Showing posts sorted by relevance for query 1882. Sort by date Show all posts
Showing posts sorted by relevance for query 1882. Sort by date Show all posts

Monday, November 14, 2016

Empires of Light by Jill Jonnes

In the last decades of the 19th Century, inventors and industrialists battled for dominance in the emerging market of electric energy. One of the major fronts of this conflict was the choice of DC (direct current) or AC (alternating current). Jill Jonnes explains the history of this pioneering age of electricity in Empires of Light.

Thomas Edison was a major player in the early days of electrification. He is known for developing a commercially viable incandescent light. The innovation that made his light commercially successful was that he developed an entire system for generating a distributing electric energy to make those lights work.

Edison designed a DC system, and he was a major proponent of DC. A weakness of his system was distance. He could only supply power over a distance of about a mile. If large areas were to be lit, a power station would be needed every mile. This made it hard for Edison to market the system for community lighting, though he successfully sold many systems to manufacturers, commercial establishments and very wealthy homeowners. In spite of the limitations, he built a system to light a portion of Manhattan; his Pearl Street station began powering lights in 1882.

Though it was not obvious at first, it soon became clear that high voltage AC could be transmitted over very great distances. The invention of transformers in Europe provided a way for voltage to be stepped up for transmission and stepped back down to levels appropriate for lighting.

George Westinghouse adopted the AC system. The advantages of AC soon make Westinghouse Electric Company a major competitor with Edison. Even Edison’s own salesman began to ask for an AC system to sell, though he was reluctant to have any involvement with AC.

Edison believed that AC and the high voltage used for its transmission were dangerous. He also had business and personal reasons to oppose the introduction of rival systems. He attacked the use of AC. He even went so far as to aid an AC opponent who successfully lobbied to make electrocution by AC power the official means of executing condemned prisoners in the state of New York.

Westinghouse pressed on and won high profile contracts that proved the safety and efficiency of his AC equipment. Notably, he had the major lighting contract for the White City of Chicago’s World Columbian Exposition of 1893. He also won the contract to build generators for the hydropower plant at Niagara Falls. The promise of inexpensive power drew major manufacturers to the area before the plant starting operating in 1895. This surprised the investors, who had though the city of Buffalo would be the target market.

Though transformers made AC a very viable system, it had other technological hurdles, such as difficulty powering motors. Serbian-born inventor Nikola Tesla solved this problem with his induction motor. Like Edison, Tesla invented an entire system for supplying electrical power to his motors, which could also easily accommodate incandescent and arc lighting. The Niagara Falls system was based on Tesla’s patented technology.

Tesla went on to invent and explore the potential of other electrical devices, notably fluorescent lights and radios. Unfortunately, he was never able to create commercial products from these later works. He fell on hard times and was quite poor for many of the last years of his life. He died in 1943.

After the formation of General Electric, which largely pushed him out of the management of the company, Thomas Edison moved on to other things. His later ventures were of mixed success, but his work on the phonograph and improvements to motion picture helped to launch the American entertainment industry. Edison passed away in 1931, semi-retired in Florida.

Westinghouse continued to grow his electrical empire. After the Panic of 1907, in which a banking crisis shook the economy, investors forced him out of the management of Westinghouse Electric. He had four other companies to run. He didn’t care for the way Wall Street did business so he got involved in Progressive politics. He died in 1914.

Jonnes includes a chapter that is a very good, brief introduction to the history of electrical science. She describes the discoveries of William Gilbert, Stephen Gray, Andreas Cuneus, Benjamin Franklin, Alessandro Volta, Sir Humphrey Davy, Hans Christian Oersted, André Marie Ampère, Zénobe-Théophie Gramme and Michael Faraday.

If you’re interested in this book, you may also be interested in


Jonnes, Jill. Empires of Light: Edison, Tesla, Westinghouse, and the Race to Electrify the World. New York: Random House, 2003.

Sunday, September 20, 2015

Make a Joyful Sound by Helen Elmira Waite

Alexander Graham Bell is obviously known for his invention of the telephone. He started his career teaching the deaf to speak using a set of tools developed by his father. This career lead the Scotch-Canadian teacher (Bell became an American citizen in 1882) to meet an American girl, Mabel Hubbard, who he would marry. Helen Elmira Waite tells the story of their life together in Make a Joyful Noise.

Mabel Hubbard lost her hearing at the age of five after being ill with scarlet fever. Her parents were determined that she would continue to speak and understand speech. They were encouraged by news from Germany that schools there were teaching the deaf to speak, but there was little support for it in the United States. Even so, they arranged for a teacher who had the courage to try and Mabel learned to speak and read lips.

Gardiner Hubbard, Mabel’s father, was a businessman and politician in Massachusetts. He became an advocate for the education of the deaf, especially oral education (speech and lip reading). As a child, Mabel testified to a committee of the Massachusetts legislature to demonstrate what a deaf child could learn.

Bell set us a school for the deaf in Boston. Here he was introduced to Mabel, whose family hoped his techniques could help her achieve a more natural speech. He began experimenting with the idea of pushing more signals down telegraph wires, which lead to his invention of the telephone. Gardiner Hubbard became one of Bells backers in these efforts. Even though Bell grew to spend more time developing his telephone, and later testing designs for aviation, he always remained active in education for the deaf.

The Bell family authorized Waite’s biography. The advantage of this is that she had access to family records and the recollections of the Bells’ children and grandchildren. The possible downside is that Waite may have been inclined to present the Bells in the best light. Waite may have been inclined to do this anyway. In his preface, Bell’s son-in-law, Gilbert Grosvenor, mentioned that he and his wife Elsie, Bell’s oldest daughter, had read Waits biography of Helen Keller and her teacher Anne Sullivan (the Bells knew these ladies and Bell himself encouraged Keller’s parents that she could be educated and connect to the wider world).

Waite does admit to Bell’s stubbornness and sometimes-excessive sense of propriety. If the Hubbards, particularly Mabel, had not pushed, persuaded, coerced, and even tricked Bell into promoting, protecting, and commercializing his invention, he may have tinkered in his shop making a better telephone that no one would use.

Waite’s style is almost conversational; she’s telling a story. I think Make a Joyful Noise is accessible to many younger readers. It is also interesting in that the book is as much about Bell’s private life, particularly his romance and marriage with Mabel, as it is about his invention. In addition, she demonstrates that Mabel was a remarkable and capable person on her own.

If you’re interested in this book, you may also be interested in


Waite, Helen Elmira. Make a Joyful Sound: The Romance of Mabel Hubbard and Alexander Graham Bell. Philadelphia: MacRae Smith Company, 1961.