This is the training and validation data set for the PASCAL VOC 2009 as available from http://pascallin.ecs.soton.ac.uk/challenges/VOC/voc2009/ , if the site weren't dead.
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The goal of this challenge is to recognize objects from a number of visual object classes in realistic scenes (i.e. not pre-segmented objects). It is fundamentally a supervised learning learning problem in that a training set of labelled images is provided. The twenty object classes that have been selected are: Person: person Animal: bird, cat, cow, dog, horse, sheep Vehicle: aeroplane, bicycle, boat, bus, car, motorbike, train Indoor: bottle, chair, dining table, potted plant, sofa, tv/monitor
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Notation Conventions Used in This Section.
A measurement intensive campaign was carried out in Barrow, Alaska in spring 2009 as part of the Ocean-Atmosphere-Sea-Ice-Snowpack program. This dataset contains Volatile Organic Compounds (VOCs) measured using the Trace Organic Gas Analyzer (TOGA) during the campaign.
In 2021, approximately *********** tons of volatile organic compounds (VOCs) were emitted in South Korea. Figures have slightly increased from the previous year, when just around ******* tons of VOCs were emitted.
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A residential indoor air quality study was conducted by Health Canada in 2009 in Halifax, Nova Scotia. A range of air parameters typically found in and around residences was measured for seven consecutive 24-hour periods in 50 homes during the winter and summer seasons, with 42 homes participating in both seasons. Among the different pollutants measured, volatile organic compounds (VOCs) were collected using Summa canisters. The sample canisters were analyzed for 193 polar and non-polar VOCs. This report presents a summary of the 24-hour VOC statistics (per season) obtained as part of this study and is intended to provide relevant Canadian information on exposure to VOCs found indoors and outdoors within non-smoking residences. The report does not provide any interpretation or detailed analysis of the data or trends (e.g., comparing seasons, indoor/outdoor concentrations).
Personeelsadministratie VOC 18e eeuw: persoonsgegevens van personeel op zee en overzee, gekoppeld aan alle scheepsreizen van de VOC. De data zijn overgenomen uit de 18e-eeuwse scheepssoldijboeken en ingetypt in een relationele database.
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This dataset tracks annual asian student percentage from 2009 to 2011 for The Dove (Developing Opportunities Thru Voc. Ed.) vs. Florida and Jackson School District
Several Volatile Organic Compound (VOC) were measured using the whole air gas canisters. One-minute data is reported, although canisters were filled only three times per day, on average. Sample times are reported in Alaska Standard Time (AKST). The measurement sample height for all canisters was at the 18-foot tower location, through the same inlet and silcosteel line as the Trace Organic Gas Analyzer (TOGA) samples for that tower height. Mixing ratios of VOCs in the canisters were determined by later laboratory analysis using Gas Chromatography with Mass Spectrometry (GC-MS) and Gas Chromatography with Flame Ionization Detection (GC-FID). VOC mixing ratios: All mixing ratios are in pptv. Below detection limit -8888 Data not available -9999 Detection limits are < 25 pptv. PI: Eric Apel, apel@ucar.edu. The data are formatted as an Excel document.
This data set contains all the example images used in the manuscript "On Pixel-wise Explanations for Non-Linear Classifier Decisions by Layer-wise Relevance Propaganda" submitted to PLOS ONE (PONE-D-14-2011), which are not part of the PASCAL VOC 2009 or polygon data sets, uploaded separately.
This dataset contains half-hourly averaged volatile organic compound concentrations and fluxes obtained above the canopy of a mixed forest from a flux tower at 52 m a.g.l. at the Vielsalm ICOS ecosystem site in Belgium, from July to October 2009 and from March to October 2010. The concentration data were obtained with a hs-PTR-Quad-MS instrument (Ionicon Analytik GmbH, Austria) and micrometeorological flux data were obtained with the disjunct eddy covariance by mass scanning method. Methodological aspects and data analysis have been described in Laffineur Q. et al., “Isoprene and monoterpene emissions from a mixed temperate forest”, https://doi.org/10.1016/j.atmosenv.2011.02.054, 2011, Laffineur, Q. et al., “Abiotic and biotic control of methanol exchanges in a temperate mixed forest”, https://doi.org/10.5194/acp-12-577-2012, 2012, and Laffineur Q. et al., “Impact of diffuse light on isoprene and monoterpene emissions from a mixed temperate forest”, https://doi.org/10.1016/j.atmosenv.2013.04.025, 2013. The dataset is provided as a two csv files (one per year) with sizes of 2.514 KB (2009) and 4.486 KB (2010) and a complete list of all variables is given in the accompanying pdf file "Dataset_Vielsalm_2009_2010_variables". All ancillary data measured at the site are publicly available and can be obtained from ICOS Fluxnet Archive Product, Vielsalm. Detailed site description and characterization can be found on ICOS Vielsalm station.
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This dataset tracks annual reduced-price lunch eligibility from 2009 to 2023 for Centro Pre-voc. Jose Limon Arce vs. Puerto Rico and Puerto Rico Department Of Education School District
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This dataset contains half-hourly averaged volatile organic compound concentrations and fluxes obtained above the canopy of a mixed forest from a flux tower at 52 m a.g.l. at the Vielsalm ICOS ecosystem site in Belgium, from July to October 2009 and from March to October 2010. The concentration data were obtained with a hs-PTR-Quad-MS instrument (Ionicon Analytik GmbH, Austria) and micrometeorological flux data were obtained with the disjunct eddy covariance by mass scanning method.
Methodological aspects and data analysis have been described in Laffineur Q. et al., “Isoprene and monoterpene emissions from a mixed temperate forest”, https://doi.org/10.1016/j.atmosenv.2011.02.054, 2011, Laffineur, Q. et al., “Abiotic and biotic control of methanol exchanges in a temperate mixed forest”, https://doi.org/10.5194/acp-12-577-2012, 2012, and Laffineur Q. et al., “Impact of diffuse light on isoprene and monoterpene emissions from a mixed temperate forest”, https://doi.org/10.1016/j.atmosenv.2013.04.025, 2013.
The dataset is provided as a two csv files (one per year) with sizes of 2.514 KB (2009) and 4.486 KB (2010) and a complete list of all variables is given in the accompanying pdf file "Dataset_Vielsalm_2009_2010_variables".
All ancillary data measured at the site are publicly available and can be obtained from ICOS Fluxnet Archive Product, Vielsalm. Detailed site description and characterization can be found on ICOS Vielsalm station.
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Latvia Air Pollutant Emissions: Non Methane Volatile Organic Compounds: Tonnes of NMVOC Equivalent: Industry: Manufacture of Electrical Equipment data was reported at 4.570 Tonne in 2021. This records a decrease from the previous number of 6.450 Tonne for 2020. Latvia Air Pollutant Emissions: Non Methane Volatile Organic Compounds: Tonnes of NMVOC Equivalent: Industry: Manufacture of Electrical Equipment data is updated yearly, averaging 5.880 Tonne from Dec 2000 (Median) to 2021, with 22 observations. The data reached an all-time high of 12.200 Tonne in 2006 and a record low of 2.990 Tonne in 2009. Latvia Air Pollutant Emissions: Non Methane Volatile Organic Compounds: Tonnes of NMVOC Equivalent: Industry: Manufacture of Electrical Equipment data remains active status in CEIC and is reported by Organisation for Economic Co-operation and Development. The data is categorized under Global Database’s Latvia – Table LV.OECD.ESG: Environmental: Air Pollutant Emissions: Non Methane Volatile Organic Compounds: by Industry: OECD Member: Annual.
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Slovakia Air Pollutant Emissions: Non Methane Volatile Organic Compounds: Tonnes of NMVOC Equivalent: Industry: Manufacture of Other Non-Metallic Mineral Products data was reported at 706.200 Tonne in 2021. This records an increase from the previous number of 568.680 Tonne for 2020. Slovakia Air Pollutant Emissions: Non Methane Volatile Organic Compounds: Tonnes of NMVOC Equivalent: Industry: Manufacture of Other Non-Metallic Mineral Products data is updated yearly, averaging 374.310 Tonne from Dec 1995 (Median) to 2021, with 27 observations. The data reached an all-time high of 706.200 Tonne in 2021 and a record low of 219.310 Tonne in 2009. Slovakia Air Pollutant Emissions: Non Methane Volatile Organic Compounds: Tonnes of NMVOC Equivalent: Industry: Manufacture of Other Non-Metallic Mineral Products data remains active status in CEIC and is reported by Organisation for Economic Co-operation and Development. The data is categorized under Global Database’s Slovakia – Table SK.OECD.ESG: Environmental: Air Pollutant Emissions: Non Methane Volatile Organic Compounds: by Industry: OECD Member: Annual.
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This report describes the results of a survey at the remains of VOC ship Amsterdam on the beach at Hastings in the United Kingdom Date: 2009-08-21
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Onderzoeksrapport Date: 2009-04-02 (veldwerk)
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Norway Air Pollutant Emissions: Non Methane Volatile Organic Compounds: Tonnes of NMVOC Equivalent: Non Residents On the Territory data was reported at 8.500 Tonne in 2021. This records an increase from the previous number of 6.960 Tonne for 2020. Norway Air Pollutant Emissions: Non Methane Volatile Organic Compounds: Tonnes of NMVOC Equivalent: Non Residents On the Territory data is updated yearly, averaging 9.355 Tonne from Dec 2008 (Median) to 2021, with 14 observations. The data reached an all-time high of 23.820 Tonne in 2012 and a record low of 0.000 Tonne in 2009. Norway Air Pollutant Emissions: Non Methane Volatile Organic Compounds: Tonnes of NMVOC Equivalent: Non Residents On the Territory data remains active status in CEIC and is reported by Organisation for Economic Co-operation and Development. The data is categorized under Global Database’s Norway – Table NO.OECD.ESG: Environmental: Air Pollutant Emissions: Non Methane Volatile Organic Compounds: by Industry: OECD Member: Annual.
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Norway Air Pollutant Emissions: Non Methane Volatile Organic Compounds: Tonnes of NMVOC Equivalent: Industry: Other Service Activities data was reported at 1,397.920 Tonne in 2021. This records an increase from the previous number of 1,282.090 Tonne for 2020. Norway Air Pollutant Emissions: Non Methane Volatile Organic Compounds: Tonnes of NMVOC Equivalent: Industry: Other Service Activities data is updated yearly, averaging 1,230.240 Tonne from Dec 2008 (Median) to 2021, with 14 observations. The data reached an all-time high of 1,397.920 Tonne in 2021 and a record low of 1,160.240 Tonne in 2009. Norway Air Pollutant Emissions: Non Methane Volatile Organic Compounds: Tonnes of NMVOC Equivalent: Industry: Other Service Activities data remains active status in CEIC and is reported by Organisation for Economic Co-operation and Development. The data is categorized under Global Database’s Norway – Table NO.OECD.ESG: Environmental: Air Pollutant Emissions: Non Methane Volatile Organic Compounds: by Industry: OECD Member: Annual.
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Latvia Air Pollutant Emissions: Non Methane Volatile Organic Compounds: Tonnes of NMVOC Equivalent: Industry: Scientific Research and Development data was reported at 1.170 Tonne in 2021. This records an increase from the previous number of 1.090 Tonne for 2020. Latvia Air Pollutant Emissions: Non Methane Volatile Organic Compounds: Tonnes of NMVOC Equivalent: Industry: Scientific Research and Development data is updated yearly, averaging 2.105 Tonne from Dec 2000 (Median) to 2021, with 22 observations. The data reached an all-time high of 4.470 Tonne in 2001 and a record low of 0.760 Tonne in 2009. Latvia Air Pollutant Emissions: Non Methane Volatile Organic Compounds: Tonnes of NMVOC Equivalent: Industry: Scientific Research and Development data remains active status in CEIC and is reported by Organisation for Economic Co-operation and Development. The data is categorized under Global Database’s Latvia – Table LV.OECD.ESG: Environmental: Air Pollutant Emissions: Non Methane Volatile Organic Compounds: by Industry: OECD Member: Annual.
This is the training and validation data set for the PASCAL VOC 2009 as available from http://pascallin.ecs.soton.ac.uk/challenges/VOC/voc2009/ , if the site weren't dead.