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Saturday, February 18, 2017

Rust by Jonathan Waldman

It can be tough to be an engineer. You live in a world in which everything falls apart in spite of your best efforts. Constraints abound, not the least of which is that even the most enduring materials last only so long. If economics is the dismal science, engineering is the dismal art.

If the technical aspects of rust, more broadly corrosion, do not impress most readers, the economic aspects of it might. The U.S. Department of Defense (DOD) estimated in 2011 that it spent $21 billion annually dealing with corrosion. One might guess that corrosion is costing us at least as much in our civil infrastructure, private businesses and homes.

Of course, corrosion isn’t a sexy subject. To make its awareness videos on corrosion more appealing, the DOD recruited LeVar Burton, known for his roles in Roots and Star Trek: The Next Generation, to host. Journalist Jonathan Waldman attempts to hook his readers by starting his book, Rust, with a story of an American icon, the Statue of Liberty.

When the Statue of Liberty was built, her makers unintentionally created something like a giant battery. While this current worked well to preserve the copper shell of the statue, atoms of the iron framework began to shuffle away, leading to serious corrosion. By the 1980s, the problem was serious enough to inspire a major renovation effort.

Waldman approaches the problem of corrosion through stories. In the Statue of Liberty we see that is something historically overlooked by engineers and actively ignored by administrators who can pass the problem on to a successor. Similarly, the military resisted Congress’ push to make it more responsive to the issues. Since then, the DOD has integrated corrosion concern into the way it does business, but civilian agencies are mostly dragging their heels.

Only a few of the stories come from government. Waldman also looks at the issue from the perspective of the aluminum can industry and the Trans-Alaska Pipeline—his recounting of a pigging of the pipeline surprisingly conveys some of the sense of drama that the people who undertake the effort must feel. He also dips into the early history of corrosion prevention in the work of chemist Sir Humphrey Davy for the British Navy and Harry Brearley, a discoverer and popularizer of stainless steel.

Waldman’s book is not a textbook on corrosion by any means; it is written for a popular audience. He does try to present how serious an issue it is—especially how costly it is. Fortunately, reasonable solutions to some of our most pressing rust problems are within reach if we have the will to do something about it.

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


Waldman, Jonathan. Rust: The Longest War. New York: Simon & Schuster, 2015.

Sunday, August 28, 2016

The Explorer King by Robert Wilson

Clarence King was probably the most well-known American scientist of his time. It doesn’t hurt that his scientific reputation was built on exploration of the then still wild west of the United States of that he could spin a tale. Robert Wilson recounts the life of the accomplished geologist in The Explorer King.

King was born in 1842. He was raised in Newport, Massachusetts. He was educated at Yale’s Sheffield Scientific School.

As a young man, King was enamored of art critic John Ruskin. Ruskin thought the rugged Alps of Europe to be the best subject of art for their beauty, colorfulness, ruggedness and variety. When he met western geologists and mountaineers through mentors at Sheffield, he wanted to be part of it.

He headed out for California in 1863 and became part of the state’s geologic survey. He would spend the next decade studying the geology and geography of the American west, especially its mountains. He showed great physical prowess and courage as a mountaineer.

After working on the California survey, he went on to lead surveys. In 1864, he was chosen to lead a survey of Yosemite.

He built on his reputation from the Yosemite survey to lobby Congress to fund a survey of the 40th Parallel, roughly the route the transcontinental railroads would follow. Though it was under the auspices of the Army Corp of Engineers, it was the first federally-funded scientific endeavor that was completely staffed by civilians. While working on this survey, he was the first to discover active glaciers in the U.S. His team published new methods of silver smelting to make the mines for productive (the survey’s first report dealt with mining in order to show the commercial value of their research to money-conscious Congressmen).

The 40th Parallel survey made King famous, though not because of the many contributions to science that came from it. King’s team heard rumors of a diamond discovery in Colorado. It would have been very embarrassing for them to have walked over such a valuable mineral resource without observing it. They tracked down the site of the discovery and determined it was a hoax; the site had been planted with rough diamonds and other uncut gemstones that the con men had bought mostly with money from their marks. Stories of massive fraud sells newspapers, especially when the names of big money men in San Francisco and New York are attached to it. King was the hero of the story.

When the U.S. Geological Survey was created, King was appointed to be its first director. His career as a scientist was already on the decline. He would turn his attention to making money in mining, but he would not be successful. He would have no money when he died.

This leads to an interesting point about King, though it is not the focus of Wilson’s biography. King had nothing to leave for his secret family. He was married to a black woman. This was a very unusual thing at the time. To protect his reputation, he kept the marriage a secret. He did not even reveal to his wife his real identity until shortly before he died (she knew him as James Todd). His friend John Hay provided for Ada Copeland Todd (and the five children she had with King) after King died in 1901.

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


Wilson, Robert. The Explorer King: Adventure, Science, and the Great Diamond Hoax—Clarence King in the Old West. New York: Scribner, 2006.

Saturday, November 15, 2014

Better for All the World by Harry Bruinius

Harry Bruinius takes the title of his book, Better for All the World, from a quote from famous United States Supreme Court Justice Oliver Wendell Holmes, Jr.  In his opinion, written for a court majority that authorized states to forcibly sterilize some people, Holmes expressed the notion that it was better to sterilize a defective person than to permit them to have defective children who may place greater burden on government systems for justice and welfare.

This legal justification for forced sterilization was just one of the policy victories of the eugenics movement in the America. Eugenicists were also influential in establishing state marriage laws and federal immigration quotas and restrictions.

Even from its start, notions of social engineering and politics tinged the science of eugenics. Francis Galton coined the word that applied to both the study of heredity and the improvement of humanity through selective breeding over generations. Galton established the field based on concepts from his cousin Charles Darwin’s books on evolution, Gregor Mendel’s studies of plant heredity, and his own statistical studies of human characteristics. Though he mostly kept these speculations to himself, he considered the possibility of improving humans through breeding just as farmers improved plants and livestock.

American reformers of all political persuasion welcomed Galton’s ideas; they were looking for reliable, scientific means of tackling poverty and crime. Galton’s method were used to study families and supposedly proved that traits related to poverty, criminality, low intelligence, and the harder to recognize (therefore more dangerous) feeblemindedness. These studies also uncover a troubling pairing in females of feeblemindedness and fecundity. The implication was that the good stock of moral, productive Americans risked overrun by a class of hereditary degenerates. America’s best needed to produce larger family, and its poor and feebleminded needed to be restrained from passing on their inferior traits.

Much of Bruinius’ book focuses on this American eugenics movement. Representing leadership in the scientific community is Charles Davenport. He popularized the work of Galton, convinced the Carnegie Institute to fund a station to study eugenics, and did research that contributed to the early development of genetics. Representing the bridge between science and policy is Harry Laughlin. A Missourian and a protégé of Davenport, his reports and advice to Congress helped to inform restrictive immigration policy and support state programs of forced sterilization of convicts and the feebleminded, ultimately upheld in by the Supreme Court, as previously mentioned, in the case of Buck vs. Bell.

The development of eugenics policy in the U.S. was being watched overseas. In particularly, racial purity laws enacted by the Nazis in Germany explicitly cited American research and legal precedents. Many reformers in America and elsewhere were gratified by the apparent success of eugenics policies in Germany.

Even as it was reaching its peak as a political reform movement, laboratory science was undermining eugenics. Laboratory studies of the mechanisms of heredity, which had discovered chromosomes by the 1930s, were showing that heredity and the expression of traits, especially moral or personality traits, were much more complicated and harder to predict than the eugenicists assumed. Through its association with the Nazis, eugenics became wholly discredited in the public mind, though its effects lingered in American policies for decades.

Our understanding of genetics and heredity has improved a lot. Biotechnology has made a new kind of genetic engineering possible. The eugenicist dreams of eliminating disease and creating better people in future generations is more attainable than ever, at least in limited ways.

If this puts our evolution in our hands, are we ethically and morally evolved enough to use this power? Are humans intelligent animals or are we unique creatures? Are human rights inalienable characteristics of human beings, or are they social constructs, ideas that can rise, fade, or change like other ideas? How does the good of the species relate to the good of the individual? What does it mean to be a parent? The way we answer these questions, and other related to the implications of our science and technology, will establish what kind of people we are, and possibly the destiny of generations to come.

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


Bruinius, Harry. Better for All the World: The Secret History of Forced Sterilization and America’s Quest for Racial Purity. New York: Alfred A. Knopf, 2006.

Monday, December 10, 2012

New & Interesting Stuff on Ada Lovelace's Birthday 2012


It’s Ada Lovelace’s 197th Birthday


Also Today in History: First Traffic Light Installed

Monday, November 21, 2011

What's New November 21, 2011

Deuteronomy
In Congress
King James Bible Celebrates 400th Anniversary (Updated)
Majestie by David Teems
Second Corinthians
There is one who scatters, yet increases more
What's New November 2, 2011



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