The Postcard
A Briny Series postcard that was printed in England. The artwork was by Fred Spurgin.
The card was posted in Weston-super-Mare using a ½d. stamp on Saturday the 13th. September 1913. It was sent to:
Miss Annie Fryer,
Luggs Farm,
Sharpness,
Stroud.
The brief message on the divided back was as follows:
"Love from
Joan."
William Sulzer
So what else happened on the day that Joan posted the card to Annie?
Well, on the 13th. September 1913, the impeachment trial of New York Governor William Sulzer began in the State Senate.
William Sulzer (1863 – 1941) was an American lawyer and politician, nicknamed Plain Bill Sulzer. He was the 39th. governor of New York, and a long-serving U.S. representative from the same state.
Sulzer was the first, and to date only, New York governor to be impeached, and the only governor to be convicted on articles of impeachment.
He broke with his sponsors at Tammany Hall, and they produced convincing evidence that Sulzer had falsified his sworn statement of campaign expenditures.
The Bell of Chersonesos
Also on that day, the Bell of Chersonesos was returned by France to Russia after having been seized almost 60 years earlier during the Crimean War.
The Death of Aurel Vlaicu
Also on the 13th. September 1913, Romanian pilot Aurel Vlaicu, who had pioneered aviation in Romania, died when his airplane crashed while trying to fly across the Carpathian Mountains.
The cause of Vlaicu's crash remains unknown. Two of Vlaicu's friends dismissed claims of sabotage, they being among the first to inspect the wreckage as they were following him in an automobile.
The most plausible cause of Vlaicu's death was that the airplane stalled while landing with the engine switched off (as was common practice at the time), however this made it difficult for the pilot to abort a misjudged landing.
Herman Goldstine
The day also marked the birth, in Chicago, of Herman Goldstine.
Herman Heine Goldstine 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.
Herman Goldstine - The Early Years
Goldstine was born to Jewish parents. He attended the University of Chicago, where he joined the Phi Beta Kappa fraternity, and graduated with a degree in Mathematics in 1933. He followed this with 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.
Herman Goldstine's Career
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.
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 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 woman with a calculator at least 7 hours to calculate a single trajectory.
In order 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.
The ENIAC
While making some adjustments to the Moore School's mechanical differential analyzer, engineer Joseph Chapline suggested that Goldstine visit John Mauchly, a physics instructor at the Moore School.
Mauchly had distributed a memorandum proposing that the calculations could be done thousands of times faster with an electronic computer using vacuum tubes.
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. It was completed in late 1945 as World War II was coming to an end.
The EDVAC
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 order to correct the deficiencies of the ENIAC.
Goldstine's Meeting John von Neumann
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.
The First EDVAC Draft
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.
On the 25th. June 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.
Although 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.
The Institute for Advanced Study
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. Goldstine was appointed as assistant director of the project, and in 1954 became its director.
The IAS machine influenced the design of IBM's early computers through von Neumann, who was a consultant to IBM. When von Neumann died in 1957, the IAS computer project was terminated.
Goldstine at IBM
Goldstine went on to become the founding director of the Mathematical Sciences Department at IBM's Watson Research Center in Yorktown Heights, New York.
At IBM one of Goldstine's most significant roles was in fostering relations between IBM researchers and the academic community.
In 1969 he was appointed an IBM Fellow, the company's most prestigious technical honor, and a consultant to the director of research. As a fellow Goldstine developed an interest in the history of computing and mathematical sciences.
He wrote three books on the topic: 'The Computer From Pascal to von Neumann', 'History of Numerical Analysis From the 16th. Through the 19th. Century', and 'History of the Calculus of Variations from the 17th. Through the 19th. Century'.
As the title implies, in 'The Computer from Pascal to von Neumann', Goldstine leaves little doubt that in his opinion von Neumann played a critical role in developing modern theories of computing.
Herman Goldstine's Later Career
In retirement Goldstine became executive director of the American Philosophical Society in Philadelphia between 1985 and 1997, in which capacity he was able to attract many prestigious visitors and speakers.
Herman Goldstine's Personal Life
In 1941 he married Adele Katz, who was an ENIAC programmer and who wrote the technical description for ENIAC. He had a daughter and a son with Adele, who died in 1964. Two years later, he married his second wife, Ellen Watson.
The Death of Herman Goldstine
Goldstine died at the age of 90 on the 16th. June 2004 at his home in Bryn Mawr, Pennsylvania, after a long struggle with Parkinson's disease.
His death was announced by the Thomas J. Watson Research Center in Yorktown Heights, New York, where a post-doctoral fellowship was renamed in his honor.