Academic literature on the topic 'Q-space'

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Journal articles on the topic "Q-space"

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Samuel, Christian. "On spaces of operators on $C(Q)$ spaces ($Q$ countable metric space)." Proceedings of the American Mathematical Society 137, no. 03 (September 11, 2008): 965–70. http://dx.doi.org/10.1090/s0002-9939-08-09635-4.

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Dipper, Richard, and Gordon James. "q-Tensor Space and q-Weyl Modules." Transactions of the American Mathematical Society 327, no. 1 (September 1991): 251. http://dx.doi.org/10.2307/2001842.

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Dipper, Richard, and Gordon James. "$q$-tensor space and $q$-Weyl modules." Transactions of the American Mathematical Society 327, no. 1 (January 1, 1991): 251–82. http://dx.doi.org/10.1090/s0002-9947-1991-1012527-1.

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Bakhyt, A., and N. T. Tleukhanova. "The problem of trigonometric Fourier series multipliers of classes in λp,q spaces." BULLETIN OF THE KARAGANDA UNIVERSITY-MATHEMATICS 100, no. 4 (December 30, 2020): 17–25. http://dx.doi.org/10.31489/2020m4/17-25.

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In this article, we consider weighted spaces of numerical sequences λp,q, which are defined as sets of sequences a = {ak}^∞_k=1, for which the norm ||a||λp,q :=\sum^∞_k=1|ak|^q k^(q/p −1)^1/q<∞ is finite. In the case of non-increasing sequences, the norm of the space λp,q coincides with the norm of the classical Lorentz space lp,q. Necessary and sufficient conditions are obtained for embeddings of the space λp,q into the space λp1,q1. The interpolation properties of these spaces with respect to the real interpolation method are studied. It is shown that the scale of spaces λp,q is closed in the relative real interpolation method, as well as in relative to the complex interpolation method. A description of the dual space to the weighted space λp,q is obtained. Specifically, it is shown that the space is reflective, where p', q' are conjugate to the parameters p and q. The paper also studies the properties of the convolution operator in these spaces. The main result of this work is an O’Neil type inequality. The resulting inequality generalizes the classical Young-O’Neil inequality. The research methods are based on the interpolation theorems proved in this paper for the spaces λp,q.
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Ferahtia, N., and S. E. Allaoui. "A generalization of a localization property of Besov spaces." Carpathian Mathematical Publications 10, no. 1 (July 3, 2018): 71–78. http://dx.doi.org/10.15330/cmp.10.1.71-78.

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The notion of a localization property of Besov spaces is introduced by G. Bourdaud, where he has provided that the Besov spaces $B^{s}_{p,q}(\mathbb{R}^{n})$, with $s\in\mathbb{R}$ and $p,q\in[1,+\infty]$ such that $p\neq q$, are not localizable in the $\ell^{p}$ norm. Further, he has provided that the Besov spaces $B^{s}_{p,q}$ are embedded into localized Besov spaces $(B^{s}_{p,q})_{\ell^{p}}$ (i.e., $B^{s}_{p,q}\hookrightarrow(B^{s}_{p,q})_{\ell^{p}},$ for $p\geq q$). Also, he has provided that the localized Besov spaces $(B^{s}_{p,q})_{\ell^{p}}$ are embedded into the Besov spaces $B^{s}_{p,q}$ (i.e., $(B^{s}_{p,q})_{\ell^{p}}\hookrightarrow B^{s}_{p,q},$ for $p\leq q$). In particular, $B_{p,p}^{s}$ is localizable in the $\ell^{p}$ norm, where $\ell^{p}$ is the space of sequences $(a_{k})_{k}$ such that $\|(a_{k})\|_{\ell^{p}}<\infty$. In this paper, we generalize the Bourdaud theorem of a localization property of Besov spaces $B^{s}_{p,q}(\mathbb{R}^{n})$ on the $\ell^{r}$ space, where $r\in[1,+\infty]$. More precisely, we show that any Besov space $B^{s}_{p,q}$ is embedded into the localized Besov space $(B^{s}_{p,q})_{\ell^{r}}$ (i.e., $B^{s}_{p,q}\hookrightarrow(B^{s}_{p,q})_{\ell^{r}},$ for $r\geq\max(p,q)$). Also we show that any localized Besov space $(B^{s}_{p,q})_{\ell^{r}}$ is embedded into the Besov space $B^{s}_{p,q}$ (i.e., $(B^{s}_{p,q})_{\ell^{r}}\hookrightarrow B^{s}_{p,q},$ for $r\leq\min(p,q)$). Finally, we show that the Lizorkin-Triebel spaces $F^{s}_{p,q}(\mathbb{R}^{n})$, where $s\in\mathbb{R}$ and $p\in[1,+\infty)$ and $q\in[1,+\infty]$ are localizable in the $\ell^{p}$ norm (i.e., $F^{s}_{p,q}=(F^{s}_{p,q})_{\ell^{p}}$).
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Yaying, Taja, Bipan Hazarika, and Mohammad Mursaleen. "On Generalized p , q -Euler Matrix and Associated Sequence Spaces." Journal of Function Spaces 2021 (June 19, 2021): 1–14. http://dx.doi.org/10.1155/2021/8899960.

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In this study, we introduce new BK -spaces b s r , t p , q and b ∞ r , t p , q derived by the domain of p , q -analogue B r , t p , q of the binomial matrix in the spaces ℓ s and ℓ ∞ , respectively. We study certain topological properties and inclusion relations of these spaces. We obtain a basis for the space b s r , t p , q and obtain Köthe-Toeplitz duals of the spaces b s r , t p , q and b ∞ r , t p , q . We characterize certain classes of matrix mappings from the spaces b s r , t p , q and b ∞ r , t p , q to space μ ∈ ℓ ∞ , c , c 0 , ℓ 1 , b s , c s , c s 0 . Finally, we investigate certain geometric properties of the space b s r , t p , q .
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Othman, Hakeem A. "q-SPACE (q-TIME)-DEFORMATION OF THE CONTINUITY EQUATION." International Journal of Research -GRANTHAALAYAH 9, no. 8 (August 31, 2021): 185–92. http://dx.doi.org/10.29121/granthaalayah.v9.i8.2021.4177.

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A q-space (q-time)-deformation of the continuity equations are introduced using the q-derivative (or Jackson derivative). By quantum calculus, we solve such equations. The free cases are discussed separately.
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Feng, Xiaogao, Shengjin Huo, and Shuan Tang. "Universal Teichmüller spaces and F(p,q,s) space." Annales Academiae Scientiarum Fennicae Mathematica 42 (February 2017): 105–18. http://dx.doi.org/10.5186/aasfm.2017.4208.

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Furqan, Salman, Hüseyin Işık, and Naeem Saleem. "Fuzzy Triple Controlled Metric Spaces and Related Fixed Point Results." Journal of Function Spaces 2021 (May 20, 2021): 1–8. http://dx.doi.org/10.1155/2021/9936992.

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In this study, we introduce fuzzy triple controlled metric space that generalizes certain fuzzy metric spaces, like fuzzy rectangular metric space, fuzzy rectangular b -metric space, fuzzy b -metric space, and extended fuzzy b -metric space. We use f , g , h , three noncomparable functions as follows: m q μ , η , t + s + w ≥ m q μ , ν , t / f μ , ν ∗ m q ν , ξ , s / g ν , ξ ∗ m q ξ , η , w / h ξ , η . We prove Banach fixed point theorem in the settings of fuzzy triple controlled metric space that generalizes Banach fixed point theorem for aforementioned spaces. An example is presented to support our main results. We also apply our technique to the uniqueness for the solution of an integral equation.
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Markoski, Gjorgji, and Abdulla Buklla. "On product of spaces of quasicomponents." Filomat 31, no. 20 (2017): 6307–11. http://dx.doi.org/10.2298/fil1720307m.

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We use a characterization of quasicomponents by continuous functions to obtain the well known theorem which states that product of quasicomponents Qx,Qy of topological spaces X,Y, respectively, gives quasicomponent in the product space X x Y. If spaces X,Y are locally-compact, paracompact and Haussdorf, then we prove that the space of quasicomponents of the product Q(XxY) is homeomorphic with the product space Q(X) x Q(Y), so these two spaces have the same topological properties.
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Dissertations / Theses on the topic "Q-space"

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Bachmaier, Fabian. "The free particle on q-Minkowski space." Diss., lmu, 2004. http://nbn-resolving.de/urn:nbn:de:bvb:19-19176.

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Bachmaier, Fabian. "The free particle on q-Minkowski space." [S.l.] : [s.n.], 2003. http://edoc.ub.uni-muenchen.de/archive/00001917.

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Caruyer, Emmanuel. "IRM de diffusion du Q-space : Acquisition et pré-traitements." Phd thesis, Université de Nice Sophia-Antipolis, 2012. http://tel.archives-ouvertes.fr/tel-00750144.

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Le but général de cette thèse est de proposer de nouvelles méthodes d'acquisition et de traitement du signal en imagerie par résonance magnétique (IRM) de diffusion, dans le but d'ouvrir de nouvelles perspectives dans la reconstruction de la structure de la matière blanche \emph{in vivo}. L'IRM de diffusion est une technique d'imagerie non invasive qui mesure localement, en chaque voxel, la diffusion des molécules d'eau. Le déplacement de ces dernières étant contraint par la présence de tissus, le fait de pouvoir caractériser la diffusion des molécules d'eau apporte des informations sur la nature, l'orientation, la microstructure des tissus biologiques sous-jacents. La forte anisotropie observée dans la matière blanche fait de l'IRM de diffusion un outil privilégié pour l'étude de la connectivité cérébrale. Une des premières techniques d'acquisition et de reconstruction, appelée IRM du tenseur de diffusion, est maintenant utilisée de manière routinière en clinique, pour le diagnostique de certaines maladies neurologiques, ou encore en planification préopératoire. L'IRM du tenseur de diffusion repose sur un modèle de diffusion gaussien cependant, qui est limité quand il s'agit de décrire des configurations de tissus complexes à l'intérieur d'un voxel, par exemple quand plusieurs faisceaux de fibres se croisent. Dès lors, on a cherché ces dernières années à développer des techniques qui ne reposent pas sur un modèle a priori, afin de décrire de manière plus précise le déplacement des molécules d'eau, et dépasser les limitations du modèle tensoriel. La plupart de ces techniques, dites à haute résolution angulaire, sollicitent un temps d'acquisition généralement long, et mettent en jeu des problèmes de reconstruction non triviaux. Dans la première partie de cette thèse, nous décrivons la structure microscopique des tissus de la matière blanche du cerveau, et présentons la physique de formation des images en IRM de diffusion. Nous faisons un état de l'art des méthodes de reconstruction, et des techniques d'acquisition proposées à ce jour. En ce qui concerne les méthodes de reconstruction, nous faisons la distinction suivant qu'elles soient basées sur un modèle ou non. La première contribution de cette thèse est liée à la reconstruction paramétrique du signal de diffusion dans une base de fonctions continues. Cette contribution fait suite à une méthode proposée récemment, appelée transformée de Fourier sphérique, et y apporte une modification pour une reconstruction continue. Nous réduisons de façon significative la dimension de la base, tout en décrivant aussi bien le signal de diffusion. Nous donnons également l'expression de l'opérateur de régularisation de Laplace en fonction des coefficients dans cette base, afin de limiter l'impact du bruit sur la reconstruction. La seconde contribution est également liée à la reconstruction du signal de diffusion, et à la fonction de distribution d'orientation, dans un contexte d'application clinique. Nous proposons une méthode de reconstruction en temps réel basée sur le filtre de Kalman pour la probabilité marginale de diffusion angulaire. Nous développons un algorithme pour détecter les mouvements du patient, de façon précise et avec une grande sensibilité, et ce sans surcoût, comparé aux systèmes utilisant une camera et des algorithmes de vision robotique. Les deux dernières contributions présentées dans cette thèse sont liées aux techniques d'acquisition en IRM de diffusion, en particulier pour l'élaboration de schémas d'acquisition sur une ou plusieurs sphères dans l'espace de Fourier. Nous présentons d'abord une méthode géométrique pour placer des points dans l'espace de Fourier sur plusieurs sphères, en optimisant la couverture angulaire sur chacune des sphères, mais également de façon globale. Puis nous cherchons à établir un lien entre le schéma d'acquisition et la base de fonctions utilisée pour la reconstruction, et nous proposons en particulier une méthode pour élaborer un protocole d'acquisition qui permette de minimiser le nombre de conditionnement, pour la reconstruction dans la base des harmoniques sphériques, et dans la base de Fourier sphérique modifiée, proposée dans cette thèse. En conclusion de cette étude sur l'acquisition, nous pensons que l'élaboration du schéma d'échantillonnage doit être motivée à la fois pour répondre aux contraintes physiques du scanner, et par le choix de la base dans laquelle le signal sera reconstruit. Ces nouveaux schémas d'échantillonnage sont disponibles au téléchargement sur mon site internet.
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Hagen, Stephanus Hendrikus Gerhardus ten. "Continuous state space Q-learning for control of nonlinear systems." [S.l. : Amsterdam : s.n.] ; Universiteit van Amsterdam [Host], 2001. http://dare.uva.nl/document/58530.

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Nagao, Kentaro. "K-theory of quiver varieties, q-Fock space and nonsymmetric Macdonald polynomials." 京都大学 (Kyoto University), 2009. http://hdl.handle.net/2433/124482.

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Larkin, Timothy J., Guilhem Pages, Allan M. Torres, and Philip W. Kuchel. "Rapid acquisition of NMR diffusion-diffraction q-space plots from erythrocytes with varying gradient orientation: Rapid acquisition of NMR diffusion-diffraction q-space plots fromerythrocytes with varying gradient orientation." Diffusion fundamentals 11 (2009) 67, S. 1-12, 2009. https://ul.qucosa.de/id/qucosa%3A14033.

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The rapid-acquisition of q-space data from 1H2O undergoing restricted diffusion in suspensions of red blood cells (RBCs) is made possible using a recently implemented pulse sequence, where the phase cycling of the radio-frequency pulses is reduced by using unbalanced pairs of bipolar magnetic field-gradient pulses. The q-space plots obtained with this pulse sequence show a shift in the position of the first diffraction minimum when compared to data from classical pulsed field gradient stimulated echo experiments. Diffusion simulations were used to investigate the effect of the additional delay introduced by the bipolar gradient pulses on the form of the q-space plots. RBCs of normal discocyte shape align with an external magnetic field, and the angular dependence of q-space spectra from suspensions of RBCs was examined using a linear combination of gradients applied along the y- and z-axes. The resulting q-space plots showed a gradual disappearance of the first diffraction minimum as the angle at which the gradients were applied was changed from 0° (along the z-axis) to~40°, beyond which the q-space plots showed no diffraction features. These experimental results were also evident in Monte-Carlo random walk simulations of diffusion in RBCs with field-gradients applied at varying angles with respect to cells aligned with B0.
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Bigucci, Alessandro. "Near-Optimum Coding for q-ary Symmetric Channel with Application to Space Communications." Master's thesis, Alma Mater Studiorum - Università di Bologna, 2013. http://amslaurea.unibo.it/5292/.

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Questa Tesi aspira a mostrare un codice a livello di pacchetto, che abbia performance molto vicine a quello ottimo, per progetti di comunicazioni Satellitari. L’altro scopo di questa Tesi è quello di capire se rimane ancora molto più difficile maneggiare direttamente gli errori piuttosto che le erasures. Le applicazioni per comunicazioni satellitari ora come ora usano tutte packet erasure coding per codificare e decodificare l’informazione. La struttura dell’erasure decoding è molto semplice, perché abbiamo solamente bisogno di un Cyclic Redundancy Check (CRC) per realizzarla. Il problema nasce quando abbiamo pacchetti di dimensioni medie o piccole (per esempio più piccole di 100 bits) perché in queste situazioni il costo del CRC risulta essere troppo dispendioso. La soluzione la possiamo trovare utilizzando il Vector Symbol Decoding (VSD) per raggiungere le stesse performance degli erasure codes, ma senza la necessità di usare il CRC. Per prima cosa viene fatta una breve introduzione su come è nata e su come si è evoluta la codifica a livello di pacchetto. In seguito è stato introdotto il canale q-ary Symmetric Channel (qSC), con sia la derivazione della sua capacità che quella del suo Random Coding Bound (RCB). VSD è stato poi proposto con la speranza di superare in prestazioni il Verification Based Decoding (VBD) su il canale qSC. Infine, le effettive performance del VSD sono state stimate via simulazioni numeriche. I possibili miglioramenti delle performance, per quanto riguarda il VBD sono state discusse, come anche le possibili applicazioni future. Inoltre abbiamo anche risposto alla domande se è ancora così tanto più difficile maneggiare gli errori piuttosto che le erasure.
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Larkin, Timothy J., Guilhem Pages, Allan M. Torres, and Philip W. Kuchel. "Rapid acquisition of NMR diffusion-diffraction q-space plots from erythrocytes with varying gradient orientation." Universitätsbibliothek Leipzig, 2015. http://nbn-resolving.de/urn:nbn:de:bsz:15-qucosa-190535.

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The rapid-acquisition of q-space data from 1H2O undergoing restricted diffusion in suspensions of red blood cells (RBCs) is made possible using a recently implemented pulse sequence, where the phase cycling of the radio-frequency pulses is reduced by using unbalanced pairs of bipolar magnetic field-gradient pulses. The q-space plots obtained with this pulse sequence show a shift in the position of the first diffraction minimum when compared to data from classical pulsed field gradient stimulated echo experiments. Diffusion simulations were used to investigate the effect of the additional delay introduced by the bipolar gradient pulses on the form of the q-space plots. RBCs of normal discocyte shape align with an external magnetic field, and the angular dependence of q-space spectra from suspensions of RBCs was examined using a linear combination of gradients applied along the y- and z-axes. The resulting q-space plots showed a gradual disappearance of the first diffraction minimum as the angle at which the gradients were applied was changed from 0° (along the z-axis) to~40°, beyond which the q-space plots showed no diffraction features. These experimental results were also evident in Monte-Carlo random walk simulations of diffusion in RBCs with field-gradients applied at varying angles with respect to cells aligned with B0.
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Upadhyay, Indrima. "ANALYSIS OF Q- LEARNING BASED GAME PLAYING AGENTS FOR ABSTRACT BOARD GAMES WITH INCREASING STATE-SPACE COMPLEXITY." Miami University / OhioLINK, 2021. http://rave.ohiolink.edu/etdc/view?acc_num=miami1627681408588176.

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Zhou, Renjie. "Developments of Narrow-Linewidth Q-switched Fiber Laser, 1480 nm Raman Fiber Laser, and Free Space Fiber Amplifier." Thesis, The University of Arizona, 2011. http://hdl.handle.net/10150/202931.

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In the first chapter, a Q-switched fiber laser that is capable of generating transform-limited pulses based on single-frequency fiber laser seeded ring cavity is demonstrated. The output pulse width can be tuned from hundreds of nanoseconds to several microseconds. This Q-switched ring cavity fiber laser can operate over the whole C-band. In addition, a theoretical model is developed to numerically study the pulse characteristics, and the numerical results are in good agreements with the experimental results. In the next chapter, a Raman fiber laser is developed for generating signal at 1480 nm. Initial experimental results has demonstrated generating of Raman laser at 1175 nm, 1240 nm, 1315 nm, and 1395 nm wavelength. Finally, a free space fiber amplifier is studied both theoretically and experimentally. The experimental work has demonstrated signal coupling efficiency up to 90% in the NP highly Er/Yb co-doped phosphate fiber.
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Books on the topic "Q-space"

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Inc, DK Publishing, ed. Amazing space Q & A. New York: DK Pub., 2011.

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Lancie, John De. I, Q: Star Trek: The Next Generation. New York: Pocket Books, 1999.

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Derivation of q-analogs for the radial Schrödinger equation in N space-dimensions. Commack, NY: Nova Science Publishers, 1997.

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Outdoor living: The inspirational new step-by-step guide to today's outdoor living space from B & Q. Eastleigh: B & Q, 2005.

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Haglund, James. The q, t-Catalan numbers and the space of diagonal harmonics: With an appendix on the combinatorics of Macdonald polynomials. Providence, R.I: American Mathematical Society, 2008.

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The q, t-Catalan numbers and the space of diagonal harmonics: With an appendix on the combinatorics of Macdonald polynomials. Providence, R.I: American Mathematical Society, 2008.

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Q-Squared: Star Trek: The Next Generation. New York: Pocket Books, 1994.

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Finite-dimensional decompositions of Banach spaces with (p, q)-estimates. Warszawa: Państwowe Wydawnictwo Naukowe, 1987.

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1980-, Blazquez-Sanz David, Morales Ruiz, Juan J. (Juan José), 1953-, and Lombardero Jesus Rodriguez 1961-, eds. Symmetries and related topics in differential and difference equations: Jairo Charris Seminar 2009, Escuela de Matematicas, Universidad Sergio Arboleda, Bogotá, Colombia. Providence, R.I: American Mathematical Society, 2011.

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Awesome Super Nintendo Secrets 2. Lahaina, USA: Sandwich Islands Publishing, 1993.

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Book chapters on the topic "Q-space"

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Chen, Geng, Bin Dong, Yong Zhang, Dinggang Shen, and Pew-Thian Yap. "q-Space Upsampling Using x-q Space Regularization." In Medical Image Computing and Computer Assisted Intervention − MICCAI 2017, 620–28. Cham: Springer International Publishing, 2017. http://dx.doi.org/10.1007/978-3-319-66182-7_71.

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Ye, Chuyang, Yu Qin, Chenghao Liu, Yuxing Li, Xiangzhu Zeng, and Zhiwen Liu. "Super-Resolved q-Space Deep Learning." In Lecture Notes in Computer Science, 582–89. Cham: Springer International Publishing, 2019. http://dx.doi.org/10.1007/978-3-030-32248-9_65.

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Torres, Allan M., Giuseppe Pileio, and William S. Price. "Chapter 16. Q-space Singlet NMR." In New Developments in NMR, 302–19. Cambridge: Royal Society of Chemistry, 2020. http://dx.doi.org/10.1039/9781788019972-00302.

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Murao, Hajime, and Shinzo Kitamura. "Q-Learning with Adaptive State Space Construction." In Learning Robots, 13–28. Berlin, Heidelberg: Springer Berlin Heidelberg, 1998. http://dx.doi.org/10.1007/3-540-49240-2_2.

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Chabrowski, Jan. "The space C n−1( $$\bar Q$$ )." In The Dirichlet Problem with L2-Boundary Data for Elliptic Linear Equations, 131–41. Berlin, Heidelberg: Springer Berlin Heidelberg, 1991. http://dx.doi.org/10.1007/bfb0095760.

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Hosseinbor, A. Pasha, Moo K. Chung, Yu-Chien Wu, Andrew L. Alexander, and Barbara B. Bendlin. "A 4D Hyperspherical Interpretation of q-space." In Medical Image Computing and Computer-Assisted Intervention – MICCAI 2013, 501–9. Berlin, Heidelberg: Springer Berlin Heidelberg, 2013. http://dx.doi.org/10.1007/978-3-642-40760-4_63.

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Ye, Chuyang, Yue Cui, and Xiuli Li. "q-Space Learning with Synthesized Training Data." In Computational Diffusion MRI, 123–32. Cham: Springer International Publishing, 2019. http://dx.doi.org/10.1007/978-3-030-05831-9_10.

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Vasilev, Aleksei, Vladimir Golkov, Marc Meissner, Ilona Lipp, Eleonora Sgarlata, Valentina Tomassini, Derek K. Jones, and Daniel Cremers. "q-Space Novelty Detection with Variational Autoencoders." In Computational Diffusion MRI, 113–24. Cham: Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-52893-5_10.

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Chaichian, M., J. A. De Azcárraga, and F. Rodenas. "q-Fock Space Representations of the q-Lorentz Algebra and Irreducible Tensors." In Symmetries in Science VI, 157–70. Boston, MA: Springer US, 1993. http://dx.doi.org/10.1007/978-1-4899-1219-0_14.

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Jevtić, Miroljub, Dragan Vukotić, and Miloš Arsenović. "$$H^{p,q,\alpha }$$ as a Sequence Space." In Taylor Coefficients and Coefficient Multipliers of Hardy and Bergman-Type Spaces, 179–94. Cham: Springer International Publishing, 2016. http://dx.doi.org/10.1007/978-3-319-45644-7_8.

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Conference papers on the topic "Q-space"

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Barsotti, Tiziana, Jean Gastaud, Julien Pontic, and Mickael Barentin. "40W Q wideband space TWT." In 2018 IEEE International Vacuum Electronics Conference (IVEC). IEEE, 2018. http://dx.doi.org/10.1109/ivec.2018.8391522.

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EGGERS, HANS C., and THOMAS A. TRAINOR. "MULTIPARTICLE CORRELATIONS IN Q-SPACE." In Proceedings of the 10th International Workshop on Multiparticle Production. WORLD SCIENTIFIC, 2003. http://dx.doi.org/10.1142/9789812704641_0037.

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Wei, Haoran, Kevin Corder, and Keith Decker. "Q-Learning Acceleration via State-Space Partitioning." In 2018 17th IEEE International Conference on Machine Learning and Applications (ICMLA). IEEE, 2018. http://dx.doi.org/10.1109/icmla.2018.00050.

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Margetts, Adam R., Keith W. Forsythe, and Daniel W. Bliss. "Direct Space-Time GF(q) LDPC Modulation." In 2006 Fortieth Asilomar Conference on Signals, Systems and Computers. IEEE, 2006. http://dx.doi.org/10.1109/acssc.2006.354958.

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Singh, Tanuj Pal, Priya Shukla, and G. C. Nandi. "Cartesian To Joint Space Mapping Using Q-Learning." In 2019 International Conference on Electrical, Electronics and Computer Engineering (UPCON). IEEE, 2019. http://dx.doi.org/10.1109/upcon47278.2019.8980104.

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Qu, Bo, Xiaofeng Liang, Chen Guo, Yanhua Shang, Jinjun Feng, and Henghui Guo. "Development of Q-band Space Traveling-Wave-Tubes." In 2019 International Vacuum Electronics Conference (IVEC). IEEE, 2019. http://dx.doi.org/10.1109/ivec.2019.8745344.

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Landman, B. A., J. A. D. Farrell, S. A. Smith, P. A. Calabresi, P. C. M. van Zijl, and J. L. Prince. "Robust maximum likelihood estimation in Q-space MRI." In 2008 5th IEEE International Symposium on Biomedical Imaging (ISBI 2008). IEEE, 2008. http://dx.doi.org/10.1109/isbi.2008.4541134.

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Lampton, Amanda, and John Valasek. "Multiresolution state-space discretization method for Q-Learning." In 2009 American Control Conference. IEEE, 2009. http://dx.doi.org/10.1109/acc.2009.5160474.

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Dionne, Jennifer A., Mark Lawrence, David R. Barton, Elissa Klopfer, and Jefferson Dixon. "High Q Metasurfaces for Nonlinear Free-space Optics." In Novel Optical Materials and Applications. Washington, D.C.: OSA, 2019. http://dx.doi.org/10.1364/noma.2019.not3b.1.

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Gustafsson, Mats. "State-space models for stored energy and Q-factors." In 2016 URSI International Symposium on Electromagnetic Theory (EMTS). IEEE, 2016. http://dx.doi.org/10.1109/ursi-emts.2016.7571359.

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Reports on the topic "Q-space"

1

Schraml, Stefan L. Non-Abelian gauge theory on q-Quantum spaces. Office of Scientific and Technical Information (OSTI), August 2002. http://dx.doi.org/10.2172/803865.

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