Academic literature on the topic 'Impaktor'

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Journal articles on the topic "Impaktor"

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Hinze, Peter, and Gerd Heuser. "Besserer Fußgängerschutz durch neue Impaktor-Prüfmethode." ATZ - Automobiltechnische Zeitschrift 109, no. 5 (May 2007): 426–29. http://dx.doi.org/10.1007/bf03221888.

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Goenawan, R. Djoko, Untung Haryanto, Pitoyo Sarwono Sudibyo, Bambang Asmoro, and Pamuji Pamuji. "HASIL PENGUKURAN PARTIKEL ASAP GROUND PERTICLES GENERATOR (GPG) DI LAB TMC PUSPIPTEK SERPONG PADA 11 APRIL 2013." Jurnal Sains & Teknologi Modifikasi Cuaca 14, no. 1 (June 30, 2013): 59. http://dx.doi.org/10.29122/jstmc.v14i1.2683.

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ABSTRAK Telah dilakukan pengukuran distribusi dan konsentrasi asap partikel dari hasil penyalaan GPG yang dilakukan di Lap TMC - Puspiptek Serpong. Alat yang digunakan dalam pengukuran baik besar, distribusi dan konsentrasi partikel adalah menggunakan LightHouse (LH) yang bisa menampilkan secara langsung dalam layar monitor alat tersebut. Yang secara langsung terbaca dalam monitoring LH adalah besar partikel dan jumlah partikel per satuan volume (m3). Kisaran alat pengukur partikel LH bisa mengukur terkecil 0.3 mikron hingga 5 mikron dengan rincian 0.3, 0.5, 1.0, 2.5, dan 5 mikron. Light House (LH) adalah satu satunya alat yang biasa digunakan untuk pengukuran udara dan lingkungan dari Laboratorium Aerosol, PTKMR BATAN. Telah dilakukan pengukuran partikel dari asap GPG (Ground Particles Generator) sebanyak 21 kali sampling. Sekali pegambilan sampling asap diperlukan waktu sebanyak 5 menit dan pengukuran udara dalam wadah sampling tersebut juga diperlukan waktu sekitar 5 menit. Selain pengukuran dengan menggunakan LH, juga dilakukan pengukuran dengan menggunakan Impaktor Kaskade Type Anderson dengan 12 tingkat yang memungkinkan pengukuran dari 0.1 mikron hingga 9 mikron. Waktu yang diperlukan cukup lama, yaitu antara pukul 13.15 hingga 18.15 WIB yaitu 5 jam. Impaktor tidak bisa langsung terbaca hasil pengukuran partikelnya namun harus di proses kemudian di kondiskan serta dilakukan penimbangan partikel yang mengendap di setiap tingkatan, sehingga bisa diketahui distribusi partikel tersebut setiap tingkat dari 0.1 mikron hingga partikel terbesar yaitu 9 mikron. Hasil sementara dari pengukuran menggunakan LH dari sebanyak 21 sampel adalah untuk partikel 0.3 mikron memiliki jumlah partikel terbesar mencapai 495.466.815/m3 atau 495 partikel/cm3 asap dan terkecil sebanyak 51.767.763/m3 atau 52 partikel/cm3 asap. Sementara, untuk partikel yang terukur 0.5 mikron terbanyak mencapai 8.969.923/m3 atau 9 partikel/cm3 asap dan terkecil 84.755.200 partikel/cm3 atau 85 partikel/cm3. Sedangkan, partikel yang terukur 1.0, 2.5 dan 5.0 mikron di LH tidak terpantau atau tidak ada sama sekali alias Nol (skala 1 cm3). Tampak puncak distribusinya diperkirakan kurang dari 0.3 mikron (antara 0.1 – 0.05 mikron), sebagai “tail” kanan distribusi (jika dianggap normal) adalah 0.5 mikron. Perkiraan tersebut akan di buktikan dengan menggunakan Impaktor yang bisa mengukur partikel terkecil 0.1 mikron. ABSTRACT Measurement of Concentration Distribution and smoke particles from the ignition GPG conducted in TMC-Lab Puspiptek Serpong. Measurement tool used in both large, the distribution and concentration of particles is using Light-House (LH) which can display directly in the device monitor screen which is directly readable in monitoring large particles and LH is the number of particles per unit volume (m3). LH range of gauges can measure the smallest particles 0.3 microns to 5 microns with the details 0.3, 0.5, 1.0, 2.5 and 5 microns. Light House (LH) is the only tool used to measure air and environment of the Aerosol Laboratory, PTKMR BATAN in Jakarta. Have performed measurements of the smoke particles GPG (Ground Particles Generator) as much as 21 times the sampling. Once pegambilan sampling smoke take as many as 5 minutes and air measurements in the sampling container also takes about 5 minutes as well. In addition to measurements by using LH, also be measured by using the cascade Impaktor Type Anderson with 12 levels that allow measurement of 0.1 microns to 9 microns. It takes quite a long time, which is between 13:15 to 18:15 hrs ie 5 hour. Impaktor can not directly read the results of measurements of the particles but must be in process later in kondiskan and sediment particles weighing is done at every level, so they can know the distribution of particles of 0.1 microns each level until the largest particles is 9 microns. Interim results of measurements using as many as 21 samples of LH is for 0.3 micron particles have the greatest number of particles reaching 495 partikel/cm3 495.466.815/m3 or as much smoke and the smallest 52 partikel/cm3 51.767.763/m3 or smoke. While, for the measured particles 0.5 microns or 9 the highest reaches 8.969.923/m3 partikel/cm3 smoke and smallest partikel/m3 84,755,200 or 85 partikel/cm3. Whereas, particles measured 1.0, 2.5 and 5.0 microns in LH is not monitored or none at all, aka Zero. Looks peak distribution estimated to be less than 0.1 microns, as the "tail" distribution right (if it is considered normal) is 0.5 microns. The estimate will be proved by using Impaktor that can measure the smallest particles of 0.1 microns.
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Tragsdorf, Carsten, Marian Bulla, and Dipl Ing Niels Nowack. "Erweiterter FEM-Entwicklungsansatz für einen Free-Motion-Headform-Impaktor." ATZ - Automobiltechnische Zeitschrift 108, no. 2 (February 2006): 116–19. http://dx.doi.org/10.1007/bf03221769.

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Walz-Jung, H., I. Krämer, and W. Kamin. "Aerosolcharakteristika ausgewählter Druckluftvernebler für Erwachsene in Simulationsmodellen und Verneblung von Salbutamol." Pneumologie 72, no. 12 (November 19, 2018): 820–31. http://dx.doi.org/10.1055/a-0749-5520.

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Zusammenfassung Ziel Der Erfolg einer Inhalationstherapie wird durch Menge und Qualität des inhalierten Aerosols bestimmt. Die Auswahl eines Verneblers bedarf der Kenntnis der entsprechenden Aerosolcharakteristika. Methoden Die Aerosolperformance von 9 marktüblichen Druckluftverneblern wurde in vitro in 2 Simulationsmodellen geprüft. Salbutamol (Sultanol forte® Fertiginhalat 2,5 mg/2,5 ml; GSK) wurde über 4 Minuten vernebelt. Die Outputparameter wurden mit dem Atemzugsimulator PARI Compas II (Erwachsenenmanöver nach Ph.Eur.9.0; n = 5/6 Verneblungen) und die aerodynamische Partikelgrößenverteilung mit dem Next Generation Impaktor (Ph.Eur.9.0, Copley Scientific; n = 3 Verneblungen) per HPLC bestimmt. Ergebnisse Die Vernebler generierten deutlich unterschiedliche Abgaberaten und Aerosolspektren. Die Drug Delivery Rate (DDR) variierte zwischen 196 µg/min (PARI LC Sprint (blau)) und 67 µg/min (MIDINEB). Die aus DDR und Feinpartikelanteil ≤ 5 µm berechnete intrapulmonal deponierte Aerosolmenge (Respirable Drug Delivery Rate, RDDR) variierte um den Faktor 3,5. Schlussfolgerungen Die Ergebnisse der In-vitro-Untersuchungen können unterstützend zur Auswahl eines geeigneten Druckluftverneblers genutzt werden. Für eine effektive Therapie und gute Compliance sollte ein Vernebler mit einer hohen RDDR gewählt werden.
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Lemke, Carmen. "Impakt Festival." Ludwigsburger Beiträge zur Medienpädagogik 4 (January 1, 2003): 1. http://dx.doi.org/10.21240/lbzm/04/17.

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Marton, János, and Szilvia Báló. "Cooperation or false authorship? – Scientometric investigations on the connections between the number of authors, the scientific cooperation and the effectivity." Orvosi Hetilap 148, no. 12 (March 1, 2007): 559–62. http://dx.doi.org/10.1556/oh.2007.27868.

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Bevezetés: A kutatási teljesítmények tudománymetriai értékelésének realitását befolyásolhatja a „feliratkozás”, a nem érdemi szerzőség. Ugyanakkor a vizsgálatok eredményességéhez és színvonalához érdemben járul hozzá a több kutató, illetve több intézet közös munkája. Magyarországon különösen fontos ez a kérdés a tudománytámogatáshoz kapcsolódó tudománymetriai értékelések validitása szempontjából. Célkitűzés: A szerzők módszert kívántak kidolgozni a feliratkozás leleplezésére, pontosabban a szerzők és intézetek közötti együttműködés, valamint a közlemények impakt faktorral kifejezett színvonala közt elvárható pozitív összefüggés ellenőrzésére. Módszerek: A Szegedi Tudományegyetem Általános Orvostudományi Kar (ÁOK) impakt faktoros folyóiratokban megjelent cikkeit csoportosították a klinikai és elméleti szakterületek szerint, valamint e csoportokon belül a tulajdonossá minősített ÁOK-intézet kutatóinak az egyes cikkek szerzői közti többsége illetve kisebbsége szerint. Az egyes csoportok cikkeit rangsorolták az impakt faktor szerint, s összehasonlították a rangsor két fele közt az átlagos szerzőszámot. Eredmények: Az átlagos szerzőszám minden esetben kisebb volt a cikkek alacsonyabb impakt faktorú felében. Az is kiderült, hogy mind a szerzőszám-növekedés, mind az intézetek közti együttműködés emelte az impakt faktorral kifejezett színvonalat. Megerősítést nyert tehát a vizsgált esetben a hipotézis, miszerint a szerzői és intézeti együttműködés javítja a kutatás eredményességét.
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Weber, A. P., and T. Wu. "Kontaktauflaung von Nanopartikeln bei Impaktion." Chemie Ingenieur Technik 81, no. 6 (June 2009): 791–95. http://dx.doi.org/10.1002/cite.200800177.

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Quast, Matthias, Anja Hummeltenberg, and Manfred Curbach. "Hochleistungsleichtbeton unter Impakt." Beton- und Stahlbetonbau 107, no. 1 (January 2012): 15–22. http://dx.doi.org/10.1002/best.201100076.

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Wu, T., and A. P. Weber. "Trockendispergierung und Charakterisierung von Nanopartikeln durch Impaktion." Chemie Ingenieur Technik 80, no. 9 (September 2008): 1431. http://dx.doi.org/10.1002/cite.200750498.

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Gracza, Tünde, and Istvánné Somoskövi. "Impact factor and/or Hirsch index?" Orvosi Hetilap 148, no. 18 (May 1, 2007): 849–52. http://dx.doi.org/10.1556/oh.2007.27942.

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Lehet-e valóban a tudományos teljesítményt csak a kutatók publikációinak számával mérni? Az Institute for Scientific Information által megjelentetett impaktfaktor-listák évtizedek óta szolgálnak mérőeszközként a tudományos tevékenység minősítésére. Az impakt faktor Eugene Garfield, az Institute for Scientific Information alapítójának nevéhez fűződik. Az impakt faktort évente állapítja meg az Institute for Scientific Information az általa indexelt folyóiratokra vonatkozóan, és a Journal of Citation Reportsban teszi közzé. Ez a mérőszám csak folyóiratokra alkalmazható, sem a cikkekre, sem pedig a publikáló tudósokra. Az egyes tudósok hatástényezőjének meghatározására rendelkezésre áll a h-index, vagy Hirsch-szám. Ezt az indexet nemrég Hirsch definiálta mint új, a tudományos tevékenység mérésére alkalmazható módszert. Ha egy tudós n cikket publikált, és mindegyikre legkevesebb n -szer hivatkoztak, akkor az ő h-indexe n . A h-index inkább az egyén, és nem a folyóiratok hatását próbálja meghatározni. A h-index a publikációk száma és a rájuk történt hivatkozások közötti egyensúly eredményeként jött létre. A h-index az egyes tudósok hatását fejezi ki. A h-index és/vagy impakt faktor a jövő kérdése.
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Dissertations / Theses on the topic "Impaktor"

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Kodad, Daniel. "Impaktor pro laboratorní záchyt jemných částic." Master's thesis, Vysoké učení technické v Brně. Fakulta strojního inženýrství, 2021. http://www.nusl.cz/ntk/nusl-443199.

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The focus of this master’s thesis is the issue of fine dust particles suspended in the air and their measurement. The thesis explains the basic characteristics of fine particles and the rules, which they follow. The section then examines the health risks of inhaled particles. Next is explained the influence of particles in the air on the environment, the historical development of the air pollution in the Czech Republic and the most important pollutants. After that is described the legislation, which frames the limits for pollutants suspended in the air. In the practical part is described the methods for calculation the geometry of cascade impactor, the design of three-stage impactor and finally the comparison with professional impactor. The designed impactor was then constructed and tested with wood burning stove as a source of particles.
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Kadrmas, Lukáš. "Homogenní kapota - chování při nárazech impaktorem hlavy." Master's thesis, Vysoké učení technické v Brně. Fakulta strojního inženýrství, 2009. http://www.nusl.cz/ntk/nusl-228590.

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This thesis deals with the subject of crash tests Euro NCAP, concretely child-head impact test to the car bonnet. Object of thesis is make homogeneous car bonnet, where will remove stiffness places and also the bonnet global stiffness won´t be worst. The bonnet must carry out limits for pedestrian protection.
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Coufal, Tomáš. "Studie vlivu vlastností materiálu na simulaci nárazu hlavy chodce na kapotu." Master's thesis, Vysoké učení technické v Brně. Fakulta strojního inženýrství, 2009. http://www.nusl.cz/ntk/nusl-228589.

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The thesis describes the complex of basic testing procedures conducted by Euro NCAP company with a view to the examination of pedestrian protection in accordance with EEVC WG 17 and topical instruments used at passenger vehicles for pedestrian protection. It includes a detailed procedure of the creation of an adult head impactor including its certification and the formation of its impact on the bonnet of the vehicle. It is specialized in the studies how material properties influence the size of HIC criterion.
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Jaška, Lukáš. "Simulace nárazu vozidla na dolní končetinu chodce." Master's thesis, Vysoké učení technické v Brně. Fakulta strojního inženýrství, 2008. http://www.nusl.cz/ntk/nusl-377357.

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This thesis seeks to simulate the impact on the human foot on the car bumper. The opening section deals with requirements as to the current passive safety features aiming to mitigate the consequences of such impact. The thesis also describes the construction of a human foot impactor, its certification via both static and dynamic tests, a simulation of the cash test and its evaluation. The designed model as well as the simulation procedure have been led according to the current Euro NCAP specifications.
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Kysilko, Vít. "Optimalizace HIC kritéria při nárazu impaktorem hlavy na kapotu auta." Master's thesis, Vysoké učení technické v Brně. Fakulta strojního inženýrství, 2013. http://www.nusl.cz/ntk/nusl-230463.

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Kvůli stále značnému počtu usmrcených chodců při dopravních nechodách se výrobci automobilů snaží pomocí vhodné konstrukce automobilu zmírnit následky způsobené nehodou. Při srážce impaktoru hlavy s kapotou automobilu dochází ke zpomalení impaktoru a na toto zpomalení je aplikováno HIC kitérium. HIC kritérium vyhodnocuje míru možnosti poranění hlavy při srážce. Cílem diplomové práce je výběr nejvhodnějšího časového průběhu zpomalení dětského impaktoru hlavy při srážce s kapotou automobilu Škoda Superb II z hlediska HIC kritéria a navržení konstrukčních úprav kapoty a okolních částí, které se dostanou do kontaktu tak, aby se skutečný průběh blížil teoretické fyziologicky přípustné variantě. Pro výpočtové modelování úlohy byla použita explicitní varianta metody konečných prvků (MKP). V první části práce jsou analyzovány data ze simulací úderu impaktoru dětské hlavy na kapotu auta, zvlástě pak analýzy částí energie spotřebované kapotou při srážce s impaktorem. Tyto data byly poskytnuté firmou Škoda Auto a.s. Další část se zaobírá návrhem křivek zpomalení se sinusovým, čtvercovým a trojúhelníkým tvarem. Dále je také navržena 2 vrcholová trojúhelníhová křivka zpomalení, jež je pomocí parametrů modifikovatelná. Optimalizací aproximovaného modelu geometrie kapoty automobilu při dopadu impaktoru hlavy na navržený model geometrie kapoty je zajištěno podobné shody s dříve optimalizovanou 2 vrcholovou trojúhleníkovou křivkou zpomalení. V další části je použit originální model geometrie kapoty automobilu Škoda Superb II a další optimalizace modelu geometrie kapoty vůči optimálnímu časovému průběhu zpomalení.
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Václavík, Ondřej. "Studium otěruvzdorných vrstev vytvořených laserovým naplavováním pomocí metody dynamického rázového impaktoru." Master's thesis, Vysoké učení technické v Brně. Fakulta strojního inženýrství, 2013. http://www.nusl.cz/ntk/nusl-230536.

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Diploma thesis studies the layers created by laser cladding and method of testing abrasion resistance of these layers using the method of dynamic shock impactor. In the theoretical part describes laser technologies and their applications, hardness testing and methods of testing of coatings. Proposed by the mechanical testing of the selected materials were carried out and evaluated in the experimental part. The conclusion summarizes final results of the experiment.
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Mišík, Ondrej. "Inhalátory a nebulizátory pro použití v medicíně: principy, spolehlivost a provozní parametry." Master's thesis, Vysoké učení technické v Brně. Fakulta strojního inženýrství, 2019. http://www.nusl.cz/ntk/nusl-399566.

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An issue of inhalation therapy is a complex topic, actively discussed in last decades, and its progress in various scientific fields is more than required. First part of this thesis brings a theoretical introduction into principles of aerosol therapy and into the requirements resulting from them. Commonly available technologies of inhalers and nebulisers for medical usage, parameters that determinate their effectivity are briefly described. Usage mistakes influencing the effectivity of inhalation are discussed, as well. Second part deals with experimental measurements of aerosol that selected inhalers generate. It also describes difficulties connected with the methods of these measurements, with sampling and following analyses. Gained results are compared with an available literature.
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Václavík, Jiří. "Posouzení informačního systému ve společnosti Impakt fitness a návrh změn." Master's thesis, Vysoké učení technické v Brně. Ústav soudního inženýrství, 2020. http://www.nusl.cz/ntk/nusl-414323.

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This diploma thesis analyses a company providing complex sport services in a Vyškov region. The analysis assesses the information system of the organization to understand its position. It identifies the strengths, weaknesses, opportunities, and threats to use it as a foundation for a new company IT strategy.
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Wernet, Ruth [Verfasser], and M. [Akademischer Betreuer] Seipenbusch. "Impaktion und Fragmentierung von Nanopartikeln im Niederdruck und Hochvakuum / Ruth Wernet ; Betreuer: M. Seipenbusch." Karlsruhe : KIT-Bibliothek, 2018. http://d-nb.info/1166234223/34.

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Correia, Lukus Meides Sarmento. "Impacto do desenvolvimento do turismo nas condições socioeconómicas e ambientais no subdistrito de Tutuala." Master's thesis, Universidade de Évora, 2014. http://hdl.handle.net/10174/13029.

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O Plano Estratégico de Desenvolvimento Nacional de Timor- Leste abrange três áreas fundamentais: capital social, desenvolvimento de infra-estruturas e desenvolvimento económico. O sector do turismo foi considerado desde logo como um sector importante para este plano por trazer benefícios económicos e gerar emprego para os jovens, com especial incidência no Subdistrito de Tutuala, Distrito de Lautem o qual é apontado como uma referência turística na zona mais leste do país. O propósito deste trabalho é efetuar um estudo de opiniões e repercussões socioeconómicos e ambientais que o desenvolvimento do turismo terá na referida zona. A zona selecionada para o seu desenvolvimento é atualmente conhecida como o sítio mais lindo e premiado pela natureza sendo assim um pólo de atração turística. O presente estudo consiste numa pesquisa exploratória, quantitativa e documental, recorrendo-se, para tal, a dados secundários existentes nos organismos públicos e privados, além de consultas a artigos, dissertações, teses, entre outros e a dados primários obtidos através da realização de entrevistas semi-estruturadas e de questionários. Os resultados deste estudo revelaram que, a falta de planeamento, recursos humanos, instalações e as infra-estruturas para incentivar atividades de desenvolvimento do turismo, causaram a baixa participação da comunidade local no seu desenvolvimento económico. Os impactos decorrentes das atividades turísticas não foram consideradas nocivas para o meio ambiente, mas também se concluiu que o processo de desenvolvimento turístico naquela zona ainda não teve impactos na optimização das necessidades da comunidade locais; IMPAKTO DO DESENVOLVIMENTO NO KONDISAUN EKONOMIKO E SOCIAL IHA SUBDISTRITU DE TUTUALA REZUMU: Planu estratégiku desenvolvimentu nacional de Timor-leste difini ba sektor importante tolu hanesan; kapital social, infrasterutura, desenvolvimentu ekonómiku. Sektor turismo nu'udar área ida importante atu bele promove no hasai kresimento ekonómiko povo nian liu-liu iha área rural hanesan iha subdistrito de Tutuala, ne'ebé ema hotu konsidera hanesan fatin furak liu iha parte loro sa'e Timor-Leste nian. Motivo husi estudu ida ne'e atu bele tetu impaktus socioekonomiko, no ambintal ne'ebé afekta ba prosesu desenvolvimento turismo iha zona ida ne'e. Zona ida-ne'e mos sai nu'udar tarjetu ba estudu ne'e, tamba iha zona ida ne'e sai nu'udar fatin furak liu hodi dada ema turistas liur sira atu mai visita. Peskisa ida-ne'e e uza metodu explorativa kuantitavia, dukumental, uza dadus primaria no sekundaria ne'ebé iha orgaun publikus e privadus, nomós halo konsulta ba artigus, teze no sira seluk tan. Resultadu ne'ebé hetan husi pesquisa ne'e hatudu katak sei iha limitasaun barak iha parte rekusus humanus, no plano ne'ebé diak atu bele jere modelu servisu iha fatin turismo, seidauk iha partisipasaun másimu husi komunidade ba atividade turismo nian. Iha parte ekonomiko seidauk iha rendimentu diak atu bele sustenta moris loron-loron nian. Impaktus husi ambiental nian seidauk iha ameasa seriu durante ne'e, tanba atividade ne'ebé iha ona seidauk lori resultadu diak hanesan iha fatin seluk ne'ebé atividade turistika sai nu'udar dalan diak atu bele hetan osan sai moris diak liu.
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Books on the topic "Impaktor"

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Masaĭtis, Viktor Li︠u︡dvigovich, and L. A. Pevzner. Glubokoe burenie v Puchezh-Katunkskoĭ impaktnoĭ strukture. Sankt-Peterburg: VSEGEI, 1999.

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Franke, Michael R. Der Impakt eines Asteroiden in Mitteleuropa: Eine Analyse der Auswirkungen des Impakts eines near earth objects auf Nuklearkraftwerke und Anlagen der Grosschemie sowie die Folgen für Mensch- und Umwelt. Berlin: Logos, 2001.

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Gurov, E. P. Impaktnoe krateroobrazovanie v istorii zemli = Impact cratering in the earth's history. Kiev: IGN NAN Ukraïny, 2006.

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4

Der Sintflut-Impakt: Die Flutkatastrophe vor 10,000 Jahren als Folge eines Kometeneinschlags. Frankfurt am Main: P. Lang, 1998.

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Nield, Ted. Incoming!: Or, Why we should stop worrying and learn to love the meteorite. London: Granta, 2011.

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6

Close, F. E. Apocalypse when?: Cosmic catastrophe and the fate of the universe. New York: Morrow, 1988.

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7

Aditjondro, George J. Sei simu loromatan mosu iha Ramelau nia tutun: Impaktu okupasaun Indonézia iha Timór Lorosa'e no mosu movimentu Pro-Timór Lorosa'e iha Indonézia. [Jakarta]: Yayasan Hak no Fortilos, 2000.

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8

Leitner, Wilhelm. Der Sintflut-Mythos im Spannungsfeld von Wissenschaft, Kultur und Glauben: Eine Stellungnahme zu E. und A. Tollmanns "Sintflut-Impakt-Theorie" aus der Sicht der Geographie der Geisteshaltung. Bochum: Brockmeyer, 1994.

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9

Verschuur, Gerrit L. Impact!: The threat of comets and asteroids. New York: Oxford University Press, 1996.

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Calder, Richard. Impakto. Earthlight, 2001.

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Book chapters on the topic "Impaktor"

1

Blasius, Ralf, Nadja Podbregar, Harald Frater, and Stefan Schneider. "Vor dem Impakt." In Armageddon, 61–85. Berlin, Heidelberg: Springer Berlin Heidelberg, 2007. http://dx.doi.org/10.1007/978-3-540-37675-0_4.

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Preuß, Holger, Markus Kurscheidt, and Norbert Schütte. "Ökonomischer Impakt von Sportgroßveranstaltungen." In Ökonomie des Tourismus durch Sportgroßveranstaltungen, 23–61. Wiesbaden: Gabler, 2009. http://dx.doi.org/10.1007/978-3-8349-8441-8_3.

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Gebbeken, Norbert, Manfred Keuser, Tobias Linse, and Richard Wensauer. "Betonstrukturen unter Explosion und Impakt." In Beton-Kalender 2012, 199–278. Weinheim, Germany: Wiley-VCH Verlag GmbH & Co. KGaA, 2013. http://dx.doi.org/10.1002/9783433601020.ch4.

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Conference papers on the topic "Impaktor"

1

Waheed, Bushra, Brodie Couch, Gouri Bhuyan, Hassan Iqbal, and Eddie Lee. "Compliance Oversight of Operators’ Integrity Management Program for Pipelines: A Risk Based Evaluation Approach Incorporating Safety Culture." In 2018 12th International Pipeline Conference. American Society of Mechanical Engineers, 2018. http://dx.doi.org/10.1115/ipc2018-78240.

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Abstract:
Integrity Management Program (IMP) is a systematic and documented program for assuring asset integrity throughout the full life cycle of an asset. To ensure safe and reliable operation, the British Columbia Oil and Gas Commission (Commission) has been requiring its licensed pipeline operators through its regulations to develop and implement pipeline integrity management programs (IMPs) in accordance with Canadian Industry Standard CSA Z662. The auditing process, the collated results and findings from the IMP audit years (2011–15) were published in IPC 2016-64161[1]. Since 2016, the Commission has enhanced its IMP compliance assurance process, and aligned it with the management system approach using Deming’s model of plan-do-check-act (PDCA) for IMP components and incorporated a lifecycle approach that spans the entire lifecycle of a pipeline system from planning to abandonment. In addition, the Commission has adopted a multi-criteria decision-making approach when prioritizing which operators to audit. This method utilizes weighted rank approach and takes into account multiple factors, such as, previous IMP audit results, pipeline length and product, class location, incident frequency, and asset age. Through collaborative efforts with the University of British Columbia (Okanagan), an innovative risk based audit tool — Integrity Management Program Audit and Knowledge Tool (IMPAKT) has been developed to help evaluate the compliance of operators’ IMP in terms of the management system approach and its associated risk. This tool conducts three-dimensional analysis of IMP performance using the failure mode effect analysis (FMEA) technique and allows the Commission to generate a risk profile for each IMP component to determine which components are most critical, requiring immediate attention. The final audit results are presented as a Risk Priority Number (RPN), which is a product of severity, occurrence and action. An effective integrity management program requires a strong safety culture, therefore, safety culture aspects are incorporated into the risk based auditing tool, IMPAKT. This risk based evaluation process also allows the Commission to develop a compliance benchmark to make comparison between different operators’ IMP results for continuous performance improvement. This paper presents the innovative approach developed and implemented by the Commission for the IMP compliance oversight (auditing) process and implication of such changes.
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