member of famous mathematician with the age 90 years old group.

Herman Goldstine Height, Weight & Measurements

At 90 years old, Herman Goldstine height not available right now. We will update Herman Goldstine's Height, weight, Body Measurements, Eye Color, Hair Color, Shoe & Dress size soon as possible.

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Who Is Herman Goldstine's Wife?

His wife is Adele Katz (m. 1941-1964) Ellen Watson (m. 1966)

Family
Parents Not Available
Wife Adele Katz (m. 1941-1964) Ellen Watson (m. 1966)
Sibling Not Available
Children 2

Herman Goldstine Net Worth

His net worth has been growing significantly in 2023-2024. So, how much is Herman Goldstine worth at the age of 90 years old? Herman Goldstine’s income source is mostly from being a successful mathematician. He is from United States. We have estimated Herman Goldstine'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
Salary in 2023 Under Review
House Not Available
Cars Not Available
Source of Income mathematician

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Timeline

1913

Herman Heine Goldstine (September 13, 1913 – June 16, 2004) was a mathematician and computer scientist, who worked as the director of the IAS machine at the Institute for Advanced Study and helped to develop ENIAC, the first of the modern electronic digital computers.

He subsequently worked for many years at IBM as an IBM Fellow, the company's most prestigious technical position.

Goldstine was born in Chicago in 1913 to Jewish parents.

1933

He attended the University of Chicago, where he joined the Phi Beta Kappa fraternity, and graduated with a degree in Mathematics in 1933, a master's degree in 1934, and a PhD in 1936.

For three years he was a research assistant under Gilbert Ames Bliss, an authority on the mathematical theory of external ballistics.

1939

In 1939 Goldstine began a teaching career at the University of Michigan, until the United States' entry into World War II, when he joined the U.S. Army.

1942

As a result of the United States' entering World War II, Goldstine left the University of Michigan where he was a professor in July, 1942 to enlist in the Army.

He was commissioned a lieutenant and worked as an ordnance mathematician calculating firing tables at the Ballistic Research Laboratory (BRL) at Aberdeen Proving Ground, Maryland.

The firing tables were used in battle to find the appropriate elevation and azimuth for aiming artillery, which had a range of several miles.

The firing table calculations were accomplished by about one hundred women operating mechanical desk calculators.

Each combination of gun, round and geographical region required a unique set of firing tables.

It took about 750 calculations to compute a single trajectory and each table had about 3,000 trajectories.

It took a human computer at least 7 hours to calculate one trajectory.

To increase production, BRL enlisted the computing facilities of the Moore School of Electrical Engineering at the University of Pennsylvania and Goldstine was the liaison between BRL and the university.

While making some adjustments to the Moore School's mechanical differential analyzer, engineer Joseph Chapline suggested Goldstine visit John Mauchly, a physics instructor at the Moore School, who had distributed a memorandum proposing that the calculations could be done thousands of times faster with an electronic computer using vacuum tubes.

1943

Mauchly wrote a proposal and in June 1943 he and Goldstine secured funding from the Army for the project.

The ENIAC was built in 30 months with 200,000 man hours.

The ENIAC was huge, measuring 30 by 60 feet and weighing 30 tons with 18,000 vacuum tubes.

The device could only store 20 numbers and took days to program.

1944

In the summer of 1944 Goldstine had a chance encounter with the prominent mathematician John von Neumann on a railway platform in Aberdeen, Maryland, and Goldstine described his project at the University of Pennsylvania.

Unknown to Goldstine, von Neumann was then working on the Manhattan Project, which was aiming to build the first atomic bomb.

The calculations needed for this project were also daunting.

As a result of his conversations with Goldstine, von Neumann joined the study group and wrote a memo called First Draft of a Report on the EDVAC.

Von Neumann intended this to be a memo to the study group, but Goldstine typed it up into a 101-page document that named von Neumann as the sole author.

1945

It was completed in late 1945 as World War II was coming to an end.

In spite of disappointment that ENIAC had not contributed to the war effort, interest remained strong in the Army to develop an electronic computer.

Prior even to the ENIAC's completion, the Army procured a second contract from the Moore School to build a successor machine known as the EDVAC.

Goldstine, Mauchly, J. Presper Eckert and Arthur Burks began to study the development of the new machine in the hopes of correcting the deficiencies of the ENIAC.

1946

On June 25, 1946, Goldstine forwarded 24 copies of the document to those intimately involved in the EDVAC project; dozens or perhaps hundreds of mimeographs of the report were forwarded to von Neumann's colleagues at universities in the United States and in Great Britain in the weeks that followed.

While incomplete, the paper was very well received and became a blueprint for building electronic digital computers.

Due to von Neumann's prominence as a major American mathematician, the EDVAC architecture became known as the von Neumann architecture.

One of the key ideas in the "first draft" was that the programmer could store a program in the computer's electronic memory, rather than program the computer using mechanical switches and patch cables.

This and other ideas in the paper had been discussed in the EDVAC study group before von Neumann joined the group.

The fact that Eckert and Mauchly, the actual inventors and designers of the ENIAC, were not named as co-authors created resentment that led to the group's dissolution at the end of the war.

Eckert and Mauchly went on to form the Eckert-Mauchly Computer Corporation, a company that in part survives today as the Unisys Corporation, while von Neumann, Goldstine and Burks moved on into academic life at the Institute for Advanced Study.

In Summer 1946, all of them were reunited to give presentations at the first computer course, which has come to be known as the Moore School Lectures; Goldstine's presentations, given without notes, covered deeply and rigorously numerical mathematical methods useful in programs for digital computers.

After World War II Goldstine joined von Neumann and Burks at the Institute for Advanced Study at Princeton, where they built a computer referred to as the IAS machine.

1954

Goldstine was appointed as assistant director of the project and was later its director, after 1954.

The IAS machine influenced the design of IBM's early computers through von Neumann, who was a consultant to IBM.

1957

When von Neumann died in 1957, the IAS computer project was terminated.