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Auswahl der wissenschaftlichen Literatur zum Thema „Calcualtion“
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Zeitschriftenartikel zum Thema "Calcualtion"
Gao, Hong Wei, Chang Yi Luan und Hui Ying Yang. „Path Point Calculation and 3D Coordinate Display for WMR Based on Vision“. Applied Mechanics and Materials 121-126 (Oktober 2011): 4176–79. http://dx.doi.org/10.4028/www.scientific.net/amm.121-126.4176.
Der volle Inhalt der QuelleThomas, Keller und Larsen. „The Calcualtion of Multiplicative Inverses Over GF(P) Efficiently Where P is a Mersenne Prime“. IEEE Transactions on Computers C-35, Nr. 5 (Mai 1986): 478–82. http://dx.doi.org/10.1109/tc.1986.1676791.
Der volle Inhalt der QuelleRamadhia, Muflihah, und Ichsan Ichsan. „Pengolahan Lidah Buaya (Aloe Vera) Menjadi Granul Effervescent sebagai Minuman Kesehatan dan Analisis Peningkatan Nilai Ekonomisnya“. Jurnal Ekonomi Bisnis dan Kewirausahaan 7, Nr. 2 (18.08.2018): 149. http://dx.doi.org/10.26418/jebik.v7i2.25991.
Der volle Inhalt der QuellePokharel, S., S. Oyewale und S. Rana. „SU-E-T-384: Evaluation of Dose to Medium Vs. Dose to Water Calcualtion Mode in Acuros XB Algorithm for Lung SBRT“. Medical Physics 42, Nr. 6Part18 (Juni 2015): 3422. http://dx.doi.org/10.1118/1.4924745.
Der volle Inhalt der QuelleMackinnon, R. J., G. F. Carey und P. Murray. „A procedure for calcualting vorticity boundary conditions in the stream-function-vorticity method“. Communications in Applied Numerical Methods 6, Nr. 1 (Januar 1990): 47–48. http://dx.doi.org/10.1002/cnm.1630060107.
Der volle Inhalt der QuelleGribov, L. A., und S. V. Kotov. „Concept of the dipole moment of a bond and a method for calcualting this quantity“. Journal of Structural Chemistry 27, Nr. 3 (1986): 357–62. http://dx.doi.org/10.1007/bf00751808.
Der volle Inhalt der QuelleTANAKA, Osamu, und Shin-ichi KUGA. „CALCUALTING STUDY AND NON-DIMENSIONAL DIAGRAMMING ON BENDING, LONGITUDINAL AND TORTIONAL WAVE TRANSMISSION COEFFICIENTS FOR SOME THREE DIMENSIONAL INTERSECTING BEAMS : Study on structure-borne sound in building : part 4“. Journal of Architecture, Planning and Environmental Engineering (Transactions of AIJ) 417 (1990): 1–10. http://dx.doi.org/10.3130/aijax.417.0_1.
Der volle Inhalt der Quelle„Corona Graphs for Astronomical Calcualtions using L-Cordial Labeling“. International Journal of Innovative Technology and Exploring Engineering 9, Nr. 2S4 (31.12.2019): 428–30. http://dx.doi.org/10.35940/ijitee.b1183.1292s419.
Der volle Inhalt der QuelleLambrecht, W. R. L., C. Amador und B. Segall. „Can Polar Interface Energies be Calculated by Means of Supercells?“ MRS Proceedings 253 (1991). http://dx.doi.org/10.1557/proc-253-381.
Der volle Inhalt der QuelleDissertationen zum Thema "Calcualtion"
Somaini, Alice. „Analyse des erreurs induites par une modélisation simplifiée sur l’évolution des combustibles REP Impact des fuites neutroniques dans les calculs cellules“. Thesis, Université Paris-Saclay (ComUE), 2017. http://www.theses.fr/2017SACLS271/document.
Der volle Inhalt der QuelleScenario studies of an electronuclear fleet, as well as safety studies, are essential to explore the different nuclear strategies of the future. To carry out these studies, it is necessary to estimate the irradiation time of a given fuel and its composition during the electricity production campaign. These estimates are based on the simulations of nuclear reactors, for which the calculations of the evolution must be as representative as possible. The calculation schemes usually used are divided into two stages: a cell calculation to solve the neutron transport equation (deterministic or Monte Carlo simulation) followed by a core calculation (deterministic code) The cell calculation is a simulation of the evolution of an assembly under infinite conditions. Based upon this calculation, homogenized and condensed cross-sections along with scattering quantities are calculated as input data for the next stage, the core calculation. The cell calculation is therefore a fundamental step and must be representative of a core assembly evolution as much as possible. However, the approximations used for this model are numerous, especially the neutron leakages are neglected. The objectives of this work is to study the physical effects of neutron leakage and to compute the associated biases compared to an infinite assembly simulation. In the first part, the problem of axial neutron leakage will be broached. In this case, neutron leakage causes a strong variation of the neutron spectrum in the last centimeters of the assembly as well as a smaller variation but over the entire assembly. The second part deals with the radial leakage. The effect of the neighboring assemblies and the particular behavior of the assemblies in the peripheral position are studied. Moreover, the isotopic composition biases at the end of the cycle are quantified. In the third and last part, a simplified calculation of the evolution of a reactor enables to visualize all the observed physical effects impacting the evolution of the irradiation. Several other approximations of the cell calculation are still to be investigated, such as the reactivity monitoring through the concentration of thermal neutron poison dissolved in the moderator or present in the fuel. Nonetheless, establishing of the physical phenomena taken into account for the cell calculation represents an essential first step towards an improvement of the cell calculation and may lead to new simulation methods for reactor cores. In the future, the quantification of the biases related to neutron leakage will be used to estimate the uncertainties on the isotopic composition of the fuel at the end of the cycle. These uncertainties, propagated into the scenarios studies, will assess the validity of the obtained results
Valeš, Tomáš. „Podnikatelský záměr - Založení společnosti na prodej proteinových doplňků“. Master's thesis, Vysoké učení technické v Brně. Fakulta podnikatelská, 2021. http://www.nusl.cz/ntk/nusl-443007.
Der volle Inhalt der QuelleDefratyka, Sara. „Characterizing methane (CH4) emissions in urban environments (Paris)“. Electronic Thesis or Diss., université Paris-Saclay, 2021. http://www.theses.fr/2021UPASJ002.
Der volle Inhalt der QuelleThis Ph.D. aimed to measure methane (CH4) mixing ratio, its carbon isotope (δ13CH4) and ethane to methane ratio (C2H6:CH4) of diverse Île-de-France sources using CRDS G2201-i during near-source mobile measurements.Laboratory tests showed good performances of CRDS2201-i, notably a good agreement between δ13CH4 determined using CRDS G2201-i and IRMS. Indeed, precision of CRDS is less good than for IRMS, but it improves with larger CH4 mixing ratio (chapter 2). Possibilities and limitation of using CRDS G2201-i instrument to determine C2H6:CH4 ratio were also verified in laboratory and field conditions. Using CRDS G2201-i to measure C2H6:CH4 ratio is possible when enhancement is higher than 1 ppm above background and dried air is measured, which allows to use only one instrument to measure two proxies of CH4 sources (δ13CH4 and C2H6:CH4 ) (chapter 3).Then, the mobile set-up was adapted for mobile surveys in Paris city. There, three main CH4 sources where found: natural gas leaks, sewage network leaks and venting grid leaks ascribed to leaking furnaces installations. The latest category was discovered during walking measurements and was not described in previous studies. Compared to other cities, mostly surveyed in the U.S., Paris CH4 emissions are relatively small and comparable to cities with modern pipeline system. Comparison with inventories showed that for the energy sector, CH4 emissions are about fifteen times smaller than downscaled AIRPARIF inventories (chapter 4). Finally, at the industrial site scale, δ13CH4 and δDCH4 were determined and contributed to extend the database of isotopic signatures of European CH4 emissions. C2H6:CH4 observed from gas compressor stations are comparable with those in previous studies in other countries. For part of the sites, emission rates were also estimated using a Gaussian model or the tracer dispersion method (chapter 5).Results of this Ph.D. can be used as a base for future mobile, near-source campaigns in IDF region
Bücher zum Thema "Calcualtion"
Hubbard. Elementary And Intermediate Algebra: Discovery And Visualization, Third Editionand H M Cubed And Graphic Calcualtor Guide And Smarthinking. 3. Aufl. Houghton Mifflin Company, 2001.
Den vollen Inhalt der Quelle findenKonferenzberichte zum Thema "Calcualtion"
Kim, J. E., E. Malic, M. Richter und A. Knorr. „Quantum-dot vertical-cavity surface-emitting lasers (VCSELs): Combining finite-difference time-domain (FDTD) calcualtion with microscopic material models“. In 2008 International Nano-Optoelectronics Workshop. IEEE, 2008. http://dx.doi.org/10.1109/inow.2008.4634503.
Der volle Inhalt der QuelleAllam, A. M. M. A., Steven Botros, Adham Mohamed Gamal Hemdan und Khalid Monir Ahmed. „Different channel models capacity calcualtions for different UWB MIMO antenna systems“. In 2016 Loughborough Antennas & Propagation Conference (LAPC). IEEE, 2016. http://dx.doi.org/10.1109/lapc.2016.7807519.
Der volle Inhalt der QuellePratuzaitė, Greta, und Nijolė Maknickienė. „Investigation of credit cards fraud detection by using deep learning and classification algorithms“. In 11th International Scientific Conference „Business and Management 2020“. VGTU Technika, 2020. http://dx.doi.org/10.3846/bm.2020.558.
Der volle Inhalt der QuelleMukherjee, Rahul, Pritam Dutta, Dibyaduti Gorai, Soumen Santra und Arpan Deyasi. „JAVA-GUI based package for calcualting bandwidth and ripple of 1D PhC based filter“. In 2017 1st International Conference on Electronics, Materials Engineering and Nano-Technology (IEMENTech). IEEE, 2017. http://dx.doi.org/10.1109/iementech.2017.8076947.
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