Search results for "Impact."

showing 7 items of 1677 documents

How can networks help encourage the development and professionalisation of innovative early STEM Education in a changing world?

2023

Maailma muuttuu monimutkaisemmaksi ja vaatii muun muassa STEM*-osaamista ja lukutaitoa oppijoilta, yhteisön jäseniltä ja yhteiskunnilta. Siksi laadukkaalle varhaiselle STEM-koulutukselle tarvitaan laajaa puolustamista. Tässä artikkelissa hahmotellaan, kuinka vaikutusverkostot (joita on muodostettu käsittelemään monimutkaisia sosiaalisia tai ympäristökysymyksiä) voivat edistää varhaisen STEM-koulutuksen kehittämistä ja ammattimaistumista. Sen tavoitteena on tukea alaa kehittäviä oppilaitoksia lisäämään työnsä vaikutusta paremman ja helposti saavutettavan koulutuksen puolesta maailmanlaajuisesti. Tutkittuaan varhaisen STEM-koulutuksen suunniteltuja vaikutuksia nykyisessä kontekstissa esitellä…

verkostotkoulutusorganisaatiotoppiminenmatematiikkayhteisöllisyysluonnontieteetverkostoituminenSTEM educationtiedetietotekniikkacollaborationyhteistyökemian opetusLUMAtiedeopetuskoulutusteknologiaopettajankoulutusIDoSimpact networkco-creation
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Impact assessment of the soil and water conservation project: Participatory Impact Assessment

2006

vesiensuojeluosallistaminenEtiopiaassessmentkehitysyhteistyöimpactparticipationobjectivePIAvaikuttavuusdevelopmentarviointi
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Chemistry and fluxes of major and trace element from worldwide passive degassing volcanoes: a critical review

2015

Volcanic emissions represent one of the most important natural sources of trace elements (e.g. As, Cd, Cu, Hg, Pb, Sb, Tl and Zn) into the atmosphere, sequentially influencing the hydrosphere, lithosphere and biosphere. The human health hazard during episodic volcanic eruptions generally follows from deposition of coarse and fine particles (2.5-10 and < 2.5 μm) that produces effects such as asthma and lung and respiratory disease. Regarding passive degassing volcanoes, the harmful effects of fluorine fumigation are known both for vegetation (foliar necrosis) and human/animals (fluorosis), but only a few studies have been focused on the effects of potentially toxic trace elements. From a …

volcanic emissions trace elements fluxes environmental impactSettore GEO/08 - Geochimica E Vulcanologia
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Sulfur Degassing From Steam-Heated Crater Lakes: El Chichón (Chiapas, Mexico) and Víti (Iceland)

2018

The composition of the gases released by El Chichón (Chiapas, Mexico) and Víti (Askja volcano, Iceland) volcanic lakes is examined by Multi-GAS for the first time. Our results demonstrate that H2S and SO2 are degassed by these pH 2–3 lakes. We find higher CO2/H2S and H2/H2S ratios in the lakes' emissions (31–5,685 and 0.6–35, respectively) than in the fumarolic gases feeding the lakes (13–33 and 0.08–0.5, respectively), evidencing that only a fraction (0.2–5.4% at El Chichón) of the H2S(g) contributed by the subaquatic fumaroles ultimately reaches the atmosphere. At El Chichón, we estimate a H2S output from the crater lake of 0.02–0.06 t/day. Curiously, SO2 is also detected at trace levels …

volcanic lake010504 meteorology & atmospheric sciencesGeochemistrychemistry.chemical_elementVíti010502 geochemistry & geophysicssulfur degassing01 natural sciencesSulfurEl ChichónGeophysicsImpact craterchemistryGeneral Earth and Planetary SciencesGeophysicEarth and Planetary Sciences (all)Multi-GASGeology0105 earth and related environmental sciencesGeophysical Research Letters
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Lidar detection of carbon dioxide in volcanic plumes

2015

Volcanic gases give information on magmatic processes. In particular, anomalous releases of carbon dioxide precede volcanic eruptions. Up to now, this gas has been measured in volcanic plumes with conventional measurements that imply the severe risks of local sampling and can last many hours. For these reasons and for the great advantages of laser sensing, the thorough development of volcanic lidar has been undertaken at the Diagnostics and Metrology Laboratory (UTAPRAD-DIM) of the Italian National Agency for New Technologies, Energy and Sustainable Economic Development (ENEA). In fact, lidar profiling allows one to scan remotely volcanic plumes in a fast and continuous way, and with high s…

volcanic phenomenaMeteorologygas detection;volcanic phenomena;laser remote sensing;differential absorption lidardifferential absorption lidar; gas detection; laser remote sensing; volcanic phenomena; Applied Mathematics; Computer Science Applications1707 Computer Vision and Pattern Recognition; Electrical and Electronic Engineering; Electronic Optical and Magnetic Materials; Condensed Matter Physicsgas detectiondifferential absorption lidarlaw.inventionVolcanic GasesImpact craterlawlaser remote sensingeventElectrical and Electronic EngineeringRemote sensingevent.disaster_typeDye lasergeography.geographical_feature_categoryElectronic Optical and Magnetic MaterialComputer Science Applications1707 Computer Vision and Pattern RecognitionCondensed Matter PhysicsLaserOptical parametric amplifierApplied MathematicGeographyLidarVolcanoTemporal resolutionSPIE Proceedings
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Volcanic Plume CO2 Flux Measurements at Mount Etna by Mobile Differential Absorption Lidar

2017

Volcanic eruptions are often preceded by precursory increases in the volcanic carbon dioxide (CO2) flux. Unfortunately, the traditional techniques used to measure volcanic CO2 require near-vent, in situ plume measurements that are potentially hazardous for operators and expose instruments to extreme conditions. To overcome these limitations, the project BRIDGE (BRIDging the gap between Gas Emissions and geophysical observations at active volcanoes) received funding from the European Research Council, with the objective to develop a new generation of volcanic gas sensing instruments, including a novel DIAL-Lidar (Differential Absorption Light Detection and Ranging) for remote (e.g., distal) …

volcanic plumes010504 meteorology & atmospheric sciencesFlux010502 geochemistry & geophysicsAtmospheric sciences01 natural sciencesVolcanic plumeVolcanic CO2 fluxImpact craterDifferential Absorption Lidar (DIAL);Remote sensing;Volcanic CO2 flux;Volcanic plumesGas compositionDifferential Absorption Lidar (DIAL)0105 earth and related environmental sciencesRemote sensinggeographygeography.geographical_feature_categoryvolcanic plumes; volcanic CO<sub>2</sub> flux; remote sensing; Differential Absorption Lidar (DIAL)lcsh:QE1-996.5ElevationRemote sensingPlumelcsh:GeologyLidarVolcanoVolcanic plume13. Climate actionGeneral Earth and Planetary SciencesEarth and Planetary Sciences (all)GeologyGeosciences; Volume 7; Issue 1; Pages: 9
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RIAM-menetelmän (Rapid Impact Assessment Matrix) kehittäminen ympäristövaikutusten merkittävyyden arvioinnin näkökulmasta

2008

ympäristövaikutuksetRIAM-menetelmäRapid Impact Assessment Matrixmerkitysarviointi
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