Use of laser spectroscopy in ceramic firing (Q10264): Difference between revisions

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(‎Created claim: summary (P836): The project is focused on the development of methodology and instrumentation of laser-built plasma spectroscopy (LIBS) with remote detection for monitoring of ceramic firing process. The developed technique allows for the monitoring of changes in different materials during firing. This will enable a better understanding of the events taking place during the individual firing phases and then optimising the actual firing process. a., translated_s...)
(‎Changed label, description and/or aliases in 2 languages: Changing unique label-description pair)
description / endescription / en
Project in Czech Republic financed by DG Regio
Project Q10264 in Czech Republic
description / csdescription / cs
Projekt v České republice financovaný DG Regio
Projekt Q10264 v Czechia

Revision as of 15:27, 28 October 2020

Project Q10264 in Czech Republic
Language Label Description Also known as
English
Use of laser spectroscopy in ceramic firing
Project Q10264 in Czech Republic

    Statements

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    35,317,875.4 Czech koruna
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    1,412,715.02 Euro
    10 January 2020
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    57,446,121.35 Czech koruna
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    2,297,844.85 Euro
    10 January 2020
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    61.48 percent
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    1 January 2017
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    29 September 2019
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    Best - Business,a.s.
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    49°30'26.03"N, 16°31'3.04"E
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    67972
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    Projekt je zaměřen na vývoj metodologie a instrumentace spektroskopie laserem buzeného plazmatu (LIBS) s dálkovou detekcí pro monitoring vypalovacího procesu keramiky. Vyvinutá technika umožní sledování změn v různých materiálech během výpalu. To umožní lepší pochopení dějů probíhajících při jednotlivých fázích výpalu a následně optimalizaci vlastního procesu vypalování. a. (Czech)
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    The project is focused on the development of methodology and instrumentation of laser-built plasma spectroscopy (LIBS) with remote detection for monitoring of ceramic firing process. The developed technique allows for the monitoring of changes in different materials during firing. This will enable a better understanding of the events taking place during the individual firing phases and then optimising the actual firing process. a. (English)
    22 October 2020
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    Identifiers

    CZ.01.1.02/0.0/0.0/15_019/0004760
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