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Combat-Grade Optic. Civilian Price.

daemon@ATHENA.MIT.EDU (Ronald Eubank)
Sat Jul 5 07:17:47 2025

Date: Sat, 5 Jul 2025 06:17:44 -0500
From: "Ronald Eubank" <StingerOptics@sugardefender.bar>
Reply-To: "Tactical Gear" <RonaldEubank@sugardefender.bar>
To: <linuxch-announce.discuss@charon.mit.edu>

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Combat-Grade Optic. Civilian Price.

http://sugardefender.bar/f6KX4w990kXaXekuPQ4yW8HOUEIrgardSbdjrqPj_TwoPMXoSw

http://sugardefender.bar/q526ZNZcPZGuMlyPxTSXBq7gkA9wKVNMJcmp92Q7glwywqZzAg

ake a generous provision for his favourite son's education and, in 1841, installed him, with extensive letters of introduction and ample accommodation, at Peterhouse, Cambridge. While at Cambridge, Thomson was active in sports, athletics and sculling, winning the Colquhoun Sculls in 1843. He took a lively interest in the classics, music, and literature; but the real love of his intellectual life was the pursuit of science. The study of mathematics, physics, and in particular, of electricity, had captivated his imagination. In 1845 Thomson graduated as second wrangler. He also won the first Smith's Prize, which, unlike the tripos, is a test of original research. Robert Leslie Ellis, one of the examiners, is said to have declared to another examiner "You and I are just about fit to mend his pens."

In 1845, he gave the first mathematical development of Michael Faraday's idea that electric induction takes place through an intervening medium, or "dielectric", and not by some incomprehensible "action at a distance". He also devised the mathematical technique of electrical images, which became a powerful agent in solving problems of electrostatics, the science which deals with the forces between electrically charged bodies at rest. It was partly in response to his encouragement that Faraday undertook the research in September 1845 that led to the discovery of the Faraday effect, which established that light and magnetic (and thus electric) phenomena were related.

He was elected a fellow of St. Peter's (as Peterhouse was often called at the time) in June 1845. On gaining the fellowship, he spent some time in the laboratory of the celeb

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<div style="color:#FFFFFF;font-size:8px;">ake a generous provision for his favourite son&#39;s education and, in 1841, installed him, with extensive letters of introduction and ample accommodation, at Peterhouse, Cambridge. While at Cambridge, Thomson was active in sports, athletics and sculling, winning the Colquhoun Sculls in 1843. He took a lively interest in the classics, music, and literature; but the real love of his intellectual life was the pursuit of science. The study of mathematics, physics, and in particular, of electricity, had captivated his imagination. In 1845 Thomson graduated as second wrangler. He also won the first Smith&#39;s Prize, which, unlike the tripos, is a test of original research. Robert Leslie Ellis, one of the examiners, is said to have declared to another examiner &quot;You and I are just about fit to mend his pens.&quot; In 1845, he gave the first mathematical development of Michael Faraday&#39;s idea that electric induction takes place through an intervening medium, or &quot;dielectric&quot;, and not by some incomprehensible &quot;action at a distance&quot;. He also devised the mathematical technique of electrical images, which became a powerful agent in solving problems of electrostatics, the science which deals with the forces between electrically charged bodies at rest. It was partly in response to his encouragement that Faraday undertook the research in September 1845 that led to the discovery of the Faraday effect, which established that light and magnetic (and thus electric) phenomena were related. He was elected a fellow of St. Peter&#39;s (as Peterhouse was often called at the time) in June 1845. On gaining the fellowship, he spent some time in the laboratory of the celeb</div>
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