Academic literature on the topic 'Nappies'
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Journal articles on the topic "Nappies"
Thomas, David. "Takeaway nappies." Nursing Standard 11, no. 37 (June 4, 1997): 20. http://dx.doi.org/10.7748/ns.11.37.20.s31.
Full textBernshaw, Nicole. "Of Diapers and Nappies." Journal of Human Lactation 13, no. 1 (March 1997): 14. http://dx.doi.org/10.1177/089033449701300110.
Full textDillon-Malone, Aubrey, Maeve Binchy, Francis Molloy, and Veronica Geoghegan Sweeney. "The Shopping and the Nappies." Books Ireland, no. 95 (1985): 111. http://dx.doi.org/10.2307/20625583.
Full textSovell, Paul J. "Urine collection from disposable nappies." Annals of Emergency Medicine 21, no. 2 (February 1992): 233–34. http://dx.doi.org/10.1016/s0196-0644(05)80183-0.
Full textHEAL, C. "Other implications of disposable nappies." Archives of Disease in Childhood 85, no. 3 (September 1, 2001): 268d—268. http://dx.doi.org/10.1136/adc.85.3.268d.
Full textDixon, John, and Margaret Wetherell. "On Discourse and Dirty Nappies." Theory & Psychology 14, no. 2 (April 2004): 167–89. http://dx.doi.org/10.1177/0959354304042015.
Full textWilliams, D. G., S. Richmond, and M. Massam. "Disposable nappies--a cautionary tale." Archives of Disease in Childhood 63, no. 8 (August 1, 1988): 997. http://dx.doi.org/10.1136/adc.63.8.997-b.
Full textAhmad, T., D. Vickers, S. Campbell, M. G. Coulthard, and S. Pedler. "Urine collection from disposable nappies." Lancet 338, no. 8768 (September 1991): 674–76. http://dx.doi.org/10.1016/0140-6736(91)91242-m.
Full textBjörklund, L. J., Vitas Dargis, Robert Chen, David Brown, Giancarlo Viberti, Harry Keen, James Walker, Nigel Masters, and I. Blumenthal. "Urine collection from disposable nappies." Lancet 338, no. 8774 (October 1991): 1077–78. http://dx.doi.org/10.1016/0140-6736(91)91933-l.
Full textLi, FrederickP, MargaretG Dreyfus, and KarenH Antman. "ASBESTOS-CONTAMINATED NAPPIES AND FAMILIAL MESOTHELIOMA." Lancet 333, no. 8643 (April 1989): 909–10. http://dx.doi.org/10.1016/s0140-6736(89)92916-4.
Full textDissertations / Theses on the topic "Nappies"
Petraitis, Stanislav. "Which nappies are better to use from an environmental point of view?" Thesis, Mittuniversitetet, Institutionen för ekoteknik- och hållbart byggande, 2020. http://urn.kb.se/resolve?urn=urn:nbn:se:miun:diva-41961.
Full text2020-06-05
Nealis, Carolina. "Technology and market screening for “green” disposable diapers." Thesis, KTH, Fiber- och polymerteknologi, 2021. http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-298121.
Full textThe market claims of “using as little plastic as possible” is misleading when 5 out of 11 “green” diaper brands analysed contain 80-75 % fossil based plastic. It is also evident that few brands have changed materials going against babies skin from fossil based plastic to plant based, although they claim only natural material touches babies skin. This demonstrates greenwashing present in marketing of environmentally friendly disposable diapers. Based on this study, calling a product “green” today is not related to any demands on product materials and parents are easily mislead. A product can include 80 % fossil based plastic and be considered green without going against the law. Not only will greenwashing mislead consumers, but it will also contribute to slowing the worldwide development towards sustainable consumption, since greenwashing may have a risk of discouraging sincere companies efforts to go green and guide truly genuine consumers towards non-optimal choices. This gives potentially the effect of unnecessarily increasing product consumption and thereby slowing the movement towards a more sustainable environment. It is therefore of interest to highlight possible greenwashing in the diaper industry. With the hope of creating customer awareness during purchase of “green” disposable diapers. This is accomplished by investigating the market claims compared to laboratory analytical results. The “green” brands under investigation were Lillydoo, Naty, Pampers Pure, Kit & Kin, Bambo Nature, Love & Green, Moltex, Seventh Generation, The Honest company, Hello Bello, and Tooshies by Tom. For reference values two “non-green” brands are chosen as Libero and Pampers. These in total 13 brands were examined using the analytical techniques FTIR, radiocarbon dating, and density measurements. For the GC/MS method only the fossil based diaper brand Pampers was examined. From these experiments the diaper polymers, unknown substances, and total amount of biobased content may be identified. The diaper polymers observed were polypropylene, polyethylene,polyethylene terephthalate, or the bicomponent fiber polypropylene/polyethylene, as well as the biodegradable polylactic acid. For “non-green” brands, the amount of biobased carbon content ranged from 13-15%. While for the “green” diaper brands the amount of biobased carbon varied from 20-53%. The results obtained from this study, show that some brands do not exchange more than 5 % of materials from fossil based to biobased and still contain 80% plastic while labelling themselves as green. As the certifications frequently used by diaper brands have too tolerant levels for fossile based materials, the “plastic” diapers can obtain certificates consumers falsely believe guarantees a green product. There is a big need for stricter laws on what a diaper needs to fullfil to be called itself green, equally so on how industry set up certification criteria. Today consumers who want to buy green diapers are too easily misled as majority of claimed green brands are not much greener than standard diapers.
Van, der Merwe Hendrik Naude. "Remote sensing driven lithological discrimination within nappes of the Naukluft Nappe Complex, Namibia." Thesis, Stellenbosch : Stellenbosch University, 2015. http://hdl.handle.net/10019.1/97147.
Full textENGLISH ABSTRACT: Geological remote sensing is a powerful tool for lithological discrimination, especially in arid regions with minimal vegetative cover to obscure rock exposures. Commercial multispectral imaging satellites provide a broad spectral range with which to target specific rock types. Landsat ETM+ (7), ASTER, and SPOT 5 multispectral images were acquired and digitally processed: band ratioing, principle components analysis, and maximum likelihood supervised classification. The sensors were evaluated on the ability to discriminate between sedimentary rocks in a structurally complex setting. The study focusses on the formations of the Naukluft Nappe Complex, Namibia. Previous work of the area had to be consulted in order to identify the main target rock types. Dolomite, limestone, quartzite, and shale were determined to make up the majority of rock types in the area. Landsat, ASTER, and SPOT 5 imagery were acquired and pre-processed. Each was subjected to transform techniques: band ratios and PCA. Band ratios were tailored to highlighted target rock types as well as a number of control ratios to ensure the integrity of important ratios. PCA components were inspected to find the most useful ones which were combined into FCCs. Transform results, expert knowledge, and a geological map were consulted to identify training and accuracy samples for the supervised classifications. All three classifications made use of the same set of training and accuracy samples to facilitate useful comparisons. Transform results were promising for Landsat and ASTER images, while SPOT 5 struggled. The limited spectral resolution of SPOT 5 limited its use for identifying target rock types, with the superior spatial resolution contributing very little. Landsat benefitted from good spectral resolution. This allowed for good performance with highlighting limestone and dolomite, while being less successful with shale. Quartzite was a real problem as the spectral resolution of Landsat could not cover this range as well. ASTER, having the highest spectral resolution, could distinguish between all four target rock types. Landsat and ASTER results suffered in areas where formations were relatively thin (smaller than sensor spatial resolution). The supervised classification results were similar to the transforms in that both Landsat and ASTER provided useful results, while SPOT 5 failed to yield definitive results. Accuracy assessment determined that ASTER performed the best at 98.72%. Landsat produced an accuracy of 93.29% while SPOT 5 was 80.17% accuracy. Landsat completely overestimated the amount of quartzite present, while all results classified significant proportions Quaternary sediments as shale. Limestone was well represented in even the poorest results, while dolomite usually struggled in areas where it was in close association with quartzite. Silica yields relatively strong responses in the TIR spectrum which could lead to misclassification of dolomite, which also has strong TIR signatures.
AFRIKAANSE OPSOMMING: Geologiese afstandswaarneming is 'n kragtige tegniek vir litologiese diskriminasie, veral in droë streke met minimale plantbedekking om dagsome te verduister. Kommersiële multispektrale satelliete beelde bied 'n breë spektrale reeks waarmee spesifieke gesteentetipes geteiken kan word. Landsat ETM + (7), ASTER, en SPOT 5 multispektrale beelde was bekom en digitaal verwerk: bandverhoudings, hoofkomponente-ontleding, en maksimum waarskynlikheid klassifikasie. Die sensors is geëvalueer op hul vermoë om te onderskei tussen sedimentêre gesteentes in 'n struktureel komplekse omgewing. Die studie fokus op die formasies van die Naukluft Dekblad Kompleks, Namibië. Vorige werk van die area was geraadpleeg om die hoofgesteentetipes te identifiseer. Dit was bepaal dat dolomiet, kalksteen, kwartsiet, en skalie die oorgrote meerderheid van kliptipes in area opgemaak het. Landsat, ASTER, en SPOT 5 beelde is verkry en voorverwerk. Elke beeld was onderwerp aan transformasietegnieke: bandverhoudings en hoofkomponente-ontleding. Bandverhoudings is aangepas om teiken rotstipes uit te lig asook 'n aantal kontrole bandverhoudings om die integriteit van belangrike verhoudings te verseker. Hoofkomponente-ontleding komponente is ondersoek om die mees bruikbares te vind en dié was gekombineer in valse kleur samestellings. Transformasie resultate, deskundige kennis, en 'n geologiese kaart was geraadpleeg om opleidings- en verwysingsmonsters was verkry vanaf die beelde vir die klassifikasies. Al drie klassifikasies gebruik gemaak van dieselfde stel van die opleiding- en akkuraatheidsmonsters om sodoende betekenisvolle vergelykings te verseker. Transformasie resultate is belowend vir Landsat en ASTER beelde, terwyl SPOT 5 minder bruikbaar was. Die noue spektrale resolusie van SPOT 5 beperk die gebruik daarvan vir die identifisering van teiken gesteentetipes terwyl die hoë ruimtelike resolusie baie min bydra. Landsat het voordeel getrek uit goeie spektrale resolusie. Dit goeie resultate opgelwer met die klem op kalksteen en dolomiet, terwyl skalie aansienlik swakker resultate opgelewer het. Kwartsiet was 'n werklike probleem omdat die spektrale resolusie van Landsat nie breed genoeg was om hierdie kliptipe te onderskei nie. ASTER, met die hoogste spektrale resolusie, kon onderskei tussen al vier teiken rotstipes. Landsat en ASTER resultate was baie negatief beïnvloed in gebiede waar formasies relatief dun was (kleiner as sensor ruimtelike resolusie). Die klassifikasie resultate was soortgelyk aan die transformasies in dat beide Landsat en ASTER nuttige resultate opgelewer het, terwyl SPOT 5 misluk het. Akkuraatheids assessering het bepaal dat ASTER die beste gevaar het met 98,72%. Landsat het 'n akkuraatheid van 93,29% opgelewer, terwyl SPOT 5 80,17% akkuraat was. Landsat het die hoeveelheid kwartsiet heeltemal oorskat, terwyl al die resultate groot hoeveelhede Kwaternêre sedimente as skalie geklassifiseer het. Kalksteen is goed verteenwoordig in tot die armste resultate, terwyl resultate gewoonlik afgeneem het waar dolomiet in noue verband met kwartsiet was. Dit is moontlik asgevolg van silika se relatiewe sterk reaksies in die termiese infra-rooi spektrum wat kan lei tot die foutiewe klassifisering met dolomiet (wat ook sterk reageer in die TIR spektrum).
Denier, Philippe. "Etude in-situ de la corrosion par les eaux des nappes phreatiques. Application a l'utilisation thermique de la nappe aquifere rhenane." Université Louis Pasteur (Strasbourg) (1971-2008), 1993. http://www.theses.fr/1993STR13146.
Full textLhuissier, Henri. "Nappes, trous, ligaments et gouttes." Phd thesis, Université de Provence - Aix-Marseille I, 2011. http://tel.archives-ouvertes.fr/tel-00600229.
Full textBremond, Nicolas. "Stabilité et atomisation des nappes liquides." Phd thesis, Université de Provence - Aix-Marseille I, 2003. http://tel.archives-ouvertes.fr/tel-00011518.
Full textLe premier correspond à un état stable pour lequel la nappe reste plane. Cet état est étudié à l'aide d'un dispositif formant des nappes par collision de jets cylindriques. Un couplage entre des modulations d'épaisseur de la nappe et la déstabilisation capillaire du bord libre conduisant à la formation des gouttes est mis en évidence. Ces modulations d'épaisseur sont dues aux conditions d'injection et pilotent la fragmentation de la nappe.
Lorsque la vitesse d'écoulement dans la nappe est augmentée, une instabilité de cisaillement avec l'air se développe et la nappe se met à battre tel un drapeau. Ce second régime est étudié à partir d'une nappe formée par la collision normale d'un jet rond sur un cylindre solide pouvant osciller verticalement. Les caractéristiques des ondes générées par l'oscillation du point d'impact (vitesse, amplitude,...) sont correctement prédites par une analyse linéaire. Les ondulations de la surface imposent une accélération transitoire au liquide. Cette situation est instable au sens de Rayleigh-Taylor et conduit à des modulations d'épaisseur transverses à l'écoulement. La modification du champ d'épaisseur conditionne la morphologie du bord libre qui est constitué d'indentations à l'extrémité desquelles des ligaments sont formés et se brisent en gouttes. Un modèle incluant le développement des deux instabilités permet de rendre compte de la caractérisation de la fragmentation de la nappe (lieu de brisure, vitesse et taille des gouttes). Enfin, d'autres situations expérimentales mettant en jeu des accélérations et des modulations d'épaisseur sur des nappes liquides sont également envisagées.
Vernay, Clara. "Déstabilisation de nappes liquides d'émulsions diluées." Thesis, Montpellier, 2015. http://www.theses.fr/2015MONTS199/document.
Full textOne of the major environmental issues related to spraying of pesticides on cultivated crops is the drift phenomenon. Because of the wind, small droplets may drift away from the targeted crop and cause contamination. One way to reduce the drift is to control the spray drop size distribution and reduce the proportion of small drops. In this context, anti-drift additives have been developed, including dilute oil-in-water emulsions. Although being documented, the effects of oil-in-water emulsions on spray drop size distribution are not yet understood. The objective of this thesis is to determine the mechanisms at the origin of the changes of the spray drop size distribution for emulsion-based sprays.Agricultural spraying involves atomizing a liquid stream through a hydraulic nozzle. At the exit of the nozzle, a free liquid sheet is formed, which is subsequently destabilized into droplets. In order to elucidate the mechanisms causing the changes of the spray drop size distribution, we investigate the influence of emulsions on the destabilization mechanisms of liquid sheets. Model single-tear experiments based on the collision of one tear of liquid on a small solid target are used to produce and visualize liquid sheets with a fast camera. Upon impact, the tear flattens into a sheet radially expanding in the air bounded by a thicker rim. Different destabilization mechanisms of the sheet are observed depending on the fluid properties. A pure water sheet spreads out radially and then retracts due to the effect of surface tension. Simultaneously, the rim corrugates forming radial ligaments, which are subsequently destabilized into droplets. The destabilization mechanism is drastically modified when a dilute oil-in-water emulsion is used. Emulsion-based liquid sheets are destabilized through the nucleation of holes within the sheet that perforate the sheet during its expansion. The holes grow until they merge together and form a web of ligaments, which are then destabilized into drops.The physical-chemical parameters of the emulsion, such as emulsion concentration and emulsion droplet size distribution, are modified to rationalize their influence on the perforation mechanism. We correlate the size distribution of drops issued from conventional agricultural spray with the amount of perforation events in single-tear experiments, demonstrating that the single-tear experiment is an appropriate model experiment to investigate the physical mechanisms governing the spray drop size distribution of anti-drift formulations. We show that the relevant mechanism causing the increase of drops size in the emulsion-based spray is a perforation mechanism.To gain an understanding of the physical mechanisms at the origin of the perforation events, we develop an optical technique that allows the determination of the time and space-resolved thickness of the sheet. We find that the formation of a hole in the sheet is systematically preceded by a localized thinning of the liquid film. We show that the thinning results from the entering and Marangoni-driven spreading of emulsion oil droplet at the air/water interface. The localized thinning of the liquid film ultimately leads to the rupture of the film. We propose the perforation mechanism as a sequence of two necessary steps: the emulsion oil droplets (i) enter the air/water interface, and (ii) spread at the interface. We show that the formulation of the emulsion is a critical parameter to control the perforation. The addition of salt or amphiphilic copolymers can trigger or completely inhibit the perforation mechanism. We show that the entering of oil droplets at the air/water interface is the limiting step of the mechanism. Thin-film forces such as electrostatic or steric repulsion forces stabilize the thin film formed between the interface and the approaching oil droplets preventing the entering of oil droplets at the interface and so inhibit the perforation process
Agbaglah, Gbémého Gilou. "Dynamique et instabilité des nappes liquides." Paris 6, 2011. http://www.theses.fr/2011PA066195.
Full textBrémond, Nicolas. "Stabilité et atomisation des nappes liquides." Aix-Marseille 1, 2003. http://www.theses.fr/2003AIX11011.
Full textPierre, Olivier. "Nappes de tourbillon-courant en magnétohydrodynamique." Thesis, Nantes, 2017. http://www.theses.fr/2017NANT4025/document.
Full textIn this thesis, we consider the coupling between two ideal and homogeneous plasmas, giving rise to a tangential discontinuity across a time-dependent hypersurface. The motion of such a fluid is described by the ideal incompressible magnetohydrodynamics equations. This shear flow leads to the creation of a current-vortex sheet. The first part of this work is devoted to the construction of analytic solutions to the current-vortex sheet system, using a Cauchy-Kowalevskaya theorem. In a second part, we look at the qualitative behavior of exact solutions to the current-vortex sheet system, obtained from highly oscillating initial data. We use tools of geometric optics and we exhibit the creation of surface waves when the initial datum is oscillating with particular frequencies
Books on the topic "Nappies"
McNamara, Peter. Nappies: An investigation into the financial and non-financial costs and benefits of disposable and reusable nappies : developing EIU through mathematics. Coventry: SCIP, 1993.
Find full textMerle, O. Nappes et chevauchements. Paris: Masson, 1994.
Find full textDemarne, Anne-Marie Mayerat. Analyse structurale de la zone frontale de la nappe du Tambo (Pennique, Grisons, Suisse). Burgdorf: Baumgartner Druck, 1994.
Find full textGreiling, Reinhard. Strukturelle und metamorphe Entwicklung an der Basis grosser, weittransportierter Deckeneinheiten am Beispiel des Mittleren Allochthons in den zentralen Skandinavischen Kaledoniden (Stalon-Deckenkomplex in Västerbotten, Schweden). Stuttgart: E. Schweizerbart, 1985.
Find full textWood, Audrey. The napping house. London: Dent, 1987.
Find full textWood, Audrey. The napping house. Orlando: Harcourt Children's Books, 2004.
Find full textill, Wood Don 1945, ed. The napping house. San Diego: Harcourt Brace & Co., 1996.
Find full textWodehouse, P. G. The cat-nappers. New York: Perennial Library, 1985.
Find full textWood, Audrey. The napping house. San Diego: Harcourt, 2000.
Find full textWood, Audrey. The napping house. Orlando: Harcourt Children's Books, 2004.
Find full textBook chapters on the topic "Nappies"
Hadland, Cheryl. "Nappies and wet wipes." In Creating an Eco-Friendly Early Years Setting, 57–70. First edition. | Abingdon, Oxon ; New York, NY : Routledge, 2020.: Routledge, 2020. http://dx.doi.org/10.4324/9780429445842-6.
Full textFelder, Franziska. "Changing Nappies: A Duty for Teachers in Inclusive Classrooms?" In The Palgrave Handbook of Education Law for Schools, 429–44. Cham: Springer International Publishing, 2018. http://dx.doi.org/10.1007/978-3-319-77751-1_20.
Full textAston, Tracy-ann. "Fair testing: Which is the best brand of disposable nappies?" In The Really Useful Book Of Secondary Science Experiments, 84–85. Abingdon, Oxon ; New York, NY : Routledge, [2017]: Routledge, 2017. http://dx.doi.org/10.4324/9781315640082-41.
Full textTakahashi, Masaya, and Kosuke Kaida. "Napping." In Sleep: A Comprehensive Handbook, 197–201. Hoboken, NJ, USA: John Wiley & Sons, Inc., 2005. http://dx.doi.org/10.1002/0471751723.ch27.
Full textGooch, Jan W. "Napping." In Encyclopedic Dictionary of Polymers, 478. New York, NY: Springer New York, 2011. http://dx.doi.org/10.1007/978-1-4419-6247-8_7786.
Full textMerle, Olivier. "Background." In Emplacement Mechanisms of Nappes and Thrust Sheets, 29–47. Dordrecht: Springer Netherlands, 1998. http://dx.doi.org/10.1007/978-94-015-9060-0_2.
Full textMerle, Olivier. "Mechanics." In Emplacement Mechanisms of Nappes and Thrust Sheets, 49–80. Dordrecht: Springer Netherlands, 1998. http://dx.doi.org/10.1007/978-94-015-9060-0_3.
Full textMerle, Olivier. "Kinematics." In Emplacement Mechanisms of Nappes and Thrust Sheets, 81–122. Dordrecht: Springer Netherlands, 1998. http://dx.doi.org/10.1007/978-94-015-9060-0_4.
Full textMerle, Olivier. "A Few Examples from the Alpine Chain." In Emplacement Mechanisms of Nappes and Thrust Sheets, 123–33. Dordrecht: Springer Netherlands, 1998. http://dx.doi.org/10.1007/978-94-015-9060-0_5.
Full textMerle, Olivier. "The Concept of Thrusting." In Emplacement Mechanisms of Nappes and Thrust Sheets, 1–28. Dordrecht: Springer Netherlands, 1998. http://dx.doi.org/10.1007/978-94-015-9060-0_1.
Full textConference papers on the topic "Nappies"
Weibin*, Sun, Sun Ximing, and Hu Zuzhi. "MT applications on overthrust nappes study." In International Geophysical Conference, Qingdao, China, 17-20 April 2017. Society of Exploration Geophysicists and Chinese Petroleum Society, 2017. http://dx.doi.org/10.1190/igc2017-038.
Full textIOUZZI, Nisrine, Mehdi HAFFANE, and Mohamed CHAGDALI. "Modélisation hydrodynamique des nappes d’hydrocarbures en zones côtières." In Journées Nationales Génie Côtier - Génie Civil. Editions Paralia, 2020. http://dx.doi.org/10.5150/jngcgc.2020.008.
Full textThompson, Peter J., and Justin V. Strauss. "REEVALUATION AFTER 50 YEARS OF NAPPES IN WESTERN NEW HAMPSHIRE: ARE THE SKITCHEWAUG AND CORNISH NAPPES ONE AND THE SAME?" In 53rd Annual GSA Northeastern Section Meeting - 2018. Geological Society of America, 2018. http://dx.doi.org/10.1130/abs/2018ne-309948.
Full textDeBruhl, Bruce, Christian Kroer, Anupam Datta, Tuomas Sandholm, and Patrick Tague. "Power napping with loud neighbors." In the 2014 ACM conference. New York, New York, USA: ACM Press, 2014. http://dx.doi.org/10.1145/2627393.2627406.
Full textQuinn, Daven P., and J. P. Grotzinger. "STRUCTURAL MAP OF THE ZEBRA NAPPE, NAUKLUFT NAPPE COMPLEX, NAMIBIA." In GSA Annual Meeting in Denver, Colorado, USA - 2016. Geological Society of America, 2016. http://dx.doi.org/10.1130/abs/2016am-287996.
Full textRosekind, Mark R., Philippa H. Gander, and David F. Dinges. "Alertness Management in Flight Operations: Strategic Napping." In Aerospace Technology Conference and Exposition. 400 Commonwealth Drive, Warrendale, PA, United States: SAE International, 1991. http://dx.doi.org/10.4271/912138.
Full textQuinn, Daven P., and J. P. Grotzinger. "STRATIGRAPHY AND SEDIMENTOLOGY OF THE ZEBRA NAPPE, NAUKLUFT NAPPE COMPLEX, NAMIBIA." In GSA Annual Meeting in Denver, Colorado, USA - 2016. Geological Society of America, 2016. http://dx.doi.org/10.1130/abs/2016am-287992.
Full textAdachi, Koichi, Jingon Joung, Sumei Sun, and Peng Hui Tan. "Energy-saving coordinated napping (CoNap) for wireless networks." In 2012 IEEE Globecom Workshops (GC Wkshps). IEEE, 2012. http://dx.doi.org/10.1109/glocomw.2012.6477741.
Full textChen, Muqian, Xuebin Wang, Jinqiao Shi, Can Zhao, Meiqi Wang, and Binxing Fang. "Napping Guard: Deanonymizing Tor Hidden Service in a Stealthy Way." In 2020 IEEE 19th International Conference on Trust, Security and Privacy in Computing and Communications (TrustCom). IEEE, 2020. http://dx.doi.org/10.1109/trustcom50675.2020.00097.
Full textNasuti, Y., D. Roberts, and A. Nasuti. "Depth to Precambrian Basement Terranes Underneath the Caledonian Nappes - A Case Study from Northern Norway." In 2nd Conference on Geophysics for Mineral Exploration and Mining. Netherlands: EAGE Publications BV, 2018. http://dx.doi.org/10.3997/2214-4609.201802720.
Full textReports on the topic "Nappies"
Naitoh, Paul, Tamsin L. Kelly, and Harvey Babkoff. Napping, Stimulant, and Four Choice Performance. Fort Belvoir, VA: Defense Technical Information Center, September 1990. http://dx.doi.org/10.21236/ada230366.
Full textNaitoh, Paul, and Robert G. Angus. Napping and Human Functioning during Prolonged Work. Fort Belvoir, VA: Defense Technical Information Center, April 1987. http://dx.doi.org/10.21236/ada190228.
Full textCastonguay, S., and A. Tremblay. External-internal Humber zone transition: the Stanbridge and Oak Hill nappes. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 2001. http://dx.doi.org/10.4095/212049.
Full textTirrul, R. Nappes in the Kilohigok Basin, and their relation to the Thelon tectonic zone, District of Mackenzie. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 1985. http://dx.doi.org/10.4095/120189.
Full textVeillette, J. J. Mouvements glaciaires, nappes de till et transport glaciaire en Abitibi-Témiscamingue, au Québec et en Ontario. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 1994. http://dx.doi.org/10.4095/194827.
Full textScammell, R. J. Structure Between Scrip Nappe and Monashee Terrane, southern Omineca Belt, British Columbia. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 1991. http://dx.doi.org/10.4095/132521.
Full textCaldwell, J. L., John A. Caldwell, Roberts Jr., and Krisit A. A Comparison Between the Countermeasures Modafinil and Napping for Maintaining Performance and Alertness Using a Quasi-Experimental Analysis. Fort Belvoir, VA: Defense Technical Information Center, July 2002. http://dx.doi.org/10.21236/ada405112.
Full textMurat, V., D. Paradis, M. M. Savard, M. Nastev, E. Bourque, A. Hamel, R. Lefebvre, and R. Martel. Vulnérabilité à la nappe des aquifères fracturés du sud-ouest du Québec : évaluation par les méthodes DRASTIC et GOD. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 2003. http://dx.doi.org/10.4095/214216.
Full textLavoie, D. Stratigraphic framework for the Cambrian Chaudière Nappe in the external domain of the Humber Zone in the Quebec Re-entrant, and preliminary correlation with adjacent stratigraphic frameworks. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 2002. http://dx.doi.org/10.4095/213237.
Full textMelby, Jeffrey, Thomas Massey, Abigail Stehno, Norberto Nadal-Caraballo, Shubhra Misra, and Victor Gonzalez. Sabine Pass to Galveston Bay, TX Pre-construction, Engineering and Design (PED) : coastal storm surge and wave hazard assessment : report 1 – background and approach. Engineer Research and Development Center (U.S.), September 2021. http://dx.doi.org/10.21079/11681/41820.
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