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1

Kalishchuk, Diana. "Means of Implementing Negative Representation of "Others" Strategy as Markers of G. Bush Jr. and B. Obama's Conceptual Styles." East European Journal of Psycholinguistics (2017) 4, no. 1 (2017): 76–85. https://doi.org/10.5281/zenodo.827200.

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<strong>Abstract</strong><strong>. </strong>the article deals with the speech manipulation as a means of expression of persuasiveness in discourse. Manipulation is treated as a peculiar communicative-speech strategy to influence the addressee in the political discourse, which is implemented through a set of tactics. The selection of tactics is greatly affected by the conceptual style of the author of political discourse. The article deals with the analysis of the tactics, through which the strategy of negative presentation of “others” is realized, namely, the tactics of “Super-Generality” and
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Zhu, Xuan, Xianxian Wang, Jun Wang, Peng Jin, Li Liu, and Dongfeng Mei. "Image Super-Resolution Based on Sparse Representation via Direction and Edge Dictionaries." Mathematical Problems in Engineering 2017 (2017): 1–11. http://dx.doi.org/10.1155/2017/3259357.

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Sparse representation has recently attracted enormous interests in the field of image super-resolution. The sparsity-based methods usually train a pair of global dictionaries. However, only a pair of global dictionaries cannot best sparsely represent different kinds of image patches, as it neglects two most important image features: edge and direction. In this paper, we propose to train two novel pairs of Direction and Edge dictionaries for super-resolution. For single-image super-resolution, the training image patches are, respectively, divided into two clusters by two new templates represent
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SIVASUBRAMANIAN, S., A. WIDOM, and Y. N. SRIVASTAVA. "LANDAU GHOSTS AND ANTI-GHOSTS IN CONDENSED MATTER AND HIGH DENSITY HADRONIC MATTER." Modern Physics Letters B 16, no. 30 (2002): 1201–9. http://dx.doi.org/10.1142/s0217984902004834.

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It is observed that the "ghost" (originally discovered by Landau in quantum electro-dynamics) and its counterparts in other theories are indeed ubiquitous as they occur in a one-loop approximation to any conventional (unbroken) gauge theory. The mechanism is first exposed in its generality via the Dyson equation and a simple but explicit example in condensed matter is provided through the static Clausius–Mossotti equation and its dynamic counterpart, the Lorenz–Lorentz equation. The physical phase transition phenomenon associated with it is found to be super-radiance. We verify quantitatively
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4

Ding, Jian Xu, Cheng Wang, and Yong Bi. "Impulsive Control and Practical Generalized Synchronization of a Class of Uncertain Chaotic System with a Given Manifold." Applied Mechanics and Materials 782 (August 2015): 296–301. http://dx.doi.org/10.4028/www.scientific.net/amm.782.296.

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In this paper, we study practical generalized synchronization of uncertain chaotic system with a given manifold Y = H(X). We construct a class of the bi-directionally coupled chaotic systems with impulsive control, and demonstrate theoretically that the bi-coupled systems could realize practical generalized synchronization on the basis of stability theory of impulsive differential equations. Numerical simulations with super-chaotic system are provided to further demonstrate the effectiveness and generality of our approach.
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5

Zheng, Yuanfeng, Yuchen Yan, and Hao Jiang. "Video-Restoration-Net: Deep Generative Model with Non-Local Network for Inpainting and Super-Resolution Tasks." Applied Sciences 13, no. 18 (2023): 10001. http://dx.doi.org/10.3390/app131810001.

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Although deep learning-based approaches for video processing have been extensively investigated, the lack of generality in network construction makes it challenging for practical applications, particularly in video restoration. As a result, this paper presents a universal video restoration model that can simultaneously tackle video inpainting and super-resolution tasks. The network, called Video-Restoration-Net (VRN), consists of four components: (1) an encoder to extract features from each frame, (2) a non-local network that recombines features from adjacent frames or different locations of a
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6

Chen, Pengchao, Huadong Song, Yanli Zeng, Xiaoting Guo, and Chaoqing Tang. "A Real-Time and Robust Neural Network Model for Low-Measurement-Rate Compressed-Sensing Image Reconstruction." Entropy 25, no. 12 (2023): 1648. http://dx.doi.org/10.3390/e25121648.

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Compressed sensing (CS) is a popular data compression theory for many computer vision tasks, but the high reconstruction complexity for images prevents it from being used in many real-world applications. Existing end-to-end learning methods achieved real time sensing but lack theory guarantee for robust reconstruction results. This paper proposes a neural network called RootsNet, which integrates the CS mechanism into the network to prevent error propagation. So, RootsNet knows what will happen if some modules in the network go wrong. It also implements real-time and successfully reconstructed
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7

Louis, Isabelle, Gaël Dulude, Sophie Corneau, et al. "Changes in the lymph node microenvironment induced by oncostatin M." Blood 102, no. 4 (2003): 1397–404. http://dx.doi.org/10.1182/blood-2003-01-0316.

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Abstract Oncostatin M (OM) transforms the lymph node (LN) into a “super lymphoid organ” with 2 striking features: massive thymus-independent T-cell development and major expansion of the memory T-cell pool. We report that T-cell development in the LckOM LN is regulated by a cyclooxygenase-2 (COX-2)–dependent neoangiogenesis involving high endothelial venules (HEVs). That LN HEVs are particularlyrich in OM-receptor β-chain provides aplausible explanation for the fact that extrathymic T-cell development in LckOM mice is limited to the LN. Moreover, we found that increased production of the CCL20
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8

Yang, Zeshi, Zherong Pan, Manyi Li, Kui Wu, and Xifeng Gao. "Learning Based 2D Irregular Shape Packing." ACM Transactions on Graphics 42, no. 6 (2023): 1–16. http://dx.doi.org/10.1145/3618348.

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2D irregular shape packing is a necessary step to arrange UV patches of a 3D model within a texture atlas for memory-efficient appearance rendering in computer graphics. Being a joint, combinatorial decision-making problem involving all patch positions and orientations, this problem has well-known NP-hard complexity. Prior solutions either assume a heuristic packing order or modify the upstream mesh cut and UV mapping to simplify the problem, which either limits the packing ratio or incurs robustness or generality issues. Instead, we introduce a learning-assisted 2D irregular shape packing met
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9

KING, Steven C., Liaoyuan A. HU та Amy PUGH. "Induction of substrate specificity shifts by placement of alanine insertions within the consensus amphipathic region of the Escherichia coli GABA (γ-aminobutyric acid) transporter encoded by gabP". Biochemical Journal 376, № 3 (2003): 645–53. http://dx.doi.org/10.1042/bj20030595.

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The Escherichia coli GABA (γ-aminobutyric acid) permease GabP is a prototypical APC (amine/polyamine/choline) super-family transporter that has a CAR (consensus amphipathic region) containing multiple specificity determinants, ostensibly organized on two helical surfaces, one hydrophobic [SHS (sensitive hydrophobic surface)] and the other hydrophilic [SPS (sensitive polar surface)]. To gauge the functional effects of placing alanine insertions at close intervals across the entire GabP CAR, 64 insertion variants were constructed. Insertions, particularly those in the SHS and the SPS, were highl
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10

Matveyev, Alexander L., Lev A. Matveev, Grigory V. Gelikonov, and Vladimir Y. Zaitsev. "K-Space Approach in Optical Coherence Tomography: Rigorous Digital Transformation of Arbitrary-Shape Beams, Aberration Elimination and Super-Refocusing beyond Conventional Phase Correction Procedures." Sensors 24, no. 9 (2024): 2931. http://dx.doi.org/10.3390/s24092931.

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For the most popular method of scan formation in Optical Coherence Tomography (OCT) based on plane-parallel scanning of the illuminating beam, we present a compact but rigorous K-space description in which the spectral representation is used to describe both the axial and lateral structure of the illuminating/received OCT signals. Along with the majority of descriptions of OCT-image formation, the discussed approach relies on the basic principle of OCT operation, in which ballistic backscattering of the illuminating light is assumed. This single-scattering assumption is the main limitation, wh
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11

Alfarra, M. R., N. Good, K. P. Wyche, et al. "Water uptake is independent of the inferred composition of secondary aerosols derived from multiple biogenic VOCs." Atmospheric Chemistry and Physics Discussions 13, no. 4 (2013): 10701–56. http://dx.doi.org/10.5194/acpd-13-10701-2013.

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Abstract. We demonstrate that the water uptake properties derived from sub- and super-saturated measurements of chamber-generated biogenic secondary organic aerosol (SOA) particles are independent of their degree of oxidation determined using both online and offline methods. SOA particles are formed from the photooxidation of five structurally different biogenic VOCs representing a broad range of emitted species and their corresponding range of chemical reactivity: α-pinene, β-caryophyllene, limonene, myrcene and linalool. The fractional contribution of mass fragment 44 to the total organic si
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12

Alfarra, M. R., N. Good, K. P. Wyche, et al. "Water uptake is independent of the inferred composition of secondary aerosols derived from multiple biogenic VOCs." Atmospheric Chemistry and Physics 13, no. 23 (2013): 11769–89. http://dx.doi.org/10.5194/acp-13-11769-2013.

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Abstract. We demonstrate that the water uptake properties derived from sub- and super-saturated measurements of chamber-generated biogenic secondary organic aerosol (SOA) particles are independent of their degree of oxidation, determined using both online and offline methods. SOA particles are formed from the photooxidation of five structurally different biogenic VOCs, representing a broad range of emitted species and their corresponding range of chemical reactivity: α-pinene, β-caryophyllene, limonene, myrcene and linalool. The fractional contribution of mass fragment 44 to the total organic
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13

Oláh, János, and János Jr. Oláh. "Fine phenomics applied to the Nectopsyche genus (Trichoptera) Species delineation by speciation traits." Opuscula Zoologica (Budapest) 48, no. 2 (2017): 117–84. https://doi.org/10.18348/opzool.2017.2.117.

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Nectopsyche genus is common in standing or slowly flowing aquatic ecosystems in the New World. Their taxonomy was unduly based too long on forewing pattern that is easily lost in alcohol. In this created taxonomic chaos management projects are unable to determine these beautiful and common animals. We have elaborated a new taxonomy with easy procedure to delineate closely related incipient sibling species without forewing pattern. Our taxonomy enables us to determine specimens collected and stored in alcohol. We have applied the fine phenomics of adaptive speciation traits of the sigmoid profi
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14

Crumeyrolle, S., P. Schlag, and H. M. Ten Brink. "Dense Fog in the Netherlands: Composition of the Nuclei that Contribute Most to the Droplet Number Concentration." Journal of Atmospheric Science Research 7, no. 3 (2024): 39–43. http://dx.doi.org/10.30564/jasr.v7i3.6312.

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Dense fogs, with a visibility of less than 200 m, form a traffic hazard. Usually, models describing their formation use observations at the Cabauw super-site in the Netherlands for evaluation. A key parameter is the number of fog droplets and thus the number of aerosol particles on which the fog droplets form, the so-called fog nuclei (FN). No observational data are available for this key microphysical feature. An assumption is that this number scales with the concentration of the hygroscopic aerosol component sulfate. However, in the Netherlands nitrate and organics are the more important com
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15

Focarelli, Carlo. "Promotional Jus Cogens: A Critical Appraisal of Jus Cogens' Legal Effects." Nordic Journal of International Law 77, no. 4 (2008): 429–59. http://dx.doi.org/10.1163/157181008x374906.

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AbstractTraditionally the problem of jus cogens has been conceptualised as a problem of identification of peremptory norms, taking as a starting point Articles 53 and 64 of the 1969 Vienna Convention on the Law of Treaties. These provisions in fact, while defining jus cogens and contemplating invalidity and termination as special effects affecting incompatible treaties, fail to enumerate what norms are to be considered peremptory. In recent times, however, jus cogens has been invoked and applied – as a sort of “super-law” taking precedence over all other international norms – in legal contexts
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16

Hata, Shinichi, Takahiro Yoshizumi, Satoshi Hoshino, Mio Gotsubo, Yukihide Shiraishi, and Naoki Toshima. "Improved Thermoelectric Behavior of Super-Growth Carbon Nanotube Using Tetrathiafulvalene-Tetracyanoquinodimethane Nanoparticles." Materials Science Forum 990 (May 2020): 209–14. http://dx.doi.org/10.4028/www.scientific.net/msf.990.209.

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The addition of inorganic materials with high thermoelectric properties is a popular approach to modulate the performance of carbon nanotube (CNT), but, the representative hybridization of CNT and toxic Te or Bi is not practical considering safety. Here, we report a CNT film including charge-transfer complex nanoparticles, which has higher generality and thermoelectric properties. Interestingly, the CNT film containing 30 wt% Tetrathiafulvalene-tetracyanoquinodimethane (TTF-TCNQ) nanoparticle exhibited a higher in-plane thermoelectric power factor (44.3 μW m-1 K-2) than the pure CNT (10.1 μW m
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17

Lewis, Aaron, Dmitry Lev, Daniel Sebag, et al. "The optical near-field: super-resolution imaging with structural and phase correlation." Nanophotonics 3, no. 1-2 (2014): 3–18. http://dx.doi.org/10.1515/nanoph-2014-0007.

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AbstractAn overview of near-field optics is presented with a focus on the fundamental advances that have been made in the field since its inception 30 years ago. A focus is placed on the advancements that have been achieved in instrumentation. These advances have led to a greater generality of use with ultra-low mechanical and optical noise and the ultimate in force sensitivity with near-field optical probes. An emphasis is placed on the importance of fully integrating near-field optics with other imaging and spectroscopic modalities including Raman spectroscopy and electron/ion beam imaging.
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18

Muth, Robert. "Super RSK Correspondence with Symmetry." Electronic Journal of Combinatorics 26, no. 2 (2019). http://dx.doi.org/10.37236/8150.

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Super RSK correspondence is a bijective correspondence between superbiwords and pairs of semistandard supertableaux. Such a bijection was given by Bonetti, Senato and Venezia, via an insertion algorithm closely related to Schensted insertion. Notably, the symmetry property satisfied by the classical RSK bijection holds only in special cases under this bijection. We present a new super RSK bijection, based on the mixed insertion process defined by Haiman, where the symmetry property holds in complete generality.
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19

Gong, Li, Yanxin Dou, Shulang Lin, Thomas Osipowicz, and Zhiwei Huang. "Fourier Ptychographic Coherent Anti‐Stokes Raman Scattering Microscopy with Point‐Scanning for Super‐Resolution Imaging." Small Methods, October 4, 2024. http://dx.doi.org/10.1002/smtd.202400765.

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AbstractFourier ptychography (FP) is a high resolution wide‐field imaging method based on the extended aperture in the Fourier space, which is synthesized from raw images with varying illumination angles. If FP is extended to coherent nonlinear optical imaging, the resolution could be further improved due to the increase of the cutoff frequency of the synthesized coherent optical transfer function (C‐OTF) with respect to the order of nonlinear optical processes. However, there is a fundamental conflict between wide‐field FP and nonlinear optical imaging, whereby the nonlinear optical imaging t
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20

Ahmad, Asrar, Kumari Indu, Shakir Ali Siddiqui, Lokesh Gupta, Kshatresh Dutta Dubey, and Ajoy Kapat. "Efficient Access of Heterocycles Utilizing Inherent Carbodicationic Reactivity of Ynone via Lewis Acid Catalysed C‐C Triple bond Cleavage." Chemistry – A European Journal, April 26, 2025. https://doi.org/10.1002/chem.202501082.

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Divalent carbodicationic synthon has attracted significant attention due to its unique reactivity and bonding. The application of this synthon in synthetic settings is still fancy owing to its super‐electrophilicity. Generation of this reactive intermediate in a catalytic fashion is challenging. For the first time, the reactivity of divalent dication has been realised via Lewis acid‐catalysed heterolytic ionisation of ynone via sequential conjugate addition to ynone followed by C‐C bond cleavage to afford heteroarenes. A library of quinazolinones and 2‐substituted quinazolinones have been synt
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21

Brešar, Miha, and Aleksandar Mijatović. "Subexponential lower bounds for f-ergodic Markov processes." Probability Theory and Related Fields, August 21, 2024. http://dx.doi.org/10.1007/s00440-024-01306-z.

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AbstractWe provide a criterion for establishing lower bounds on the rate of convergence in f-variation of a continuous-time ergodic Markov process to its invariant measure. The criterion consists of novel super- and submartingale conditions for certain functionals of the Markov process. It provides a general approach for proving lower bounds on the tails of the invariant measure and the rate of convergence in f-variation of a Markov process, analogous to the widely used Lyapunov drift conditions for upper bounds. Our key technical innovation produces lower bounds on the tails of the heights an
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22

Dash, Priyabrat, and Konduri Aditya. "A scale-similarity based workflow for self-supervised reconstruction of small-scales in turbulence using deep learning." Physics of Fluids 36, no. 7 (2024). http://dx.doi.org/10.1063/5.0216747.

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Deep learning has been extensively utilized for modeling and analysis of fluid turbulence. One such application is the use of super-resolution (SR) algorithms to reconstruct small-scale structures from their large-scale counterparts for turbulent flows. To date, all SR algorithms have been supervised or require unpaired reference data at a high resolution for training. This renders the model inapplicable to practical fluid flow scenarios, in which the generation of a high-resolution ground truth by resolving all scales down to the Kolmogorov scale becomes prohibitive. Hence, it is imperative t
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23

Bruzzone, Fabio, Carlo Rosso, and Stephanos Theodossiades. "Dynamic reduction technique for nonlinear analysis of spur gear pairs." Nonlinear Dynamics, June 27, 2024. http://dx.doi.org/10.1007/s11071-024-09860-w.

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AbstractIn this study the dynamic response of a spur gear pair is analyzed using a novel nonlinear approach. The actual rolling motion and engagement of the system is simulated using a set of reduced order models obtained in a pre-processing phase using the minimal amount of master degrees of freedom without loss of accuracy or generality. The flexibility of the gear bodies is included by a refined finite element model, and no geometry simplification is introduced while also retaining all nonlinearity sources. To reduce the computational cost the time-varying mesh stiffness is also pre-compute
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24

Tacchi, Matteo, Jean Bernard Lasserre, and Didier Henrion. "Stokes, Gibbs, and Volume Computation of Semi-Algebraic Sets." Discrete & Computational Geometry, December 22, 2022. http://dx.doi.org/10.1007/s00454-022-00462-0.

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AbstractWe consider the problem of computing the Lebesgue volume of compact basic semi-algebraic sets. In full generality, it can be approximated as closely as desired by a converging hierarchy of upper bounds obtained by applying the Moment-SOS (sums of squares) methodology to a certain infinite-dimensional linear program (LP). At each step one solves a semidefinite relaxation of the LP which involves pseudo-moments up to a certain degree. Its dual computes a polynomial of same degree which approximates from above the discontinuous indicator function of the set, hence with a typical Gibbs phe
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25

Wang, Shuangxing, Lihui Wang, Ying Cao, et al. "Self‐supervised arbitrary‐scale super‐angular resolution diffusion MRI reconstruction." Medical Physics, February 20, 2025. https://doi.org/10.1002/mp.17691.

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AbstractBackgroundDiffusion magnetic resonance imaging (dMRI) is currently the unique noninvasive imaging technique to investigate the microstructure of in vivo tissues. To fully explore the complex tissue microstructure at sub‐voxel scale, diffusion weighted (DW) images along many diffusion gradient directions are usually acquired, this is undoubtedly time consuming and inhibits their clinical applications. How to estimate the tissue microstructure only from DW images acquired with few diffusion directions remains a challenge.PurposeTo address this challenge, we propose a self‐supervised arbi
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26

Carrasco, John Joseph M., and Nicolas H. Pavao. "Even-point multi-loop unitarity and its applications: exponentiation, anomalies and evanescence." Journal of High Energy Physics 2024, no. 1 (2024). http://dx.doi.org/10.1007/jhep01(2024)019.

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Abstract We identify novel structure in newly computed multi-loop amplitudes and quantum actions for even-point effective field theories, including both the nonlinear sigma model (NLSM) and double-copy gauge theories such as Born-Infeld and its supersymmetric generalizations. We exploit special properties of all even-point theories towards establishing an efficient unitarity based amplitude construction. In doing so, we find evidence that the leading IR divergence of NLSM amplitudes exponentiates when the target space is $$ \mathbbm{CP} $$ CP 1 ≅ SU(2)/U(1). We then systematically compute the
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27

Liang, Tianxin, Jun Sun, Shuyun Ju, Shenyi Su, Lirong Yang, and Jianping Wu. "Construction of T7-Like Expression System in Pseudomonas putida KT2440 to Enhance the Heterologous Expression Level." Frontiers in Chemistry 9 (July 16, 2021). http://dx.doi.org/10.3389/fchem.2021.664967.

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Pseudomonas putida KT2440 has become an attractive chassis for heterologous expression with the development of effective genetic manipulation tools. Improving the level of transcriptional regulation is particularly important for extending the potential of P. putida KT2440 in heterologous expression. Although many strategies have been applied to enhance the heterologous expression level in P. putida KT2440, it was still at a relatively low level. Herein we constructed a T7-like expression system in P. putida KT2440, mimicking the pET expression system in Escherichia coli, which consisted of T7-
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28

Robinson, Michael, and Christopher T. Capraro. "Super-resolving star clusters with sheaves." EURASIP Journal on Advances in Signal Processing 2022, no. 1 (2022). http://dx.doi.org/10.1186/s13634-022-00861-8.

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AbstractThis article presents an optimization-based approach for counting and localizing stars within a small cluster, based on photon counts in a focal plane array. The array need not be arranged in any particular way, and relatively small numbers of photons are required to ensure convergence. The stars can be located close to one another, as the location and magnitude errors were found to be low when the separation was larger than 0.2 Rayleigh radii. To ensure generality of our approach, it was constructed as a special case of a general theory built upon topological signal processing using t
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Henry, Garrett. "New Ideas In Recognition of Cancer And Neutrosophic SuperHyperGraph By SuperHyperPerfect Search As Hyper Perf On Super Perfidy." July 1, 2023. https://doi.org/10.5281/zenodo.8104836.

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299 [HG297] Henry Garrett, &ldquo;New Ideas In Recognition of Cancer And Neutrosophic SuperHyperGraph By SuperHyperPerfect Search As Hyper Perf On Super Perfidy&rdquo;, Zenodo 2023, (doi: 10.5281/zenodo.8104836). @ResearchGate: https://www.researchgate.net/publication/- @Scribd: https://www.scribd.com/document/- @ZENODO_ORG: https://zenodo.org/record/8104836 @academia: https://www.academia.edu/- &nbsp; \documentclass[10pt,letterpaper]{article} \usepackage[top=0.85in,left=2.79in,footskip=0.79in,marginparwidth=2in]{geometry} \usepackage{amsmath, amsthm, amscd, amsfonts, amssymb, graphicx, tikz,
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Henry, Garrett. "New Ideas On Super Perfidy By Hyper Perf Of SuperHyperPerfect Search In Recognition of Cancer With (Neutrosophic) SuperHyperGraph." July 1, 2023. https://doi.org/10.5281/zenodo.8104857.

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298 [HG298] Henry Garrett, &ldquo;New Ideas On Super Perfidy By Hyper Perf Of SuperHyperPerfect Search In Recognition of Cancer With (Neutrosophic) SuperHyperGraph&rdquo;, Zenodo 2023, (doi: 10.5281/zenodo.8104857). @ResearchGate: https://www.researchgate.net/publication/- @Scribd: https://www.scribd.com/document/- @ZENODO_ORG: https://zenodo.org/record/8104857 @academia: https://www.academia.edu/- &nbsp; &nbsp; \documentclass[10pt,letterpaper]{article} \usepackage[top=0.85in,left=2.79in,footskip=0.79in,marginparwidth=2in]{geometry} \usepackage{amsmath, amsthm, amscd, amsfonts, amssymb, graphi
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Henry, Garrett. "New Ideas On Super Dimity By Hyper Dimple Of Unequal Dimension Dominating In Recognition of Cancer With (Neutrosophic) SuperHyperGraph." June 27, 2023. https://doi.org/10.5281/zenodo.8088387.

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294 Henry Garrett, &ldquo;New Ideas On Super Dimity By Hyper Dimple Of Unequal Dimension Dominating In Recognition of Cancer With (Neutrosophic) SuperHyperGraph&rdquo;, Zenodo 2023, (doi: 10.5281/zenodo.8088387). @ResearchGate: https://www.researchgate.net/publication/- @Scribd: https://www.scribd.com/document/- @ZENODO_ORG: https://zenodo.org/record/8088387 @academia: https://www.academia.edu/- &nbsp; \documentclass[10pt,letterpaper]{article} \usepackage[top=0.85in,left=2.79in,footskip=0.79in,marginparwidth=2in]{geometry} \usepackage{amsmath, amsthm, amscd, amsfonts, amssymb, graphicx, tikz,
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Henry, Garrett. "New Ideas In Recognition of Cancer And Neutrosophic SuperHyperGraph By Unequal Dimension Dominating As Hyper Dimple On Super Dimity." June 28, 2023. https://doi.org/10.5281/zenodo.8088438.

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295 Henry Garrett, &ldquo;New Ideas In Recognition of Cancer And Neutrosophic SuperHyperGraph By Unequal Dimension Dominating As Hyper Dimple On Super Dimity&rdquo;, Zenodo 2023, (doi: 10.5281/zenodo.8088438). @ResearchGate: https://www.researchgate.net/publication/- @Scribd: https://www.scribd.com/document/- @ZENODO_ORG: https://zenodo.org/record/8088438 @academia: https://www.academia.edu/- &nbsp; \documentclass[10pt,letterpaper]{article} \usepackage[top=0.85in,left=2.79in,footskip=0.79in,marginparwidth=2in]{geometry} \usepackage{amsmath, amsthm, amscd, amsfonts, amssymb, graphicx, tikz, col
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Henry, Garrett. "New Ideas On Super Dimity By Hyper Dimple Of Strict Dimension Dominating In Recognition of Cancer With (Neutrosophic) SuperHyperGraph." June 27, 2023. https://doi.org/10.5281/zenodo.8084420.

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290 Henry Garrett, &ldquo;New Ideas On Super Dimity By Hyper Dimple Of Strict Dimension Dominating In Recognition of Cancer With (Neutrosophic) SuperHyperGraph&rdquo;, Zenodo 2023, (doi: 10.5281/zenodo.8084420). @ResearchGate: https://www.researchgate.net/publication/- @Scribd: https://www.scribd.com/document/- @ZENODO_ORG: https://zenodo.org/record/8084420 @academia: https://www.academia.edu/- &nbsp; \documentclass[10pt,letterpaper]{article} \usepackage[top=0.85in,left=2.79in,footskip=0.79in,marginparwidth=2in]{geometry} \usepackage{amsmath, amsthm, amscd, amsfonts, amssymb, graphicx, tikz, c
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Henry, Garrett. "New Ideas In Recognition of Cancer And Neutrosophic SuperHyperGraph By Strict Dimension Dominating As Hyper Dimple On Super Dimity." June 27, 2023. https://doi.org/10.5281/zenodo.8084436.

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291 Henry Garrett, &ldquo;New Ideas In Recognition of Cancer And Neutrosophic SuperHyperGraph By Strict Dimension Dominating As Hyper Dimple On Super Dimity&rdquo;, Zenodo 2023, (doi: 10.5281/zenodo.8084436). @ResearchGate: https://www.researchgate.net/publication/- @Scribd: https://www.scribd.com/document/- @ZENODO_ORG: https://zenodo.org/record/8084436 @academia: https://www.academia.edu/- &nbsp; \documentclass[10pt,letterpaper]{article} \usepackage[top=0.85in,left=2.79in,footskip=0.79in,marginparwidth=2in]{geometry} \usepackage{amsmath, amsthm, amscd, amsfonts, amssymb, graphicx, tikz, colo
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Henry, Garrett. "New Ideas In Recognition of Cancer And Neutrosophic SuperHyperGraph By Dimension Dominating As Hyper Dimple On Super Dimity." June 20, 2023. https://doi.org/10.5281/zenodo.8061927.

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280 Henry Garrett, &ldquo;New Ideas In Recognition of Cancer And Neutrosophic SuperHyperGraph By Dimension Dominating As Hyper Dimple On Super Dimity&rdquo;, Zenodo 2023, (doi: 10.5281/zenodo.8061927). @ResearchGate: https://www.researchgate.net/publication/- @Scribd: https://www.scribd.com/document/- @ZENODO_ORG: https://zenodo.org/record/8061927 @academia: https://www.academia.edu/- &nbsp; \documentclass[10pt,letterpaper]{article} \usepackage[top=0.85in,left=2.79in,footskip=0.79in,marginparwidth=2in]{geometry} \usepackage{amsmath, amsthm, amscd, amsfonts, amssymb, graphicx, tikz, color} \use
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Henry, Garrett. "New Ideas On Super Dimity By Hyper Dimple Of Dimension Dominating In Recognition of Cancer With (Neutrosophic) SuperHyperGraph." June 20, 2023. https://doi.org/10.5281/zenodo.8062016.

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280 Henry Garrett, &ldquo;New Ideas On Super Dimity By Hyper Dimple Of Dimension Dominating In Recognition of Cancer With (Neutrosophic) SuperHyperGraph&rdquo;, Zenodo 2023, (doi: 10.5281/zenodo.8062016). @ResearchGate: https://www.researchgate.net/publication/- @Scribd: https://www.scribd.com/document/- @ZENODO_ORG: https://zenodo.org/record/8062016 @academia: https://www.academia.edu/- &nbsp; \documentclass[10pt,letterpaper]{article} \usepackage[top=0.85in,left=2.79in,footskip=0.79in,marginparwidth=2in]{geometry} \usepackage{amsmath, amsthm, amscd, amsfonts, amssymb, graphicx, tikz, color} \
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Henry, Garrett. "New Ideas On Super Con By Hyper Conceit Of Reverse Strict Connective In Recognition of Cancer With (Neutrosophic) SuperHyperGraph." June 25, 2023. https://doi.org/10.5281/zenodo.8080068.

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290 Henry Garrett, &ldquo;New Ideas On Super Con By Hyper Conceit Of Reverse Strict Connective In Recognition of Cancer With (Neutrosophic) SuperHyperGraph&rdquo;, Zenodo 2023, (doi: 10.5281/zenodo.8080068). @ResearchGate: https://www.researchgate.net/publication/- @Scribd: https://www.scribd.com/document/- @ZENODO_ORG: https://zenodo.org/record/8080068 @academia: https://www.academia.edu/- &nbsp; \documentclass[10pt,letterpaper]{article} \usepackage[top=0.85in,left=2.79in,footskip=0.79in,marginparwidth=2in]{geometry} \usepackage{amsmath, amsthm, amscd, amsfonts, amssymb, graphicx, tikz, color
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Henry, Garrett. "New Ideas In Recognition of Cancer And Neutrosophic SuperHyperGraph By Reverse Strict Connective As Hyper Conceit On Super Con." June 25, 2023. https://doi.org/10.5281/zenodo.8080100.

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291 Henry Garrett, &ldquo;New Ideas In Recognition of Cancer And Neutrosophic SuperHyperGraph By Reverse Strict Connective As Hyper Conceit On Super Con&rdquo;, Zenodo 2023, (doi: 10.5281/zenodo.8080100). @ResearchGate: https://www.researchgate.net/publication/- @Scribd: https://www.scribd.com/document/- @ZENODO_ORG: https://zenodo.org/record/8080100 @academia: https://www.academia.edu/103861417 \documentclass[10pt,letterpaper]{article} \usepackage[top=0.85in,left=2.79in,footskip=0.79in,marginparwidth=2in]{geometry} \usepackage{amsmath, amsthm, amscd, amsfonts, amssymb, graphicx, tikz, color}
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Henry, Garrett. "New Ideas In Recognition of Cancer And Neutrosophic SuperHyperGraph By Unequal Connective Dominating As Hyper Conceit On Super Con." June 24, 2023. https://doi.org/10.5281/zenodo.8078445.

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289 Henry Garrett, &ldquo;New Ideas In Recognition of Cancer And Neutrosophic SuperHyperGraph By Unequal Connective Dominating As Hyper Conceit On Super Con&rdquo;, Zenodo 2023, (doi: 10.5281/zenodo.8078445). @ResearchGate: https://www.researchgate.net/publication/- @Scribd: https://www.scribd.com/document/- @ZENODO_ORG: https://zenodo.org/record/8078445 @academia: https://www.academia.edu/- &nbsp; \documentclass[10pt,letterpaper]{article} \usepackage[top=0.85in,left=2.79in,footskip=0.79in,marginparwidth=2in]{geometry} \usepackage{amsmath, amsthm, amscd, amsfonts, amssymb, graphicx, tikz, colo
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Henry, Garrett. "New Ideas On Super Con By Hyper Conceit Of Unequal Connective Dominating In Recognition of Cancer With (Neutrosophic) SuperHyperGraph." June 25, 2023. https://doi.org/10.5281/zenodo.8078543.

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288 Henry Garrett, &ldquo;New Ideas On Super Con By Hyper Conceit Of Unequal Connective Dominating In Recognition of Cancer With (Neutrosophic) SuperHyperGraph&rdquo;, Zenodo 2023, (doi: 10.5281/zenodo.8078543). @ResearchGate: https://www.researchgate.net/publication/- @Scribd: https://www.scribd.com/document/- @ZENODO_ORG: https://zenodo.org/record/8078543 @academia: https://www.academia.edu/- &nbsp; \documentclass[10pt,letterpaper]{article} \usepackage[top=0.85in,left=2.79in,footskip=0.79in,marginparwidth=2in]{geometry} \usepackage{amsmath, amsthm, amscd, amsfonts, amssymb, graphicx, tikz, c
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Henry, Garrett. "New Ideas On Super Con By Hyper Conceit Of Connective Dominating In Recognition of Cancer With (Neutrosophic) SuperHyperGraph." June 18, 2023. https://doi.org/10.5281/zenodo.8052925.

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276 Henry Garrett, &ldquo;New Ideas On Super Con By Hyper Conceit Of Connective Dominating In Recognition of Cancer With (Neutrosophic) SuperHyperGraph&rdquo;, Zenodo 2023, (doi: 10.5281/zenodo.8052925). @ResearchGate: https://www.researchgate.net/publication/- @Scribd: https://www.scribd.com/document/- @ZENODO_ORG: https://zenodo.org/record/8052925 @academia: https://www.academia.edu/- &nbsp; \documentclass[10pt,letterpaper]{article} \usepackage[top=0.85in,left=2.79in,footskip=0.79in,marginparwidth=2in]{geometry} \usepackage{amsmath, amsthm, amscd, amsfonts, amssymb, graphicx, tikz, color} \u
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Henry, Garrett. "New Ideas On Super mat By Hyper matte Of Matrix-Based In Cancer's Recognition With (Neutrosophic) SuperHyperGraph." May 28, 2023. https://doi.org/10.5281/zenodo.7978857.

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268 Henry Garrett, &ldquo;New Ideas On Super mat By Hyper matte Of Matrix-Based In Cancer&#39;s Recognition With (Neutrosophic) SuperHyperGraph&rdquo;, Zenodo 2023, (doi: 10.5281/zenodo.7978857). @ResearchGate: https://www.researchgate.net/publication/- @Scribd: https://www.scribd.com/document/- @ZENODO_ORG: https://zenodo.org/record/7978857 @academia: https://www.academia.edu/- &nbsp; \documentclass[10pt,letterpaper]{article} \usepackage[top=0.85in,left=2.79in,footskip=0.79in,marginparwidth=2in]{geometry} \usepackage{amsmath, amsthm, amscd, amsfonts, amssymb, graphicx, tikz, color} \usepackag
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Henry, Garrett. "New Ideas On Super Con By Hyper Conceit Of Strict Connective Dominating In Recognition of Cancer With (Neutrosophic) SuperHyperGraph." June 23, 2023. https://doi.org/10.5281/zenodo.8076399.

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286 Henry Garrett, &ldquo;New Ideas On Super Con By Hyper Conceit Of Strict Connective Dominating In Recognition of Cancer With (Neutrosophic) SuperHyperGraph&rdquo;, Zenodo 2023, (doi: 10.5281/zenodo.8076399). @ResearchGate: https://www.researchgate.net/publication/- @Scribd: https://www.scribd.com/document/- @ZENODO_ORG: https://zenodo.org/record/8076399 @academia: https://www.academia.edu/- &mdash; \documentclass[10pt,letterpaper]{article} \usepackage[top=0.85in,left=2.79in,footskip=0.79in,marginparwidth=2in]{geometry} \usepackage{amsmath, amsthm, amscd, amsfonts, amssymb, graphicx, tikz, c
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Henry, Garrett. "New Ideas In Recognition of Cancer And Neutrosophic SuperHyperGraph By Strict Connective Dominating As Hyper Conceit On Super Con." June 23, 2023. https://doi.org/10.5281/zenodo.8076416.

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287 Henry Garrett, &ldquo;New Ideas In Recognition of Cancer And Neutrosophic SuperHyperGraph By Strict Connective Dominating As Hyper Conceit On Super Con&rdquo;, Zenodo 2023, (doi: 10.5281/zenodo.8076416). @ResearchGate: https://www.researchgate.net/publication/- @Scribd: https://www.scribd.com/document/- @ZENODO_ORG: https://zenodo.org/record/8076416 @academia: https://www.academia.edu/- &nbsp; \documentclass[10pt,letterpaper]{article} \usepackage[top=0.85in,left=2.79in,footskip=0.79in,marginparwidth=2in]{geometry} \usepackage{amsmath, amsthm, amscd, amsfonts, amssymb, graphicx, tikz, color
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Henry, Garrett. "New Ideas In Recognition of Cancer And Neutrosophic SuperHyperGraph By Connective Dominating As Hyper Conceit On Super Con." June 17, 2023. https://doi.org/10.5281/zenodo.8051346.

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275 Henry Garrett, &ldquo;New Ideas In Recognition of Cancer And Neutrosophic SuperHyperGraph By Connective Dominating As Hyper Conceit On Super Con&rdquo;, Zenodo 2023, (doi: 10.5281/zenodo.8051346). @ResearchGate: https://www.researchgate.net/publication/- @Scribd: https://www.scribd.com/document/- @ZENODO_ORG: https://zenodo.org/record/8051346 @academia: https://www.academia.edu/- &nbsp; \documentclass[10pt,letterpaper]{article} \usepackage[top=0.85in,left=2.79in,footskip=0.79in,marginparwidth=2in]{geometry} \usepackage{amsmath, amsthm, amscd, amsfonts, amssymb, graphicx, tikz, color} \usep
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Henry, Garrett. "New Ideas On Super Con By Hyper Conceit Of Connective Dominating In Recognition of Cancer With (Neutrosophic) SuperHyperGraph." June 17, 2023. https://doi.org/10.5281/zenodo.8051360.

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274 Henry Garrett, &ldquo;New Ideas On Super Con By Hyper Conceit Of Connective Dominating In Recognition of Cancer With (Neutrosophic) SuperHyperGraph&rdquo;, Zenodo 2023, (doi: 10.5281/zenodo.8051360). @ResearchGate: https://www.researchgate.net/publication/- @Scribd: https://www.scribd.com/document/- @ZENODO_ORG: https://zenodo.org/record/8051360 @academia: https://www.academia.edu/- &nbsp; \documentclass[10pt,letterpaper]{article} \usepackage[top=0.85in,left=2.79in,footskip=0.79in,marginparwidth=2in]{geometry} \usepackage{amsmath, amsthm, amscd, amsfonts, amssymb, graphicx, tikz, color} \u
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Henry, Garrett. "New Ideas On Super Eddy By Hyper Dome Of Dominating-Edges In Cancer's Recognition With (Neutrosophic) SuperHyperGraph." May 17, 2023. https://doi.org/10.5281/zenodo.7943578.

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266 Henry Garrett, &ldquo;New Ideas On Super Eddy By Hyper Dome Of Dominating-Edges In Cancer&#39;s Recognition With (Neutrosophic) SuperHyperGraph&rdquo;, Zenodo 2023, (doi: 10.5281/zenodo.7943578). @ResearchGate: https://www.researchgate.net/publication/- @Scribd: https://www.scribd.com/document/- @ZENODO_ORG: https://zenodo.org/record/7943578 @academia: https://www.academia.edu/- &nbsp; \documentclass[10pt,letterpaper]{article} \usepackage[top=0.85in,left=2.79in,footskip=0.79in,marginparwidth=2in]{geometry} \usepackage{amsmath, amsthm, amscd, amsfonts, amssymb, graphicx, tikz, color} \usepa
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Henry, Garrett. "New Ideas On Super Dimity By Hyper Dimple Of Reverse Strict Dimension Dominating In Recognition of Cancer With (Neutrosophic) SuperHyperGraph." June 28, 2023. https://doi.org/10.5281/zenodo.8092766.

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296 [HG294] Henry Garrett, &ldquo;New Ideas On Super Dimity By Hyper Dimple Of Reverse Strict Dimension Dominating In Recognition of Cancer With (Neutrosophic) SuperHyperGraph&rdquo;, Zenodo 2023, (doi: 10.5281/zenodo.8092766). @ResearchGate: https://www.researchgate.net/publication/- @Scribd: https://www.scribd.com/document/- @ZENODO_ORG: https://zenodo.org/record/8092766 @academia: https://www.academia.edu/- &nbsp; \documentclass[10pt,letterpaper]{article} \usepackage[top=0.85in,left=2.79in,footskip=0.79in,marginparwidth=2in]{geometry} \usepackage{amsmath, amsthm, amscd, amsfonts, amssymb, g
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Henry, Garrett. "New Ideas In Recognition of Cancer And Neutrosophic SuperHyperGraph By Reverse Strict Dimension Dominating As Hyper Dimple On Super Dimity." June 29, 2023. https://doi.org/10.5281/zenodo.8092796.

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297 [HG297] Henry Garrett, &ldquo;New Ideas In Recognition of Cancer And Neutrosophic SuperHyperGraph By Reverse Strict Dimension Dominating As Hyper Dimple On Super Dimity&rdquo;, Zenodo 2023, (doi: 10.5281/zenodo.8092796). @ResearchGate: https://www.researchgate.net/publication/- @Scribd: https://www.scribd.com/document/- @ZENODO_ORG: https://zenodo.org/record/8092796 @academia: https://www.academia.edu/- &nbsp; \documentclass[10pt,letterpaper]{article} \usepackage[top=0.85in,left=2.79in,footskip=0.79in,marginparwidth=2in]{geometry} \usepackage{amsmath, amsthm, amscd, amsfonts, amssymb, grap
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Henry, Garrett. "New Ideas In Recognition of Cancer And Neutrosophic SuperHyperGraph By Reverse Dimension Dominating As Hyper Dimple On Super Dimity." June 22, 2023. https://doi.org/10.5281/zenodo.8072171.

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285 Henry Garrett, &ldquo;New Ideas In Recognition of Cancer And Neutrosophic SuperHyperGraph By Reverse Dimension Dominating As Hyper Dimple On Super Dimity&rdquo;, Zenodo 2023, (doi: 10.5281/zenodo.8072171). @ResearchGate: https://www.researchgate.net/publication/- @Scribd: https://www.scribd.com/document/- @ZENODO_ORG: https://zenodo.org/record/8072171 @academia: https://www.academia.edu/- \documentclass[10pt,letterpaper]{article} \usepackage[top=0.85in,left=2.79in,footskip=0.79in,marginparwidth=2in]{geometry} \usepackage{amsmath, amsthm, amscd, amsfonts, amssymb, graphicx, tikz, color} \us
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