File:NDL1063600 光学 第1 part2.pdf

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Summary

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光学   (Wikidata search (Cirrus search) Wikidata query (SPARQL)  Create new Wikidata item based on this file)
Author
杉浦, 義勝, 1895-1960
image of artwork listed in title parameter on this page
Title
光学
Volume 第1
Edition 4版
Publisher
産業図書
Description
初版昭和11
Language jpn
Publication date

1948

昭和23
Place of publication JP
Source

doi:10.11501/1063600

institution QS:P195,Q477675
Creator
InfoField
杉浦義勝 著
Publication Place
InfoField
東京
Subject: NDC
InfoField
425
Extent
InfoField
530p ; 21cm
Material Type
InfoField
Book
Source Identifier: JPNO
InfoField
46015355
Date Digitized: W3CDTF
InfoField
2010-03-31
Audience
InfoField
一般
Title Transcription
InfoField
コウガク
Volume Transcription
InfoField
1
Publisher Transcription
InfoField
サンギョウ トショ
Source Identifier: NDLBibID
InfoField
000000676785
Call Number
InfoField
425-Su48ウ
Creator Transcription: NDLNA
InfoField
スギウラ, ヨシカツ
Creator: NDLNAId
InfoField
00074670
Contents
InfoField
2. 圓形に於ける廻折現象/187

3. その他の廻折を起す開きの場合/190

4. 半平面の直線的鋭端に於けるフレネルの廻折現象/192

16. 廻折格子/196

17. 廻折理論の應用,像收差の廻折理論/205

第四章 結晶光學と金屬光學

18. 異方體に對する電磁波的光理論/213

19. 光學的結晶分類とその特性/228

1. 三つの同値,互に直角な對稱軸を持つ結晶/228

2. 結晶學的に特別な一方向を持つ結晶/229

3. 結晶學的に特別な方向のない結晶/229

(a) 光學的一軸性結晶/230

(b) 光學的二軸性結晶/231

20. 結晶板に於ける干渉現象/239

(i) A//P,偏光子と檢光子が平行,χ=0/240

(ii) A⊥P,偏光子と檢光子とが垂直,χ=π/2/241

21. 導體内に於ける平面波の傳播/254

22. 金屬表面に於ける光の反射/258

23. 光を吸收する結晶體/265

吸收性結晶板に於ける干渉現象/271

24. 導體球に於ける廻折,散亂光/275

第五章 分子光學

25. 分子光學の物理的根本概念/293

26. 分子光學的光傳播理論略説/308

27. 結晶の格子光學/312

28. ローレンツ・ローレンツの法則/322

29. ファラデー効果,コットン・ムートン効果,ケル効果/328

1. ファラデー効果/335

2. コットン・ムートン効果/341

3. ケル効果/344

30. 光の散亂/348

31. 旋光能力/364

1. 旋光性液體と瓦斯體/371

2. 旋光性結晶體/375

第六章 放射,吸收,分散の古典的理論

32. 光放射に對する古典的概念/383

Licensing

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Public domain
According to Japanese Copyright Law (June 1, 2018 grant) the copyright on this work has expired and is as such public domain. According to articles 51, 52, 53 and 57 of the copyright laws of Japan, under the jurisdiction of the Government of Japan works enter the public domain 50 years after the death of the creator (there being multiple creators, the creator who dies last) or 50 years after publication for anonymous or pseudonymous authors or for works whose copyright holder is an organization.

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