840 research outputs found

    Defalcation of European Union Budget in the Romanian Criminal Law

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    One of the goals for Romania, after the 1st January 2007, was to protect the financial interests of the European Union to fight against fraud, corruption and other illegal activities. In order to achieve this target, the legal framework has been completed by the Law no. 161/2003 which introduced the article no. 182 in the text of the Law no. 78/2000 regarding prevention, discovery and punishing the corruption acts. The author analyses this new article and he develops the two constitutive elements (actus reus, mens rea), the objective and subjective aspects of the analyzed crime, the ways, the legal punishments applicable to this crime.fraud, financial interests, spending, incomes, actus reus, mens rea, legal punishments.

    Psychological Process of Forming the Declarations of Victims and of Crime Witnesses

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    The process of forming the witnesses’ declarations involves a moment of achieving the information circumscribed to the crime or to its author, a moment of keeping the perceived information in memory and, finally, the moment of communicating this information to the judicial organs, by reproducing or acknowledging. To this process forming, all the sensations categories compete, in some way. Some of them have a prevailing role (visual and auditory sensations), others have a subsequent role (tactile, olfactory and gustatory sensations).witness, harmed person, testimony, crime

    The global biogeography of tree leaf form and habit

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    Understanding what controls global leaf type variation in trees is crucial for comprehending their role in terrestrial ecosystems, including carbon, water and nutrient dynamics. Yet our understanding of the factors influencing forest leaf types remains incomplete, leaving us uncertain about the global proportions of needle-leaved, broadleaved, evergreen and deciduous trees. To address these gaps, we conducted a global, ground-sourced assessment of forest leaf-type variation by integrating forest inventory data with comprehensive leaf form (broadleaf vs needle-leaf) and habit (evergreen vs deciduous) records. We found that global variation in leaf habit is primarily driven by isothermality and soil characteristics, while leaf form is predominantly driven by temperature. Given these relationships, we estimate that 38% of global tree individuals are needle-leaved evergreen, 29% are broadleaved evergreen, 27% are broadleaved deciduous and 5% are needle-leaved deciduous. The aboveground biomass distribution among these tree types is approximately 21% (126.4 Gt), 54% (335.7 Gt), 22% (136.2 Gt) and 3% (18.7 Gt), respectively. We further project that, depending on future emissions pathways, 17–34% of forested areas will experience climate conditions by the end of the century that currently support a different forest type, highlighting the intensification of climatic stress on existing forests. By quantifying the distribution of tree leaf types and their corresponding biomass, and identifying regions where climate change will exert greatest pressure on current leaf types, our results can help improve predictions of future terrestrial ecosystem functioning and carbon cycling.EEA Santa CruzFil: Ma, Haozhi. Institute of Integrative Biology. ETH Zurich (Swiss Federal Institute of Technology); SuizaFil: Crowther, Thomas W. Institute of Integrative Biology. ETH Zurich (Swiss Federal Institute of Technology); SuizaFil: Mo, Lidong. Institute of Integrative Biology. ETH Zurich (Swiss Federal Institute of Technology); SuizaFil: Maynard, Daniel S. Institute of Integrative Biology. ETH Zurich (Swiss Federal Institute of Technology); SuizaFil: Maynard, Daniel S. University College London. Department of Genetics, Evolution, and Environment; Reino UnidoFil: Renner, Susanne S. Washington University. Department of Biology; Estados UnidosFil: van den Hoogen, Johan. Institute of Integrative Biology. ETH Zurich (Swiss Federal Institute of Technology); SuizaFil: Zou, Yibiao. Institute of Integrative Biology. ETH Zurich (Swiss Federal Institute of Technology); SuizaFil: Liang, Jingjing. Purdue University. Department of Forestry and Natural Resources; Estados UnidosFil: de-Miguel, Sergio. University of Lleida. Department of Agricultural and Forest Sciences and Engineering; EspañaFil: de-Miguel, Sergio. Joint Research Unit CTFC - AGROTECNIO – CERCA; EspañaFil: Nabuurs, Gert-Jan. Wageningen University and Research; Países BajosFil: Peri, Pablo Luis. Instituto Nacional de Tecnología Agropecuaria (INTA). Estación Experimental Agropecuaria Santa Cruz; Argentina.Fil: Peri, Pablo Luis. Universidad Nacional de la Patagonia Austral.; Argentina.Fil: Peri, Pablo Luis. Consejo Nacional de Investigaciones Científicas y Técnicas; Argentina.Fil: Zohner, Constantin M. Institute of Integrative Biology. ETH Zurich (Swiss Federal Institute of Technology); Suiz

    Integrated global assessment of the natural forest carbon potential

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    Forests are a substantial terrestrial carbon sink, but anthropogenic changes in land use and climate have considerably reduced the scale of this system1. Remote-sensing estimates to quantify carbon losses from global forests2–5 are characterized by considerable uncertainty and we lack a comprehensive ground-sourced evaluation to benchmark these estimates. Here we combine several ground-sourced6 and satellitederived approaches2,7,8 to evaluate the scale of the global forest carbon potential outside agricultural and urban lands. Despite regional variation, the predictions demonstrated remarkable consistency at a global scale, with only a 12% difference between the ground-sourced and satellite-derived estimates. At present, global forest carbon storage is markedly under the natural potential, with a total deficit of 226 Gt (model range = 151–363 Gt) in areas with low human footprint. Most (61%, 139 Gt C) of this potential is in areas with existing forests, in which ecosystem protection can allow forests to recover to maturity. The remaining 39% (87 Gt C) of potential lies in regions in which forests have been removed or fragmented. Although forests cannot be a substitute for emissions reductions, our results support the idea2,3,9 that the conservation, restoration and sustainable management of diverse forests offer valuable contributions to meeting global climate and biodiversity targets.EEA Santa CruzFil: Mo, Lidong. Institute of Integrative Biology. ETH Zurich (Swiss Federal Institute of Technology); SuizaFil: Zohner, Constantin M. Institute of Integrative Biology. ETH Zurich (Swiss Federal Institute of Technology); SuizaFil: Reich, Peter B. University of Minnesota. Department of Forest Resources; Estados UnidosFil: Reich, Peter B. Western Sydney University. Hawkesbury Institute for the Environment; Australia.Fil: Reich, Peter B. University of Michigan. Institute for Global Change Biology; Estados UnidosFil: Liang, Jingjing. Purdue University. Department of Forestry and Natural Resources; Estados UnidosFil: de-Miguel, Sergio. University of Lleida. Department of Agricultural and Forest Sciences and Engineering; EspañaFil: de-Miguel, Sergio. Joint Research Unit CTFC - AGROTECNIO – CERCA; EspañaFil: Nabuurs, Gert-Jan. Wageningen University and Research; Países BajosFil: Renner, Susanne S. Washington University. Department of Biology; Estados UnidosFil: van den Hoogen, Johan. Institute of Integrative Biology. ETH Zurich (Swiss Federal Institute of Technology); SuizaFil: Araza, Arnan. Wageningen University and Research; Países BajosFil: Herold, Martin. Helmholtz GFZ German Research Centre for Geosciences. Remote Sensing and Geoinformatics Section; Alemania.Fil: Peri, Pablo Luis. Instituto Nacional de Tecnología Agropecuaria (INTA). Estación Experimental Agropecuaria Santa Cruz; Argentina.Fil: Peri, Pablo Luis. Universidad Nacional de la Patagonia Austral.; Argentina.Fil: Peri, Pablo Luis. Consejo Nacional de Investigaciones Científicas y Técnicas; Argentina.Fil: Crowther, Thomas W. Institute of Integrative Biology. ETH Zurich (Swiss Federal Institute of Technology); Suiz

    Native diversity buffers against severity of non-native tree invasions

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    Determining the drivers of non-native plant invasions is critical for managing native ecosystems and limiting the spread of invasive species1,2. Tree invasions in particular have been relatively overlooked, even though they have the potential to transform ecosystems and economies3,4. Here, leveraging global tree databases5,6,7, we explore how the phylogenetic and functional diversity of native tree communities, human pressure and the environment influence the establishment of non-native tree species and the subsequent invasion severity. We find that anthropogenic factors are key to predicting whether a location is invaded, but that invasion severity is underpinned by native diversity, with higher diversity predicting lower invasion severity. Temperature and precipitation emerge as strong predictors of invasion strategy, with non-native species invading successfully when they are similar to the native community in cold or dry extremes. Yet, despite the influence of these ecological forces in determining invasion strategy, we find evidence that these patterns can be obscured by human activity, with lower ecological signal in areas with higher proximity to shipping ports. Our global perspective of non-native tree invasion highlights that human drivers influence non-native tree presence, and that native phylogenetic and functional diversity have a critical role in the establishment and spread of subsequent invasions.EEA Santa CruzFil: Delavaux, Camille S. Swiss Federal Institute of Technology. Institute of Integrative Biology; SuizaFil: Crowther, Thomas W. Swiss Federal Institute of Technology. Institute of Integrative Biology; SuizaFil: Zohner, Constantin M. Swiss Federal Institute of Technology. Institute of Integrative Biology; SuizaFil: Robmann, Niamh M. Swiss Federal Institute of Technology. Institute of Integrative Biology; SuizaFil: Lauber, Thomas. Swiss Federal Institute of Technology. Institute of Integrative Biology; SuizaFil: van den Hoogen, Johan. Swiss Federal Institute of Technology. Institute of Integrative Biology; SuizaFil: Kuebbing, Sara. Yale University. The Forest School at The Yale School of the Environment; Estados UnidosFil: Liang, Jingjing. Purdue University. Department of Forestry and Natural Resources; Estados UnidosFil: de-Miguel, Sergio. University of Lleida. Department of Crop and Forest Sciences; EspañaFil: de-Miguel, Sergio. Joint Research Unit CTFC–AGROTECNIO–CERCA; EspañaFil: Nabuurs, Gert-Jan. Wageningen University and Research; Países BajosFil: Peri, Pablo Luis. Instituto Nacional de Tecnología Agropecuaria (INTA). Estación Experimental Agropecuaria Santa Cruz; Argentina.Fil: Peri, Pablo Luis. Universidad Nacional de la Patagonia Austral; Argentina.Fil: Peri, Pablo Luis. Consejo Nacional de Investigaciones Científicas y Técnicas; Argentina.Fil: Maynard, Daniel S. Swiss Federal Institute of Technology. Institute of Integrative Biology; SuizaFil: Maynard, Daniel S. University College London. Department of Genetics, Evolution, and Environment; Reino Unid

    Legal and Financial Problems of International Joint Custody of Children

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    The aim of this article is to analyze very interesting and currently up-to-date area of children living in international joint custody from the legal and financial point of view. This covers the situation when custody of a child is awarded to both parents living in different states of the European Union (or also other states). The number of marriages contracted between Czech nationals and foreign nationals and also between nationals from two different states (not necessarily inside European Union) increases every year while free movement of people is a real practice today. Because these international marriages are becoming more common they bring new problems that must be solved by contemporary law. This regulation needs to result from the knowledge of the children psychology that is affecting family law the most but also has its practical aspects in the area of taxation and payment issues that will be analyzed deeply as well.juridical problems, financial problems, international joint custody, family.

    The Catalogue of “Constantin Ciubuc” Trichoptera (Insecta) Collection of “Grigore Antipa” National Museum of Natural History

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    Abstract The catalogue of “Constantin Ciubuc” trichopteran collection includes a total of 188 species, 178,878 specimens, (68,966 ♂♂ and 110,937 ♀♀) belonging to 19 families of the Order Trichoptera, Class Insecta. Imago insects were caught by the author and different collaborators, or friends, within the period 1986–2015 (Tab. 5). Last material was collected in the summer of 2016, in the Bucegi Natural Park and Natura 2000 site (ROSCI0013 - Bucegi) (Tab. 6). A percentage of less than 0.1% of the samples contained in the collection are insects from “Adriana Murgoci” collection, collected by Petre Iuncu in the period 1953–1954, offered to the author for preservation in 1985 (Tab. 5). Almost all samples were captured by light traps (white, black, blue), using mercury vapor lamps and / or incandescent light lamps and preserved in tubes, hermetically sealed, in ethyl alcohol. All information regarding the number of specimens, species, author, sex, habitat, sampling places, methods, number, the person who made the capture, climatic conditions during the collection, the date of collection, the geographical coordinates of sampling points, and other information are included in the database (Tabs 5 and 6). Some information on the Romanian endemic species, of the Balkans and of south-eastern Europe are given, as well as the taxonomic index, index of localities, sampling methodology, distribution map of the sampling places in Romania. The large number of species, specimens, vast area, sampling, information contained in the database (Tabs 5, 6) make the collection a scientific reference document for freshwater invertebrate fauna of Romania. It is the single complete trichopteran collection, with specimens collected from Romanian territory.</jats:p

    Hochzeitslied zur Vermählung des Herzogs Johann Georg (I.) zu Sachsen mit der Herzogin Sibylla Elisabeth zu Württemberg 16. Septemberr 1604 : für Sopran, Alt, Tenor und Bass.

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    Republished for the celebration of 800 year's reign of the House of Wettin, Saxony, by Theodor Distel, Richard Müller, and Constantin Sander.German words. Author of text unknown; probably by composer.For SATB, unaccompanied.Mode of access: Internet

    "Uma Pequena Contribuição", de Constantin Constantius (Søren Kierkegaard)

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    On this paper, signed by Soren Kierkegaard’s pseudonym, Constantin Constantius, author of Repetition (Gjentagelse), despite never being published, the Danish philosopher takes on Professor Heiberg’s critique of his book with irony, and deepening the matter of the spirit in the concept of repetition. In this translation, it was chosen to keep the notes from the manuscript.Neste texto, assinado pelo pseudônimo de Søren Kierkegaard, Constantin Constantius, autor de A Repetição (Gjentagelse), apesar de nunca publicado, o filósofo dinamarquês rebate as críticas do Professor Heiberg ao seu livro com ironia, e aprofundando a questão do espírito no conceito de repetição. Nesta tradução, atentamos também para deixar anotações do manuscrito

    Climat: papiers de recherche moissonnés (26/07/2019)

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    The global tree restoration potential / Jean-Francois Bastin, Yelena Finegold, Claude Garcia, Danilo Mollicone, Marcelo Rezende, Devin Routh, Constantin M. Zohner, Thomas W. Crowther, Science, 365, pp. 76-79, 5 July 2019 lien The restoration of trees remains among the most effective strategies for climate change mitigation.We mapped the global potential tree coverage to show that 4.4 billion hectares of canopy cover could exist under the current climate. Excluding existing trees and agri..
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