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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
1

Fraunhofer diffraction laser multichannel photopasteographic (FDLMP) measurement of crosslinking in chemically modified waxy corn starch

Gonzales, Trinidad C. January 2010 (has links)
Typescript (photocopy). / Digitized by Kansas Correctional Industries
2

Additivity of the Stiles-Crawford effect for a Fraunhofer image /

Drum, Bruce Alan January 1973 (has links)
No description available.
3

A study of the variation in the equivalent widths of certain infra-red Fraunhofer lines across the solar disc

Pagel, Bernard Ephraim Julius January 1955 (has links)
No description available.
4

The filling in of absorption lines in sky spectra due to rotational Raman scattering

Sioris, Christopher E. January 2001 (has links)
Thesis (Ph. D.)--York University, 2001. Graduate Programme in Earth and Space Science. / Typescript. Includes bibliographical references (leaves 102-116). Also available on the Internet. MODE OF ACCESS via web browser by entering the following URL: http://wwwlib.umi.com/cr/yorku/fullcit?pNQ67893.
5

LOCAL WEAKENINGS OF FRAUNHOFER LINES ON THE SOLAR DISK

Chapman, Gary Allen, 1938- January 1968 (has links)
No description available.
6

Espectrometria de lente térmica em sólidos: teoria e aplicações / Thermal Lens Spectrometry in solids:theory and applications

Costa, Gláucia Grüninger Gomes 19 October 2005 (has links)
Neste trabalho propomos o estudo da Espectrometria de Lente Térmica, sua teoria e aplicações, visto ser uma técnica de alta sensibilidade e que permite a medida das propriedades termo-ópticas dos materiais, como a difusividade térmica (D), a condutividade térmica (k), desvio do caminho óptico pela temperatura (ds/dT) - para materiais sólidos - ou a variação do índice de refração em relação à temperatura (dn/dT) - para líquidos e gases. Para isso inicialmente fizemos um estudo da teoria da difração. Valendo-se da Integral de Difração de Fresnel Kirchhoff obtivemos a expressão analítica da intensidade de um feixe de laser, difratado por diversos elementos ópticos (aberturas e obstáculos circular e retangular, por exemplo), tanto para o regime da difração de Fresnel, quanto da difração de Fraunhofer. Ainda no estudo da difração propusemos um arranjo experimental muito simples, utilizando-se um laser pointer sem a lente colimadora, permitindo que se obtenha, com grande facilidade, os padrões de difração no campo próximo, o que é difícil nas montagens tradicionais. Na seqüência fizemos uma revisão dos modelos de Lente Térmica tradicionalmente utilizados, modelos parabólico e aberrante. E, na comparação que realizamos entre eles, verificamos que pelos resultados obtidos através de simulações, com o modelo parabólico se apresenta em grande desacordo (>50%) com os obtidos com o modelo aberrante. Desta forma, concluímos que os dados da literatura obtidos na década de 70 e que ainda são utilizados, merecem ser revistos. Por fim, notamos na literatura um crescente interesse em lasers de alta potência, principalmente pelos bombeados por lasers de diodo. Desta forma fizemos um estudo valendo-se do modelo aberrante de Lente Térmica sob o regime de q grande, no qual procuramos verificar o limite de validade dos modelos de L.T. utilizados, observando o surgimento de fenômeno da aberração esférica, juntamente com as estruturas de anéis. / In this work we have proposed the study of Thermal Lens Spectrometry, its theory and applications, because it is a highly sensitive technique that allows the measure of the thermo-optical properties of the materials, as the thermal diffusivity (D), the thermal conductivity (k), the change of optical path length with temperature (ds/dT), for solid materials or the change of refractive index with temperature (dn/dT), for liquids and gases. Initially we studied the diffraction theory. We utilized the Fresnel Kirchhoff Diffraction Integral to obtain the analytic expression of the beam laser intensity, whose was diffracted for several optical elements, so much for the regime of the Fresnel diffraction as the regime of the Fraunhofer diffraction. Continuing in the study of the diffraction we proposed a very simple experimental apparatus where we used a laser pointer without the collimator lens, allowing that it was obtained with great facility the Fresnel diffraction patterns, which are difficult to observe in the common experimental apparatus. In the sequence, we made a revision of the models of Thermal Lens traditionally used, parabolic and aberrant models. And, in the comparison that we accomplished among them, we verified that for the results obtained through simulations, with the parabolic model it comes in great disagreement (>50%) with obtained them with the aberrant model. This way, we concluded that literature’s data obtained in the 70ths and they are still used, they must be reviewed. Finally, we noticed in the literature a growing interest in high power lasers. This way we made a study where we used the aberrant model of Thermal Lens under the regime of great q, in which we look for to verify the limit of validity of the used models, observing the appearance of the spherical aberration together with the rings structure.
7

Espectrometria de lente térmica em sólidos: teoria e aplicações / Thermal Lens Spectrometry in solids:theory and applications

Gláucia Grüninger Gomes Costa 19 October 2005 (has links)
Neste trabalho propomos o estudo da Espectrometria de Lente Térmica, sua teoria e aplicações, visto ser uma técnica de alta sensibilidade e que permite a medida das propriedades termo-ópticas dos materiais, como a difusividade térmica (D), a condutividade térmica (k), desvio do caminho óptico pela temperatura (ds/dT) - para materiais sólidos - ou a variação do índice de refração em relação à temperatura (dn/dT) - para líquidos e gases. Para isso inicialmente fizemos um estudo da teoria da difração. Valendo-se da Integral de Difração de Fresnel Kirchhoff obtivemos a expressão analítica da intensidade de um feixe de laser, difratado por diversos elementos ópticos (aberturas e obstáculos circular e retangular, por exemplo), tanto para o regime da difração de Fresnel, quanto da difração de Fraunhofer. Ainda no estudo da difração propusemos um arranjo experimental muito simples, utilizando-se um laser pointer sem a lente colimadora, permitindo que se obtenha, com grande facilidade, os padrões de difração no campo próximo, o que é difícil nas montagens tradicionais. Na seqüência fizemos uma revisão dos modelos de Lente Térmica tradicionalmente utilizados, modelos parabólico e aberrante. E, na comparação que realizamos entre eles, verificamos que pelos resultados obtidos através de simulações, com o modelo parabólico se apresenta em grande desacordo (>50%) com os obtidos com o modelo aberrante. Desta forma, concluímos que os dados da literatura obtidos na década de 70 e que ainda são utilizados, merecem ser revistos. Por fim, notamos na literatura um crescente interesse em lasers de alta potência, principalmente pelos bombeados por lasers de diodo. Desta forma fizemos um estudo valendo-se do modelo aberrante de Lente Térmica sob o regime de q grande, no qual procuramos verificar o limite de validade dos modelos de L.T. utilizados, observando o surgimento de fenômeno da aberração esférica, juntamente com as estruturas de anéis. / In this work we have proposed the study of Thermal Lens Spectrometry, its theory and applications, because it is a highly sensitive technique that allows the measure of the thermo-optical properties of the materials, as the thermal diffusivity (D), the thermal conductivity (k), the change of optical path length with temperature (ds/dT), for solid materials or the change of refractive index with temperature (dn/dT), for liquids and gases. Initially we studied the diffraction theory. We utilized the Fresnel Kirchhoff Diffraction Integral to obtain the analytic expression of the beam laser intensity, whose was diffracted for several optical elements, so much for the regime of the Fresnel diffraction as the regime of the Fraunhofer diffraction. Continuing in the study of the diffraction we proposed a very simple experimental apparatus where we used a laser pointer without the collimator lens, allowing that it was obtained with great facility the Fresnel diffraction patterns, which are difficult to observe in the common experimental apparatus. In the sequence, we made a revision of the models of Thermal Lens traditionally used, parabolic and aberrant models. And, in the comparison that we accomplished among them, we verified that for the results obtained through simulations, with the parabolic model it comes in great disagreement (>50%) with obtained them with the aberrant model. This way, we concluded that literature’s data obtained in the 70ths and they are still used, they must be reviewed. Finally, we noticed in the literature a growing interest in high power lasers. This way we made a study where we used the aberrant model of Thermal Lens under the regime of great q, in which we look for to verify the limit of validity of the used models, observing the appearance of the spherical aberration together with the rings structure.
8

Die Bedeutung der Wissenschaftsfreiheit für die Fraunhofer-Gesellschaft : grundrechtliche Einordnung und Anforderungen an Organisation und Finanzierung /

Arnold, Natalie Dorothee. January 2007 (has links) (PDF)
Universiẗat, Diss.-2007--Gießen, 2006. / Literaturverz. S. 193 - 205.
9

Entwurf Sigma-Delta-PLL-basierter Frequenzgeneratoren höherer Ordnung für drahtlose digitale Kommunikationssysteme / Design of High-Order PLL-based Sigma-Delta Frequency Synthesizers for Wireless Digital Communication Systems

Christoffers, Niels 17 December 2004 (has links)
Today's wireless transceivers require reference signals to translate received and transmitted signals to their desired frequencies. Therefore, they need frequency synthesizers which are typically based on phase-locked-loops (PLLs). Communication standards like GSM or Bluetooth necessiate that the PLLs put out oscillations with high spectral purity and accuracy. Additionally, the oscillation frequency must be adjustable very accurately at low transient time to account for occasional carrier frequency changes. So called Sigma-Delta-fractional-N frequency synthesizers are often employed to fulfil these requirements. However, the number and the locations of the poles of the control loop and hence the loop filter must be chosen properly. Unity gain frequency and phase margin have to be considered as well as the stringent frequency accuracy and the detailed origin of the spurious emissions. The design methodology proposed in this work is based on numerical optimization techniques, a high number of control loop poles and the use of Gm-C-biquads as loop filter building blocks.
10

TU-Spektrum 2/2000, Magazin der Technischen Universität Chemnitz

Steinebach, Mario, Gieß, Hubert J., Häckel-Riffler, Christine, Lopez, Daniela, Schellenberg, Peggy 14 November 2002 (has links)
4 mal im Jahr erscheinende Zeitschrift über aktuelle Themen der TU Chemnitz

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