In biological literature, several definitions of quantitative autoradio- graphy are given.The term is defined as either the determination and com- parison of the density of silver grains … Mehr…
In biological literature, several definitions of quantitative autoradio- graphy are given.The term is defined as either the determination and com- parison of the density of silver grains above various structures or under varying conditions, or the determination of absolute quantities of radio- activity.In both these cases, photometric measurement serves for more rapid and more exact evaluation of grain densities than would be possible by visual counting of the grains.The equipment generally used for the photometric measurement of silver grains consists of a microscope, a photocell, an electronic amplifier system and a display unit.Grains can be made accessible to photometric evaluation by various kinds of microscopic illumination: 1.Substage bright-field illumination. 2. Substage dark-field illumination. 3. Incident dark-field illumination. 4. Vertical bright-field illumination. With all these types of illumination, the relationship between the luminous flux I absorbed by the film, scattered into the objective and reflected or diffracted, and the flux 10 which is not affected by the film is used as a measure of grain density.Since these are differential measurements, the light beam I transmitted by the film is in itself a measure of grain density if the luminous flux 10 incident on the grains is kept constant.This approach has been used in a large number of measuring setups.; PDF; Scientific, Technical and Medical > Medicine: general issues > Medical equipment & techniques > Medi, Springer Berlin Heidelberg<
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In biological literature, several definitions of quantitative autoradio graphy are given. The term is defined as either the determination and com parison of the density of silver grains… Mehr…
In biological literature, several definitions of quantitative autoradio graphy are given. The term is defined as either the determination and com parison of the density of silver grains above various structures or under varying conditions, or the determination of absolute quantities of radio activity. In both these cases, photometric measurement serves for more rapid and more exact evaluation of grain densities than would be possible by visual counting of the grains. The equipment generally used for the photometric measurement of silver grains consists of a microscope, a photocell, an electronic amplifier system and a display unit. Grains can be made accessible to photometric evaluation by various kinds of microscopic illumination: 1. Substage bright-field illumination. 2. Substage dark-field illumination. 3. Incident dark-field illumination. 4. Vertical bright-field illumination. With all these types of illumination, the relationship between the luminous flux I absorbed by the film, scattered into the objective and reflected or diffracted, and the flux 10 which is not affected by the film is used as a measure of grain density. Since these are differential measurements, the light beam I transmitted by the film is in itself a measure of grain density if the luminous flux 10 incident on the grains is kept constant. This approach has been used in a large number of measuring setups. Books > Life Sciences eBook, Springer Shop<
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In biological literature, several definitions of quantitative autoradio graphy are given. The term is defined as either the determination and com parison of the density of silver grains… Mehr…
In biological literature, several definitions of quantitative autoradio graphy are given. The term is defined as either the determination and com parison of the density of silver grains above various structures or under varying conditions, or the determination of absolute quantities of radio activity. In both these cases, photometric measurement serves for more rapid and more exact evaluation of grain densities than would be possible by visual counting of the grains. The equipment generally used for the photometric measurement of silver grains consists of a microscope, a photocell, an electronic amplifier system and a display unit. Grains can be made accessible to photometric evaluation by various kinds of microscopic illumination: 1. Substage bright-field illumination. 2. Substage dark-field illumination. 3. Incident dark-field illumination. 4. Vertical bright-field illumination. With all these types of illumination, the relationship between the luminous flux I absorbed by the film, scattered into the objective and reflected or diffracted, and the flux 10 which is not affected by the film is used as a measure of grain density. Since these are differential measurements, the light beam I transmitted by the film is in itself a measure of grain density if the luminous flux 10 incident on the grains is kept constant. This approach has been used in a large number of measuring setups., Springer<
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Microautoradiography and Electron Probe Analysis - Their Application to Plant Physiology: ab 96.49 € eBooks > Fachthemen & Wissenschaft > Wissenschaften allgemein Springer Berlin Heidelberg eBook als pdf, Springer Berlin Heidelberg<
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In biological literature, several definitions of quantitative autoradio- graphy are given.The term is defined as either the determination and com- parison of the density of silver grains … Mehr…
In biological literature, several definitions of quantitative autoradio- graphy are given.The term is defined as either the determination and com- parison of the density of silver grains above various structures or under varying conditions, or the determination of absolute quantities of radio- activity.In both these cases, photometric measurement serves for more rapid and more exact evaluation of grain densities than would be possible by visual counting of the grains.The equipment generally used for the photometric measurement of silver grains consists of a microscope, a photocell, an electronic amplifier system and a display unit.Grains can be made accessible to photometric evaluation by various kinds of microscopic illumination: 1.Substage bright-field illumination. 2. Substage dark-field illumination. 3. Incident dark-field illumination. 4. Vertical bright-field illumination. With all these types of illumination, the relationship between the luminous flux I absorbed by the film, scattered into the objective and reflected or diffracted, and the flux 10 which is not affected by the film is used as a measure of grain density.Since these are differential measurements, the light beam I transmitted by the film is in itself a measure of grain density if the luminous flux 10 incident on the grains is kept constant.This approach has been used in a large number of measuring setups.; PDF; Scientific, Technical and Medical > Medicine: general issues > Medical equipment & techniques > Medi, Springer Berlin Heidelberg<
No. 9783642874963. Versandkosten:Instock, Despatched same working day before 3pm, zzgl. Versandkosten.
In biological literature, several definitions of quantitative autoradio graphy are given. The term is defined as either the determination and com parison of the density of silver grains… Mehr…
In biological literature, several definitions of quantitative autoradio graphy are given. The term is defined as either the determination and com parison of the density of silver grains above various structures or under varying conditions, or the determination of absolute quantities of radio activity. In both these cases, photometric measurement serves for more rapid and more exact evaluation of grain densities than would be possible by visual counting of the grains. The equipment generally used for the photometric measurement of silver grains consists of a microscope, a photocell, an electronic amplifier system and a display unit. Grains can be made accessible to photometric evaluation by various kinds of microscopic illumination: 1. Substage bright-field illumination. 2. Substage dark-field illumination. 3. Incident dark-field illumination. 4. Vertical bright-field illumination. With all these types of illumination, the relationship between the luminous flux I absorbed by the film, scattered into the objective and reflected or diffracted, and the flux 10 which is not affected by the film is used as a measure of grain density. Since these are differential measurements, the light beam I transmitted by the film is in itself a measure of grain density if the luminous flux 10 incident on the grains is kept constant. This approach has been used in a large number of measuring setups. Books > Life Sciences eBook, Springer Shop<
new in stock. Versandkosten:más costos de envío., zzgl. Versandkosten
In biological literature, several definitions of quantitative autoradio graphy are given. The term is defined as either the determination and com parison of the density of silver grains… Mehr…
In biological literature, several definitions of quantitative autoradio graphy are given. The term is defined as either the determination and com parison of the density of silver grains above various structures or under varying conditions, or the determination of absolute quantities of radio activity. In both these cases, photometric measurement serves for more rapid and more exact evaluation of grain densities than would be possible by visual counting of the grains. The equipment generally used for the photometric measurement of silver grains consists of a microscope, a photocell, an electronic amplifier system and a display unit. Grains can be made accessible to photometric evaluation by various kinds of microscopic illumination: 1. Substage bright-field illumination. 2. Substage dark-field illumination. 3. Incident dark-field illumination. 4. Vertical bright-field illumination. With all these types of illumination, the relationship between the luminous flux I absorbed by the film, scattered into the objective and reflected or diffracted, and the flux 10 which is not affected by the film is used as a measure of grain density. Since these are differential measurements, the light beam I transmitted by the film is in itself a measure of grain density if the luminous flux 10 incident on the grains is kept constant. This approach has been used in a large number of measuring setups., Springer<
Nr. 978-3-642-87496-3. Versandkosten:Worldwide free shipping, , DE. (EUR 0.00)
Microautoradiography and Electron Probe Analysis - Their Application to Plant Physiology: ab 96.49 € eBooks > Fachthemen & Wissenschaft > Wissenschaften allgemein Springer Berlin Heidelbe… Mehr…
Microautoradiography and Electron Probe Analysis - Their Application to Plant Physiology: ab 96.49 € eBooks > Fachthemen & Wissenschaft > Wissenschaften allgemein Springer Berlin Heidelberg eBook als pdf, Springer Berlin Heidelberg<
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Detailangaben zum Buch - Microautoradiography and Electron Probe Analysis
EAN (ISBN-13): 9783642874963 Herausgeber: Springer Science+Business Media
Buch in der Datenbank seit 2017-05-09T06:24:19+02:00 (Berlin) Detailseite zuletzt geändert am 2023-11-25T13:39:25+01:00 (Berlin) ISBN/EAN: 9783642874963
ISBN - alternative Schreibweisen: 978-3-642-87496-3 Alternative Schreibweisen und verwandte Suchbegriffe: Titel des Buches: probe
Daten vom Verlag:
Autor/in: U. Lüttge Titel: Microautoradiography and Electron Probe Analysis - Their Application to Plant Physiology Verlag: Springer; Springer Berlin 242 Seiten Erscheinungsjahr: 2012-12-06 Berlin; Heidelberg; DE Sprache: Englisch 96,29 € (DE) 99,00 € (AT) 118,00 CHF (CH) Available IV, 242 p. 34 illus.
EA; E107; eBook; Nonbooks, PBS / Biologie/Botanik; Pflanzenbiologie; Verstehen; Autoradiographie; Elektronenstrahlmikroanalyse; Pflanzenphysiologie; Plant physiology; physiology; C; Plant Physiology; Biomedical Research; Biomedical and Life Sciences; Medizinische Forschung; BC
Introductory Chapter Botanical Applications of Microautoradiography.- 1 Photometric Methods in Quantitative Autoradiography.- 2 Quantitative Autoradiography in the Presence of Crossfire.- 3 Microautoradiography of Water-Soluble Inorganic Ions.- 4 Microautoradiography of Water-Soluble Organic Compounds..- 5 Microautoradiography of Organic Compounds Insoluble in a Wide Range of Polar and Non-polar Solvents.- 6 Autoradiography with the Electron Microscope: Experimental Techniques and Considerations Using Plant Tissues.- 7 Electron Probe Analysis.
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