Captains of Industry; or, Men of Business Who Did Something Besides Making MoneyParton, James
History
Captains of Industry; or, Men of Business Who Did Something Besides Making Money
Parton, James
Industrial arts -- Biography
When the boy had passed through the preparatory schools, the question
arose, whether he should be sent to one of the universities, or should
go at once into the workshop. His father frequently said that the real
foundation of civil engineering is mechanics, theoretical and practical.
He did not believe that a young man could become an engineer by sitting
in a class-room and hearing lectures; but that he must be placed in
contact with realities, with materials, with tools, with men, with
difficulties, make mistakes, achieve successes, and thus acquire the
blended boldness and caution which mark the great men in this
profession. It is a fact that the greatest engineers of the past
century, whatever else they may have had or lacked, were thoroughly
versed in practical mechanics. Smeaton, Telford, Arkwright, Hargreaves,
George Stephenson, Rennie, were all men who, as they used to say, had
"an ounce of theory to a pound of practice."
Young Rennie worked eight hours a day in the practical part of his
profession, and spent four in the acquisition of science and the modern
languages, aided in both by the first men in London in their branches.
Four or five years of this training gave him, as he says in his
autobiography, the "_rudiments_" of his profession. His father next
determined to give him some experience in bearing responsibility, and
placed him as an assistant to the resident-engineer of Waterloo Bridge,
then in course of construction. He was but nineteen years of age; but,
being the son of the head of the firm, he was naturally deferred to and
prepared to take the lead. Soon after, the Southwark Bridge was begun,
which the young man superintended daily at every stage of its
construction.
English engineers regard this bridge as the _ne plus ultra_ of
bridge-building. A recent writer speaks of it as "confessedly unrivaled
as regards its colossal proportions, its architectural effect, or the
general simplicity and massive character of its details." It crosses the
river by three arches, of which the central one has a span of two
hundred and forty feet, and it is built at a place where the river at
high tide is thirty-six feet deep. The cost of this bridge was four
millions of dollars, and it required five years to build it. The bridge
is of iron, and contains a great many devices originated by the young
engineer, and sanctioned by his father. It was he also who first, in
recent times, learned how to transport masses of stone of twenty-five
tons weight, used for the foundation of bridges.
Public-domain text, read in full here on John Shaqi.
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