811 resultados para Lens Tuero, Jesús Angel
Resumo:
Geology is the science that studies the Earth, its composition, structure and origin in addition to past and present phenomena that leave their mark on rocks. So why does society need geologists? Some of the main reasons are listed below: - Geologists compile and interpret information about the earth’s surface and subsoil, which allows us to establish the planet’s past history, any foreseeable changes and its relationship with the rest of the solar system. - Society needs natural resources (metals, non-metals, water and fossil fuels) to survive. The work of geologists is therefore a key part of finding new deposits and establishing a guide for exploring and managing resources in an environmentally-friendly way. - The creation of geological maps allows us to identify potential risk areas and survey different land uses; in other words, they make an essential contribution to land planning and proposing sustainable development strategies in a region. - Learning about Geology and the proper use of geological information contributes to saving lives and reducing financial loss caused by natural catastrophes such as earthquakes, tsunamis, volcanic eruptions, flooding and landslides, while also helping to develop construction projects, public works, etc. Through the proposed activities we aim to explain some of the basic elements of the different specialities within the field of Geological Sciences. In order to do this, four sessions have been organised that will allow for a quick insight into the fields of Palaeontology, Mineralogy, Petrology and Tectonics.
Resumo:
La Geología es la ciencia que estudia la Tierra en su conjunto, su composición, estructura y origen, así como los fenómenos que han tenido lugar en el pasado o que se producen en la actualidad y que han dejado sus huellas en las rocas. Pero, ¿por qué necesita la sociedad a los geólogos? A continuación se citan algunas de las principales razones: - Los geólogos recopilan e interpretan información de la superficie terrestre y del subsuelo, lo que permite establecer la historia pasada del planeta, sus cambios previsibles y su relación con el resto del sistema solar. - La sociedad requiere para su subsistencia recursos naturales (metálicos, no metálicos, hídricos y combustibles fósiles). La labor de los geólogos es determinante para la localización de nuevos yacimientos y para establecer las guías de una explotación y gestión respetuosa con el medio ambiente. - La elaboración de cartografías geológicas permite identificar potenciales zonas de riesgo y acotar distintos usos del suelo; es decir, es esencial para la planificación del territorio y para proponer estrategias de desarrollo sostenible en una región. - La educación en Geología y el buen uso de la información geológica contribuye a salvar vidas y a reducir las pérdidas económicas originadas por catástrofes naturales tales como terremotos, tsunamis, erupciones volcánicas, inundaciones y desprendimientos, así como a desarrollar proyectos de construcción, obras públicas, etc. Con las actividades propuestas se pretende dar a conocer algunos aspectos básicos de distintas especialidades de las Ciencias Geológicas. Para ello se han organizado cuatro sesiones destinadas a realizar una pequeña inmersión en el campo de la Paleontología, la Mineralogía, la Petrología y la Tectónica.
Resumo:
Geology is the science that studies the Earth, its composition, structure and origin in addition to past and present phenomena that leave their mark on rocks. So why does society need geologists? Some of the main reasons are listed below: - Geologists compile and interpret information about the earth’s surface and subsoil, which allows us to establish the planet’s past history, any foreseeable changes and its relationship with the rest of the solar system. - Society needs natural resources (metals, non-metals, water and fossil fuels) to survive. The work of geologists is therefore a key part of finding new deposits and establishing a guide for exploring and managing resources in an environmentally-friendly way. - The creation of geological maps allows us to identify potential risk areas and survey different land uses; in other words, they make an essential contribution to land planning and proposing sustainable development strategies in a region. - Learning about Geology and the proper use of geological information contributes to saving lives and reducing financial loss caused by natural catastrophes such as earthquakes, tsunamis, volcanic eruptions, flooding and landslides, while also helping to develop construction projects, public works, etc. Through the proposed activities we aim to explain some of the basic elements of the different specialities within the field of Geological Sciences. In order to do this, four sessions have been organised that will allow for a quick insight into the fields of Palaeontology, Mineralogy, Petrology and Tectonics.
Resumo:
Based on the interferential theory, we deduce a new type of analytic expression suitable for describing the evolutions of the optical bottle beam generated from the axicon-lens optical system illuminated by the Gaussian beam for the first time. The theory does not use much approximation in the process of mathematical analysis and can better illustrate the optical bottle beam evolutions at any positions. With the derived expression, the three-dimensional (3D) longitudinal and transverse intensity profiles of the optical bottle beam are simulated numerically. The numerical calculations have been confirmed by the experimental results.
Resumo:
Geologia Lurra aztertzen duen zientzia da: lurraren osaera, egitura eta jatorria, eta bai arroketan aztarnak utzi dituzten iraganeko edo gaur egungo gertaerak ere. Baina, zergatik du gizarteak geologoen beharra? Hona hemen zenbait arrazoi: - Geologoek lurrazalari eta lurpeari buruzko informazioa bildu, eta interpretatu egiten dute. Informazio horrek guztiak ahalbidetzen du planetaren iraganeko historia, Lurrean aurreikus daitezkeen aldaketak eta gure planetak Eguzki-sistemarekin duen harremana finkatzea. - Gizarteak beharrezkoak ditu baliabide naturalak (metalikoak, ez-metalikoak, ura eta erregai fosilak). Geologoen parte-hartzea erabakigarria da hobi berriak aurkitzeko eta ingurumena zaintzen duten baliabide naturalen ustiapen eta kudeaketarako irizpideak ezartzeko. - Kartografia geologikoen bidez arrisku-eremuak identifikatu eta lurzoruaren erabilerak mugatzen dira. Geologoak beharrezkoak dira, beraz, lurraldearen planifikaziorako eta garapen iraunkorrerako estrategiak garatzeko. - Geologiaren ezagutzak eta informazio geologikoaren erabilera egokiak laguntzen dute bizitzak salbatzen eta lurrikarak, tsunamiak, erupzio bolkanikoak, uholdeak eta lurjausiak bezalako katastrofe naturalek eragindako diru-galerak murrizten. Halaber laguntzen dute eraikuntza-proiektuak, herri-lanak eta abar garatzen ere. Proposatutako jardueren bitartez, Zientzia Geologikoen adar desberdinen oinarrizko zenbait alderdi ezagutzera eman nahi ditugu. Horretarako, lau saio antolatu ditugu Paleontologia, Mineralogia, Petrologia eta Tektonika arloetan murgiltzeko.
Resumo:
Using the finite-difference-time-domain method, the near-field optical distribution and properties of Sb thin film thermal lens are calculated and simulated. The results show as follows. Within the near-field distance to the output plane of thermal lens, the spot size is approximately 100 nm, and its intensity is greatly enhanced, which is higher than that of incident light. The spot shape gradually changes from ellipse to round at the distance of more than 12 nm to the output plane. The above-simulated results are further demonstrated by the static optical recording experiment. (C) 2005 American Institute of Physics.
Resumo:
We quantitatively analysed the factors contributing to the optical transmission enhancement of a sub-wavelength Sb thin film lens, using the finite-difference time-domain (FDTD) method. The results show that the transmission enhancement of the dielectric with a Gaussian distributed refractive index loaded in a sub-wavelength circular hole is not only due to the high refractive index dielectric, but also due to the specific distributions of refractive index. It is the first study about the effects of the refractive index distribution on the transmission of a sub-wavelength aperture. This kind of lens has practical applications in the very small aperture lasers and for near-field optical storage and lithography.
Resumo:
Graded-index (GRIN) fiber lens arrays are fabricated from commercial GRIN fibers to collimate a high-power laser diode array. The beam divergence angles are reduced to 4.2 and 14.7 mrad in the fast and slow axes, respectively. The influences of smile and fluctuation in fiber length are discussed. Using an aspherical focal lens system, about 74% power can be launched into a fiber with a numerical aperture (NA) of 0.22 and a core diameter of 400 mu m. (c) 2008 Society of Photo-Optical Instrumentation Engineers.
Resumo:
The encircled energy of a focusing lens is one of the parameters directly affecting the target efficiency in high-power laser facilities. The direct measurement method of the encircled energy for the focusing lens based on the scanning Hartmann test is proposed in this paper. With the scanning Hartmann test setup, the information in the whole aperture of the focusing lens can be achieved. The encircled energy can be obtained by analyzing the spot diagram on the focal plane of the focusing lens. In experiments, the encircled energy of an aspheric focusing lens is measured using this method. The measurement result is in good agreement with that derived from measurement data by an interferometer and the difference is 7.7%. (C) 2006 Elsevier GmbH. All rights reserved.