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An investigation of low pressure, lo...
~
Reid, Behanzin Hassu Bowelle.
An investigation of low pressure, low energy surface flashover across metallized polypropylene film (MPF) as an intense pulsed light source.
紀錄類型:
書目-電子資源 : 單行本
正題名/作者:
An investigation of low pressure, low energy surface flashover across metallized polypropylene film (MPF) as an intense pulsed light source./
作者:
Reid, Behanzin Hassu Bowelle.
面頁冊數:
83 p.
附註:
Source: Masters Abstracts International, Volume: 44-04, page: 1939.
Contained By:
Masters Abstracts International44-04.
標題:
Engineering, Electronics and Electrical. -
電子資源:
Download PDF (下載PDF全文)
ISBN:
9780542499272
An investigation of low pressure, low energy surface flashover across metallized polypropylene film (MPF) as an intense pulsed light source.
Reid, Behanzin Hassu Bowelle.
An investigation of low pressure, low energy surface flashover across metallized polypropylene film (MPF) as an intense pulsed light source.
- 83 p.
Source: Masters Abstracts International, Volume: 44-04, page: 1939.
Thesis (M.S.E.E.)--State University of New York at Buffalo, 2006.
The objective of this thesis is to investigate a low pressure, low energy surface flashover across metallized polypropylene film (MPF) for an intense pulsed light source application. Preliminary investigations into surface flashover experiments on MPF yielded that it can be used to create a robust low cost pulsed light source by using surface flashover on MPF a new pulsed light source application can be created. The pulsed light source application will cost less because of the reduced energy consumption, and the reduced complication of implementation by reducing the numbers of components needed to design the application. A xenon flash tube is a current application of intense pulsed light source. It produces pulsed light via a complex mechanism which utilizes large amounts of energy per flash, approximately 6 J. (Abstract shortened by UMI.)
ISBN: 9780542499272Subjects--Topical Terms:
170927
Engineering, Electronics and Electrical.
An investigation of low pressure, low energy surface flashover across metallized polypropylene film (MPF) as an intense pulsed light source.
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Advisers: Walter J. Sarjeant; Kasra Etemadi.
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The objective of this thesis is to investigate a low pressure, low energy surface flashover across metallized polypropylene film (MPF) for an intense pulsed light source application. Preliminary investigations into surface flashover experiments on MPF yielded that it can be used to create a robust low cost pulsed light source by using surface flashover on MPF a new pulsed light source application can be created. The pulsed light source application will cost less because of the reduced energy consumption, and the reduced complication of implementation by reducing the numbers of components needed to design the application. A xenon flash tube is a current application of intense pulsed light source. It produces pulsed light via a complex mechanism which utilizes large amounts of energy per flash, approximately 6 J. (Abstract shortened by UMI.)
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Download PDF (下載PDF全文)
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