Category:OSW8ce6d31646c9553d89d3ad07d259b7cc: Difference between revisions

Category page
Category:OSW8ce6d31646c9553d89d3ad07d259b7cc
([bot] update of page content)
Tag: Metadata slot edit
 
([bot] update of page content)
Tag: Metadata slot edit
jsondata
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     "iri": "chameo:XpsVariableKinetic",
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     "name": "XpsVariableKinetic",
     "name": "XpsVariableKinetic",
     "label": [
     "label": [
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     ],
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             "title": "OSW8ce6d31646c9553d89d3ad07d259b7cc",
             "title": "OSW8ce6d31646c9553d89d3ad07d259b7cc",
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     "altLabel": [
     "altLabel": [
         {
         {
             "text": "X-ray photoelectron spectroscopy (XPS)",
             "text": "Electron spectroscopy for chemical analysis (ESCA)",
             "lang": "en"
             "lang": "en"
         },
         },
         {
         {
             "text": "Electron spectroscopy for chemical analysis (ESCA)",
             "text": "X-ray photoelectron spectroscopy (XPS)",
             "lang": "en"
             "lang": "en"
         }
         }
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Revision as of 21:40, 26 February 2025

XpsVariableKinetic
ID OSW8ce6d31646c9553d89d3ad07d259b7cc
UUID 8ce6d316-46c9-553d-89d3-ad07d259b7cc
Label XpsVariableKinetic
Machine compatible name XpsVariableKinetic
Statements (outgoing)
Statements (incoming)

Description


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    rdf_type
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    name"XpsVariableKinetic"
    label
    text"XpsVariableKinetic"
    lang"en"
    description
    text"X-ray photoelectron spectroscopy (XPS), also known as ESCA (electron spectroscopy for chemical analysis) is a surface analysis technique which provides both elemental and chemical state information virtually without restriction on the type of material which can be analysed. It is a relatively simple technique where the sample is illuminated with X-rays which have enough energy to eject an electron from the atom. These ejected electrons are known as photoelectrons. The kinetic energy of these emitted electrons is characteristic of the element from which the photoelectron originated. The position and intensity of the peaks in an energy spectrum provide the desired chemical state and quantitative information. The surface sensitivity of XPS is determined by the distance that that photoelectron can travel through the material without losing any kinteic energy. These elastiaclly scattered photoelectrons contribute to the photoelectron peak, whilst photoelectrons that have been inelastically scattered, losing some kinetic energy before leaving the material, will contribute to the spectral background."
    lang"en"
    meta
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    namespace"Category"
    change_id
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    type
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    imported_from"chameo:XpsVariableKinetic"
    altLabel
    text"Electron spectroscopy for chemical analysis (ESCA)"
    lang"en"
    text"X-ray photoelectron spectroscopy (XPS)"
    lang"en"

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