Books on the topic 'Parametric Space'

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1

Jurkowski, Jacek. High-speed generation of certain parametric space-curves. Warsaw: Institute of Computer Science, Polish Academy of Sciences, 1988.

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2

United States. National Aeronautics and Space Administration., ed. Numerical model of solar dynamic radiator for parametric analysis. [Washington, D.C.]: National Aeronautics and Space Administration, 1989.

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3

United States. National Aeronautics and Space Administration., ed. Numerical model of solar dynamic radiator for parametric analysis. [Washington, D.C.]: National Aeronautics and Space Administration, 1989.

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4

United States. National Aeronautics and Space Administration., ed. Parametric studies of phase change thermal energy storage canisters for Space Station Freedom. [Washington, DC]: National Aeronautics and Space Administration, 1992.

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5

Du, Tiantian. Space layout and energy performance: Parametric optimisation of space layout for the energy performance of office buildings. Delft: BK Books, 2021.

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6

E, Myers David. Parametric weight comparison of advanced metallic, ceramic tile and ceramic blanket thermal protection systems. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 2000.

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7

Bednarczuk, Ewa. Stability analysis for parametric vector optimization problems. Warszawa: Institute of Mathematics, Polish Academy of Sciences, 2007.

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8

Spazi per la vita degli uomini: Architettura e parametri. Firenze: ALINEA, 1985.

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9

Urunov, Asror. Regional economy. ru: INFRA-M Academic Publishing LLC., 2020. http://dx.doi.org/10.12737/1013012.

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The textbook presents the main categories of the regional economy, evaluation and sustainable development and the competitiveness of the region, theoretical terms about the economic area; specified properties, functions and factors of its formation. Disclosed parametric characteristics of the single economic space, and its possible life cycle. Outlines the economic evaluation methods and justify the location of production, state regulation of economy of regions of the Russian Federation, assessment of natural resource and socio-economic potential of the constituent entities, Federal districts. Meets the requirements of Federal state educational standards of higher education of the last generation. Designed for bachelors, masters, studying the discipline "Regional economy" as well as for postgraduates and teachers of economic universities, practitioners of economic services of enterprises and organizations. Can be useful for specialists of Federal and regional authorities.
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10

Korneva, V. V. Narechii︠a︡ i parametry prostranstvennoĭ kartiny mira: Monografii︠a︡. Voronezh: Voronezhskiĭ gos. universitet, 2008.

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11

Wall, Maria. Utilisation of building design for climatic control in glazed spaces: A parametric study. Stockholm: Swedish Council for Building Research, 1991.

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12

Betanov, V. V. Algoritmy opredelenii͡a︡ parametrov upravlenii͡a︡ manevrami avtomaticheskikh kosmicheskikh apparatov blizhnego kosmosa: Nauchno-metodicheskie materialy. Moskva: Raketnye voĭska strategicheskogo naznachenii͡a︡, 1997.

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13

Parametric state space structuring. Hampton, VA: Institute for Computer Applications in Science and Engineering, NASA Langley Research Center, 1997.

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14

Boersma, Stuart F. Parametric manifolds. 1994.

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15

Developing integrated parametric planning models for budgeting and managing complex projects. Clear Lake, Tex: Research Institute for Computing and Information Systems, University of Houston, 1990.

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16

Rezende, Rene Nardi. Liquid Rocket Engine: Thrust Chamber Parametric Modeling. SAE International, 2018.

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17

National Aeronautics and Space Administration (NASA) Staff. Parametric Study of Radiator Concepts for a Stirling Radioisotope Power System Applicable to Deep Space Mission. Independently Published, 2018.

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18

Sheehan, Michelle. Parameterizing Ergativity: An Inherent Case Approach. Edited by Jessica Coon, Diane Massam, and Lisa Demena Travis. Oxford University Press, 2017. http://dx.doi.org/10.1093/oxfordhb/9780198739371.013.3.

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This chapter posits a parameter hierarchy to capture micro-parametric variation in ergative (or rather non-accusative) alignment, building on the proposal that ergative is an inherent case, assigned by little vs. Initial parameters determine the distribution of this inherent case across instances of little v in a given language, sensitive to various thematic features, and subsequent dependent parameters determine further properties of ergative-assigning vs such as the presence of a movement trigger and the suppression of structural Case features. This gives rise to a number of distinct ergative types depending on the distribution of ergative case, the presence/absence of syntactic ergativity, and the source of absolutive case in transitive contexts. The resultant parameter hierarchy serves to restrict the space of variation, modeling a number of proposed implicational universals in this domain, and provides a potential solution to the subset problem in acquisition by encoding a notion of relative markedness.
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19

Liquid Rocket Engine: Thrust Chamber Parametrical Modeling. SAE International, 2019.

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20

Parametrix for Wave Equations on a Rough Background III: Space-Time Regularity of the Phase. American Mathematical Society, 2018.

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21

Lee, David. Changing Audience Cognition of Static and Dynamic Spaces Using Parametric Form in New Volumetric Interiors. Blurb, Incorporated, 2021.

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22

Krasnopolskaia, Iuliia. Design and Parametric Modeling of Pretensioned and Stiffened Membranes Project Work. Technische Universität Dresden, 2021. http://dx.doi.org/10.25368/2022.407.

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This research aimed to develop conceptually the pretensioned and stiffened membrane structures, using an experimental approach and computer simulation. The physical method of form finding included the pretensioned fabric with the glued grid made of the wooden sticks. Relaxation of the stressed membrane contributed to forming the specific anticlastic hyparic surface by energy release. The influence of the rigid elements pattern, intensity and direction of pretensioning on the final shape was investigated. The tensegrity structures were also built applying the same form finding way. These experiments led to the modelling of resulting samples with parametric design tools, namely Rhino and Grasshopper. Optimization of the final shape was carried out by changing parameters such as stiffenings configuration and membrane strength. This digital approach demonstrated successful simulation and rationalization of considered structures. Moreover, the final models can be used for further structural analysis and BIM. Considered membrane structures have very efficient load-bearing behavior. They are characterized by small weight, high light transmission and the ability to create large usable spaces free from columns. The most dangerous loads for membrane structures are wind and ponding. In practice, PTFE coated glass-fibre fabric and PVC coated polyester fabric are most suitable for pretensioned and stiffened membrane structures. The role of stiff elements can be played by steel profiles or metal tubes. The average time for the construction of a membrane structure is 6-15 months. Resulted pretensioned and stiffened membrane structures can be used as pavilions, roofs and awnings. They are distinguished by spectacular architectural view and very effective structural system. In addition, membrane tensile structures are characterized by high eco-efficiency and sustainability compared to other types of construction.
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23

Epstein, Charles L., and Rafe Mazzeo. The Resolvent Operator. Princeton University Press, 2017. http://dx.doi.org/10.23943/princeton/9780691157122.003.0011.

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This chapter describes the construction of a resolvent operator using the Laplace transform of a parametrix for the heat kernel and a perturbative argument. In the equation (μ‎-L) R(μ‎) f = f, R(μ‎) is a right inverse for (μ‎-L). In Hölder spaces, these are the natural elliptic estimates for generalized Kimura diffusions. The chapter first constructs the resolvent kernel using an induction over the maximal codimension of bP, and proves various estimates on it, along with corresponding estimates for the solution operator for the homogeneous Cauchy problem. It then considers holomorphic semi-groups and uses contour integration to construct the solution to the heat equation, concluding with a discussion of Kimura diffusions where all coefficients have the same leading homogeneity.
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24

Algebraic Statistics. American Mathematical Society, 2018.

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