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==Abstract==
==Abstract==


In this article, which first appeared in the <em>American Mathematical Monthly</em>, Frantz uses mathematics to establish and quantify a focusing property of ellipses. Potential areas of application include solar energy collection, laser technology (and possibly longitudinal wave amplification). Some experimenters may find the math tedious; however, others will appreciate the detailed proof. The italicized paragraph (page 27) and summary (page 28) may suffice for experimenters wanting to know the practical significance.[[Category:Scientific Paper]]
In this article, which first appeared in the <em>American Mathematical Monthly</em>, Frantz uses mathematics to establish and quantify a focusing property of ellipses. Potential areas of application include solar energy collection, laser technology (and possibly longitudinal wave amplification). Some experimenters may find the math tedious; however, others will appreciate the detailed proof. The italicized paragraph (page 27) and summary (page 28) may suffice for experimenters wanting to know the practical significance.
 
[[Category:Scientific Paper|focusing property ellipse]]

Latest revision as of 11:55, 1 January 2017

Scientific Paper
TitleA Focusing Property of the Ellipse
Author(s)Marc Frantz
Keywordsamplification, ellipse, focusing, parallel rays, reflection
Published1994
JournalElectric Spacecraft Journal
Number12
Pages25-28

Abstract

In this article, which first appeared in the American Mathematical Monthly, Frantz uses mathematics to establish and quantify a focusing property of ellipses. Potential areas of application include solar energy collection, laser technology (and possibly longitudinal wave amplification). Some experimenters may find the math tedious; however, others will appreciate the detailed proof. The italicized paragraph (page 27) and summary (page 28) may suffice for experimenters wanting to know the practical significance.