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1

Bhandari, Bhavya. « Basic Structure in the Constitution of India ». International Journal of Trend in Scientific Research and Development Volume-2, Issue-5 (31 août 2018) : 899–903. http://dx.doi.org/10.31142/ijtsrd16994.

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Mendola, Joseph. « On Rawls’s Basic Structure ». Monist 71, no 3 (1988) : 437–54. http://dx.doi.org/10.5840/monist198871329.

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Hodgson, Louis-Philippe. « Why the Basic Structure ? » Canadian Journal of Philosophy 42, no 3-4 (décembre 2012) : 303–34. http://dx.doi.org/10.1353/cjp.2012.0014.

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John Rawls famously holds that the basic structure is the ‘primary subject of justice.’ By this, he means that his two principles of justice apply only to a society's major political and social institutions, including chiefly the constitution, the economic and legal systems, and (more contentiously) the family structure. This thesis — call it thebasic structure restriction— entails that the celebrated difference principle has a narrower scope than one might have expected. It doesn't apply directly to choices that individuals make within the basic structure. Individuals can live up to the demands of justice simply by obeying whatever rules are set by, and by doing what is necessary to sustain, the basic structure; they needn't attempt to benefit maximally the worst off through their personal choices. Nor does the principle apply to interactions taking place beyond the basic structure, on the international stage. International actors can live up to the demands of justice by observing a comparatively modest ‘duty of assistance’ toward severely destitute societies; they needn't make it their aim to benefit maximally the world's poorest individuals.
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Ferdman, Avigail. « A perfectionist basic structure ». Philosophy & ; Social Criticism 45, no 7 (13 février 2019) : 862–82. http://dx.doi.org/10.1177/0191453718820891.

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When philosophers talk about perfectionism, it is usually as a view of well-being, of developing characteristically human capacities. Yet perfectionism can also be a normative account of what we owe to each other. This article argues that perfectionists have reason to endorse a perfectionist basic structure such that enables persons to develop and exercise their human capacities in meaningful ways. This basic structure has two complementary features: First, it enables a diversity of life experiences. Second, it provides a spatial opportunity structure that creates open-minded environments. Absent these features, rich or lucky individuals gain an unfair advantage in the sphere of opportunities for developing their capacities in meaningful ways.
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Kurtulmus, Faik. « The Epistemic Basic Structure ». Journal of Applied Philosophy 37, no 5 (3 juillet 2020) : 818–35. http://dx.doi.org/10.1111/japp.12451.

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HODGSON, LOUIS-PHILIPPE. « Why the Basic Structure ? » Canadian Journal of Philosophy 42, no 3-4 (janvier 2012) : 303–34. http://dx.doi.org/10.1080/00455091.2012.10716779.

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Koraboyevna, Atakhonova Sayyora. « BASIC METHODS OF STUDYING THE INTERNAL STRUCTURE OF METALS ». American Journal of Engineering and Technology 5, no 12 (1 janvier 2023) : 33–37. http://dx.doi.org/10.37547/tajet/volume05issue12-08.

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This article presents the methods of analysis of metals. Technological processes, such as checking the macro and microstructure of metals and alloys, are widely covered. Equipment used for macro and micro analysis and slide preparation technologies are widely covered.
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Khushak, Sanaullah, Ani Luo, Chandio Basit et Asif Raza. « Basic mathematical form of Michell structure ». Journal of Applied Engineering Science 19, no 2 (2021) : 551–54. http://dx.doi.org/10.5937/jaes0-27675.

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Michell structure is well known among tensegrity structures due to its optimization form and minimum mass of the structure. Michell had adopted this idea from the results of James C Maxwell's research on truss design. This paper presents the basic mathematical model of Michell structure based on complexity order q=2 in the two-dimensional coordinate system. This mathematical model imparts the analysis of all nodes and all members of Michell structure and investigates their position to construct a stable Michell structure. This basic mathematical model of Michell structure of complexity order q=2 can be used as a foundation to develop the Michell structure of high complexity orders. Furthermore, the force density in each member of the structure has been studied. An expression to calculate the minimum mass of structure has been defined at the end of this paper, which is the most important factor to construct any kind of tensegrity structure.
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Abeyratne, Rehan. « Giving structure to the basic structure doctrine ». Indian Law Review 1, no 2 (4 mai 2017) : 182–89. http://dx.doi.org/10.1080/24730580.2017.1384144.

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Nakaminami, Masamitsu, Tsutomu Tokuma, Kazuhiko Matsumoto, Sachinori Sakashita, Toshimichi Moriwaki et Keiichi Nakamoto. « Optimal Structure Design Methodology for Compound Multiaxis Machine Tools - II - Investigation of Basic Structure - ». International Journal of Automation Technology 1, no 2 (5 novembre 2007) : 87–93. http://dx.doi.org/10.20965/ijat.2007.p0087.

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Compound multiaxis machine tools are used to machine high-value-added parts through integrating milling and turning. Compound machine tools are generally structured based on a conventional NC lathe by incorporating Y axis and automatic tool changer (ATC) components for milling. Due to complexity of the structure and functional versatility required for a compound machine tool, accuracy, productivity, and return on investment (ROI) must be improved over conventional NC lathes and machining centers. In the sections that follow, we discuss design methodology for compound multiaxis machine tools, focusing on the design of an optimal basic structure for high accuracy and high productivity. We propose a box in box structure, a movable column-Y axis, and a boring machine structure. We analyzed static rigidity, dynamic features, and movement accuracy of machine structures theoretically using FEM for three proposed structures. We found that the box in box structure is suitable for compound multiaxis machine tools to achieve high accuracy and high productivity.
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Krifka, Manfred. « Basic notions of information structure ». Acta Linguistica Hungarica 55, no 3-4 (décembre 2008) : 243–76. http://dx.doi.org/10.1556/aling.55.2008.3-4.2.

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Singh, Aruno Raj. « Doctrine of the basic structure ». Asian Journal of Multidimensional Research 10, no 11 (2021) : 78–83. http://dx.doi.org/10.5958/2278-4853.2021.01065.x.

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Rodenberg, Joseph H., et Howard Rodenberg. « Part 2 : Basic business structure ». Air Medical Journal 17, no 3 (juillet 1998) : 125–26. http://dx.doi.org/10.1016/s1067-991x(98)90111-0.

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Frescura, F. A. M., et G. Lubczonok. « Contact Structure with Basic Potentials ». International Journal of Theoretical Physics 44, no 1 (janvier 2005) : 35–42. http://dx.doi.org/10.1007/s10773-005-1432-3.

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Basgen, John M. « Basic Stereology ». Microscopy Today 11, no 1 (février 2003) : 12–17. http://dx.doi.org/10.1017/s1551929500052275.

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Many us who use microscopes are interested in the internal structure or components of three-dimensional objects. Often we must section these objects to observe these internal components. For many years, microtomes have been used to make physical sections, but in recent years confocal microscopes, MR imaging, CT scanners, and even standard optical microscopes have been used to obtain “optical” sections. Two-dimensional images of these different types of sections can be used to extract three-dimensional quantitative information about the objects and their internal components, The sectioning process reduces the observed dimensions of the object and components. With apologies to Rene Magritte, the structure portrayed in Figure 1 is not a three-dimensional glomerulus but a two-dimensional profile of a glomerulus. In most cases, interest is on the structure of the three-dimensional object and not the structure in the two-dimensional image. Thus, care must be taken when obtaining and interpreting data from two-dimensional images.
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Reif, Wolf-Ernst. « The basic structure of Gaia : Homeostatic fluxes or evolutionarily stable ecosystems ? » Neues Jahrbuch für Geologie und Paläontologie - Monatshefte 1999, no 11 (24 novembre 1999) : 647–60. http://dx.doi.org/10.1127/njgpm/1999/1999/647.

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YENER, Yeşim, et Muhammed Erkam İNAN. « Cognitive Structure of Precervice Primary School Teachers for Basic Biology Concepts ». Acta Didactica Napocensia 15, no 1 (31 août 2022) : 142–55. http://dx.doi.org/10.24193/adn.15.1.12.

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"This study aimed to determine the cognitive structures of preservice primary school teachers for basic biology concepts using Word Association Test (WAT). The study group consists of 50 preservice teachers studying in a university in Western Black Sea Region in Turkey. Four separate cut-off points were determined and analysed. Organ, living things, microscope were the most common response words. The conceptual network was structured as three different islets that were disconnected from each other at the third cut-off point. The desired conceptual network was formed only when cut-off point was taken further than the last cut-off point, and that these desired interconnections, network structure were formed in some students. It is suggested that this situation should be taken into consideration while determining cognitive structures using WAT and that lecturing should be performed according to the structure of the conceptual network that is desired to be shaped in the students' memory. "
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Tseng, Jui Chiao. « Manage of Basic Nursing to Construct Knowledge Structure ». Advanced Materials Research 1079-1080 (décembre 2014) : 686–89. http://dx.doi.org/10.4028/www.scientific.net/amr.1079-1080.686.

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This study is to provide an integrated method and algorithm for knowledge structure analysis and cognition diagnosis. Most researchers of educational measurement analyzed testing data from paper-pencil test by classical test theory (CTT) or interviewed with students in order to acquire students’ knowledge structures. Moreover, it is considered that knowledge structures are important for instruction. Information of knowledge structures is useful because it will be helpful for cognition diagnosis so that remedial instruction becomes feasible.
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Panichas, George E. « The Structure of Basic Human Rights ». Law and Philosophy 4, no 3 (décembre 1985) : 343. http://dx.doi.org/10.2307/3504753.

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BARNSLEY, MICHAEL F., KRZYSZTOF LEŚNIAK et MIROSLAV RYPKA. « BASIC TOPOLOGICAL STRUCTURE OF FAST BASINS ». Fractals 26, no 01 (février 2018) : 1850011. http://dx.doi.org/10.1142/s0218348x18500111.

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Prediger, Dale J. « Basic structure of work-relevant abilities. » Journal of Counseling Psychology 46, no 2 (1999) : 173–84. http://dx.doi.org/10.1037/0022-0167.46.2.173.

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Dickins, J. « Basic Sentence Structure in Sudanese Arabic ». Journal of Semitic Studies 55, no 1 (1 mars 2010) : 237–61. http://dx.doi.org/10.1093/jss/fgq046.

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Löffler, A. « The ambient structure of basic sets ». Ergodic Theory and Dynamical Systems 15, no 6 (décembre 1995) : 1183–88. http://dx.doi.org/10.1017/s0143385700009858.

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AbstractLet Λ be a basic set of an Axiom A diffeomorphism of a compact Riemannian manifold M without boundary. If ε is small enough one can find by local product structure that for x ε Λ there is a neighborhood V(x) in M such that V ∩ Λ is homeomorphic to . The author proves that this homeomorphism can be extended to a homeomorphism of V onto .
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Ronzoni, Miriam. « What Makes a Basic Structure Just ? » Res Publica 14, no 3 (21 août 2008) : 203–18. http://dx.doi.org/10.1007/s11158-008-9056-0.

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Flinch Midtgaard, Søren. « Justice, the Basic Structure, and Stability ». Acta Politica 38, no 2 (juin 2003) : 125–45. http://dx.doi.org/10.1057/palgrave.ap.5500027.

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Ghavami, Mohammad, Arash Amini et Farrokh Marvasti. « Unified Structure of Basic UWB Waveforms ». IEEE Transactions on Circuits and Systems II : Express Briefs 55, no 12 (décembre 2008) : 1304–8. http://dx.doi.org/10.1109/tcsii.2008.2008068.

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SEDDON, ANDREW, MILDRED DECKER, THOMAS MÜLLER, DOUGLAS ARMELLINO, IMRE KOVESDI, YAKOV GLUZMAN et PETER BÖHLEN. « Structure/Activity Relationships in Basic FGF ». Annals of the New York Academy of Sciences 638, no 1 The Fibroblas (décembre 1991) : 98–108. http://dx.doi.org/10.1111/j.1749-6632.1991.tb49021.x.

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Meşe, Gülistan, Gabriele Richard et Thomas W. White. « Gap Junctions : Basic Structure and Function ». Journal of Investigative Dermatology 127, no 11 (novembre 2007) : 2516–24. http://dx.doi.org/10.1038/sj.jid.5700770.

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Rassy, M., et P. H. Zieschang. « Basic structure theory of association schemes ». Mathematische Zeitschrift 227, no 3 (mars 1998) : 391–402. http://dx.doi.org/10.1007/pl00004380.

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Panichas, George E. « The structure of basic human rights ». Law and Philosophy 4, no 3 (décembre 1985) : 343–75. http://dx.doi.org/10.1007/bf00698473.

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Ghormare, Mithleshwari, et Alok Kumar. « Numerical Analysis on Quantum Graphs Differential/Pseudo-Differential Operator : some Basic Structure ». Journal of Advances and Scholarly Researches in Allied Education 15, no 4 (1 juin 2018) : 253–62. http://dx.doi.org/10.29070/15/57892.

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Tapdigov, Sh Z., N. A. Zeynalov, D. B. Taghiyev, U. M. Akhmedova, A. I. Mammadova, M. Kh Hasanova et M. A. Amirov. « RESEARCH INTO PROPERTIES AND STRUCTURE OF BASIC POLYSACCHARIDE IN PRUNUS DOMESTICA (CHERRY) ». Chemical Problems 2018, no 1 (2018) : 35–43. http://dx.doi.org/10.32737/2221-8688-2018-1-35-43.

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Balraj, Noah Anburaj. « Management of Basic Unit of Organizational Structure ». Abstract Proceedings International Scholars Conference 7, no 1 (18 décembre 2019) : 1259–69. http://dx.doi.org/10.35974/isc.v7i1.1970.

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This research paper identifies components of organizational structure and the need to formulate a basic unit of organizational structure. The basic unit of any organization is vitally a propelling force that enables goal implementation and accomplishment. While organizational structures impact on the success and failure of achieving the set goal of an organization, it is extremely important to understand the elements that construct the basic structural unit of an organization. The purpose of the study is to understand and develop a substantial model of a basic structural unit of organization and how it could be managed. The methodology of the paper is through the holistic structural analysis of the basic units of living things and its relative impact on living, and relating the conceptual phenomenon of the living things to organizational structure and derive a basic unit. It is purely a qualitative study on living thing’s structural and functional aspects. The data collected were observed components of structural and functional aspects of human and plant anatomy and physiology and inanimate elements. Finding depicts the basic structural unit of an organization is composed of a physical system, cognitive system, social system, and spiritual system. Contingency approach of a basic unit fits all situations with the right composition of the systems considered in this research. Creating a basic unit of an organizational structure to function continuously to eliminate overt pressure and stress on employees. Differences in the functions performed internally and externally by living things and organization are significant. Synchronizing functional units with the basic unit have an effective outcome of organizational goals. Further study could be done separately on the sustainability of organizational growth and its effective basic unit. Discussions of the research identify the management of basic unit towards organizational efficiency and effectiveness.
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Yih, Jeng Ming. « Management of Basic Mathematic Concepts for Cognition Diagnosis ». Advanced Materials Research 1079-1080 (décembre 2014) : 679–82. http://dx.doi.org/10.4028/www.scientific.net/amr.1079-1080.679.

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Knowledge Management of Mathematics Concepts was essential in educational environment. The purpose of this study is to provide an integrated method of fuzzy theory basis for individualized concept structure analysis. This method integrates Fuzzy Logic Model of Perception (FLMP) and Interpretive Structural Modeling (ISM). The combined algorithm could analyze individualized concepts structure based on the comparisons with concept structure of expert. The empirical data is Basic Mathematic test of Junior College students. The object of concept advanced interpretive structural modeling (CAISM) is to provide individualized hierarchy structure of knowledge of examinees based on response patterns of tests. It shows that knowledge structures will be feasible for remedial instruction and this procedure will also useful for cognition diagnosis.
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Hollingsworth, Scott A., et P. Andrew Karplus. « A fresh look at the Ramachandran plot and the occurrence of standard structures in proteins ». BioMolecular Concepts 1, no 3-4 (1 octobre 2010) : 271–83. http://dx.doi.org/10.1515/bmc.2010.022.

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AbstractThe Ramachandran plot is among the most central concepts in structural biology, seen in publications and textbooks alike. However, with the increasing numbers of known protein structures and greater accuracy of ultra-high resolution protein structures, we are still learning more about the basic principles of protein structure. Here, we use high-fidelity conformational information to explore novel ways, such as geo-style and wrapped Ramachandran plots, to convey some of the basic aspects of the Ramachandran plot and of protein conformation. We point out the pressing need for a standard nomenclature for peptide conformation and propose such a nomenclature. Finally, we summarize some recent conceptual advances related to the building blocks of protein structure. The results for linear groups imply the need for substantive revisions in how the basics of protein structure are handled.
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Gao, Jian Hong. « The Equivalent Stress Contrast Analyse of Inverse Structure and General Structure Asphaltum Pavement ». Applied Mechanics and Materials 178-181 (mai 2012) : 1254–57. http://dx.doi.org/10.4028/www.scientific.net/amm.178-181.1254.

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Based on the multi-layer elastic system theory , it was elicited that the top basic-layer rigidity was a main determinate factor for the surface-layer bottom maximal equivalent stress. And the more basic-layer rigidity, the less surface-layer bottom maximal equivalent stress, showing the more the partake action of basic-layer to the surface-layer bearing axis load. On the side, bearing the same axis load, the stress passed to groundwork from the inverse structure was most compared with the other structures. So the inverse structure has no predominance in the road structure design.
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Chin, Shu Jia, et Mohamad Zoinol Abidin Abd. Aziz. « Basic structure of square and circle for defected waveguide structure ». MATEC Web of Conferences 140 (2017) : 01010. http://dx.doi.org/10.1051/matecconf/201714001010.

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Crasmareanu, Mircea. « Semi-basic 1-forms and courant structure for metrizability problems ». Publications de l'Institut Math?matique (Belgrade) 98, no 112 (2015) : 153–63. http://dx.doi.org/10.2298/pim150203020c.

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The metrizability of sprays, particularly symmetric linear connections, is studied in terms of semi-basic 1-forms using the tools developed by Bucataru and Dahl in [2]. We introduce a type of metrizability in relationship with the Finsler and projective metrizability. The Lagrangian corresponding to the Finsler metrizability as well as the Bucataru{Dahl characterization of Finsler and projective metrizability are expressed by means of the Courant structure on the big tangent bundle of TM. A byproduct of our computations is that a at Riemannian metric, or generally an R-at Finslerian spray, yields two complementary, but not orthogonally, Dirac structures on TbigTM. These Dirac structures are also Lagrangian subbundles with respect to the natural almost symplectic structure of TbigTM.
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Król, Henryk, Małgorzata Klyszcz-Morciniec et Bogdan Bacik. « The Structure of Selected Basic Acrobatic Jumps ». Journal of Human Kinetics 75, no 1 (31 octobre 2020) : 41–64. http://dx.doi.org/10.2478/hukin-2020-0036.

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Abstract The aim of this study was to investigate the relationships between the internal and external structure of basic acrobatic jumps. Eleven healthy elite artistic gymnasts (9 female, 2 male) participated in this study. Participants performed the following basic ‘acrobatic’ jumps: a tucked backward somersault (TS), a piked backward somersault (PS), and a countermovement jump (CMJ). Furthermore, female gymnasts also performed the backward handspring (HS), taking off and then landing on their hands in the same place – a specific jump only for women. All jumps were initiated from a stationary upright posture and with an arms swing. Six infrared cameras, synchronized with a module for wireless measurement of the electrical activity of eight muscles, and the force plate were used. Infrared camera-recordings were made in order to obtain kinematic variables describing the movement structure of the acrobatic jumps. These variables may explain the characteristics of muscle activation (the internal structure of the movement) and ground reaction force (the external-kinetic structure of the movement). However, for various technical reasons, it was not possible to register all the specified jumps in the protocol. Moreover, the distribution normalities, estimated by the Kolmogorov-Smirnov test, differed between variables. Therefore, to compare the data, the pair-wise nonparametric Wilcoxon Signed-Ranks Test was applied. The CMJ showed the highest level of vertical impulse, velocity, and displacement followed by the TS, PS, and HS. In the take-off phase of acrobatic jumps with rotation the average muscle activation levels of the biceps femoris were significantly higher and of the rectus femoris significantly lower than in the countermovement jump.
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OSAKI, Kenji. « Crystal Structure Database of Basic Inorganic Substances ». Nihon Kessho Gakkaishi 48, no 4 (2006) : 296–99. http://dx.doi.org/10.5940/jcrsj.48.296.

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Shikulskaya, Olga, Mikhail Shikulskiy et Vera Gerasimova. « Modeling of the Basic Educational Program Structure ». Recent Patents on Computer Science 9, no 2 (25 juillet 2016) : 133–40. http://dx.doi.org/10.2174/2213275908666150922200217.

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Tambusai, Azhary, Khairina Nasution et Sofia Rahmi. « Basic Structure of the Riau Malay Clauses ». International Journal of Social Sciences and Humanities Invention 9, no 08 (25 août 2022) : 7169–78. http://dx.doi.org/10.18535/ijsshi/v9i08.07.

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This study aims to explain the basic structure of Riau Malay clauses using a linguistic typology approach. Data obtained from oral and written data. The method used is Sudaryanto (2005). The discussion is based on the opinion of Jufrizal (2012). The results showed that the basic clauses of BMR were in the form of (1) non-verbal basic clauses whose predicates are nouns (pronouns), adjectives, numerals, and prepositions which are located one argument before the predicate (2) verbal clauses in the form of transitive and intransitive forms. Verbs that occupy the predicate position in the two clauses are marked morphologically with affixes and some can stand alone without affixes. The BMR intransitive clause has one argument that comes before the predicate (verb). There are transitive clauses that have two or three arguments.
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Kimmelman, Vadim. « Basic argument structure in Russian Sign Language ». Glossa : a journal of general linguistics 3, no 1 (29 octobre 2018) : 116. http://dx.doi.org/10.5334/gjgl.494.

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Hong, Sung Hwa. « Basic Physics and Structure of Hearing Aid ». Journal of Clinical Otolaryngology Head and Neck Surgery 14, no 2 (novembre 2003) : 221–31. http://dx.doi.org/10.35420/jcohns.2003.14.2.221.

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Neufeld, Blain. « Coercion, the Basic Structure, and the Family ». Journal of Social Philosophy 40, no 1 (mars 2009) : 37–54. http://dx.doi.org/10.1111/j.1467-9833.2009.01437.x.

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Pusparini, Indrawati, et Endang Setiyo Astuti. « BASIC STRUCTURE MODULE BASED ON HYBRID LEARNING ». Journey (Journal of English Language and Pedagogy) 2, no 2 (21 septembre 2019) : 118–23. http://dx.doi.org/10.33503/journey.v2i2.546.

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The research aims to find out the basic structure module based on hybrid learning needed by the students of Ikip Budi Utomo Malang in learning structure, especially basic structure. The current study was a need analysis which was done in the area of developing making basic structure module based on hybrid learning. The quantitative method were conducted in this research to describe the students’ needs. In collecting the data, the researcher applied questionnaire for the students as the instrument of the research. The data was taken through a questionnaire with given to 45 students who took basic structure course in the 2018-2019 academic year and analyzed quantitatively. The results of this study reveal that the students need a clear goals of basic structure modul based on hybrid learning, the materials in line with the course outline, the assignment and current technology for the teaching and learning process.
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Degtyarev, G. P., et A. G. Degtyarev. « GERMANY’S PENSION SYSTEM : PARAMETERS, STRUCTURE, BASIC CHARACTERISTICS ». social & ; labor researches 38, no 1 (2020) : 139–52. http://dx.doi.org/10.34022/2658-3712-2020-38-1-139-152.

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Закирова, Алсу, Alsu Zakirova, Гузалия Клычова, Guzaliya Klychova, Валерия Кириллова, Valeriya Kirillova, Альфия Юсупова et Al'fiya Yusupova. « SOCIAL REPORTING : PURPOSE, BASIC FORMATION PRINCIPLES, STRUCTURE ». Vestnik of Kazan State Agrarian University 14, no 1 (30 mars 2019) : 120–25. http://dx.doi.org/10.12737/article_5ccedf721fe994.27768489.

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At present, the participation of enterprises in social events has increased significantly. In this connection, questions of the reflection of non-financial information, which satisfies public inquiries about the organization’s activities, become more relevant. One of the effective tools, that provide a holistic view of the social and economic activity of the enterprise, is social reporting. The article studies and clarifies the economic essence of the concept of “social reporting”, discusses the basic principles of the formation of social reporting and its structure. Social reporting should include the following sections: the strategy of the organization; functional structure of the organization; types of activities, legal form, size of organization; managment structure; changes in the structure, scale, form of ownership of the organization in the reporting period; business processes; stakeholder engagement; innovative development of the organization; performance indicators in the field of interaction with society. To reflect the performance indicators of innovation, environmental protection activities and performance indicators in the field of interaction with society, the article proposed forms of social reports. They propose to reflect such indicators as the share of costs associated with research and development of technologies, the acquisition of innovative products, the introduction / use of R&D results, new technologies, new technology; expenses for environmental services; the costs associated with the overhaul of fixed assets for environmental protection; costs for the protection and rehabilitation of land, groundwater and surface water, the cost of biodiversity conservation and protection of natural areas; the cost of socio-economic development of the region; the cost of charitable assistance in the field of culture, education, sports, health. The proposed social reporting format is an effective tool that increases trust, quality, reliability, and transparency in customer relationships; promotes brand awareness and investment in the environment, community, human capital; improves the quality of business management, competitiveness and quality of products; increases the efficiency of personnel management, ensures the safety and economy of natural resources
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JULIUS, A. J. « Basic Structure and the Value of Equality ». Philosophy Public Affairs 31, no 4 (octobre 2003) : 321–55. http://dx.doi.org/10.1111/j.1088-4963.2003.00321.x.

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Tjäderhane, Leo, Marcela R. Carrilho, Lorenzo Breschi, Franklin R. Tay et David H. Pashley. « Dentin basic structure and composition-an overview ». Endodontic Topics 20, no 1 (mars 2009) : 3–29. http://dx.doi.org/10.1111/j.1601-1546.2012.00269.x.

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