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  1. 2181

    Analysis of temperature variation characteristics in relative recording rooms of geomagnetic reference stations by Shaopeng He, Xiujuan Hu, Guoping Chang, Pengkun Guo

    Published 2024-11-01
    “…Conversely, fully above-ground structures have poorer insulation, although a thicker insulation layer can still meet regulatory requirements. …”
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  2. 2182
  3. 2183

    Geographic Variation in Signal Preferences in the Tropical Katydid <i>Neoconocephalus triops</i> by Oliver M. Beckers, Johannes Schul

    Published 2024-12-01
    “…Importantly, the reduced selectivity for call structure or pulse rate allows calls to display the necessary variation for the communication system to evolve.…”
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  4. 2184

    Factors contributing to organelle genomes size variation and the intracellular DNA transfer in Polygonaceae by Yi Xiong, Xiong Lei, Yanli Xiong, Yingjie Liu, Zhixiao Dong, Junming Zhao, Qingqing Yu, Xiao Ma

    Published 2024-10-01
    “…However, a few genes, including the chloroplast gene psaJ and the mitochondrial genes ccmFc, atp8 and nad4, showed positive selection in certain Polygonaceae plants, as indicated by a Ka/Ks ratio greater than one. Structural variation analysis revealed a wealth of differences between the mitochondrial genomes of five Polygonaceae species, with a particularly notable large-scale inversion observed between Reynoutria japonica and Fallopia aubertii. …”
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  5. 2185

    Variations of Absolute Source Positions Determined from Quad-band VLBI Observations by Ming Hui Xu, Patrick Charlot

    Published 2025-01-01
    “…For 6% of the sources, the offsets are larger than 0.8 mas. The source structure may be divided into two parts: the invisible structure (within the beam size) and the visible structure (on larger scales). …”
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  6. 2186

    Fine‐Scale Geographic Variation of Cladocopium in Acropora hyacinthus Across the Palauan Archipelago by Katrina C. Armstrong, Marilla Lippert, Erik Hanson, Victor Nestor, Brendan Cornwell, Nia S. Walker, Yimnang Golbuu, Stephen R. Palumbi

    Published 2024-12-01
    “…Here, we mapped short reads from 271 holobiont genome libraries of individual Acropora hyacinthus colonies to protein coding genes from the chloroplast genome to identify patterns of symbiont population genetic structure. Utilizing this low‐pass method, we assayed over 13,000 bases from every individual, enabling us to discern genetic variation at a finer geographic scale than previously reported at the population level. …”
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  9. 2189

    Parameters of Cross-linguistic Variation in Expectation-based Minimalist Grammars (e-MGs) by Cristiano Chesi

    Published 2023-08-01
    “…The crucial simplification consists of driving structure building only using lexically encoded categorial top-down expectations. …”
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  10. 2190
  11. 2191

    Arctic plant-fungus interaction networks show major rewiring with environmental variation by Bastien Parisy, Niels M. Schmidt, Alyssa R. Cirtwill, Edith Villa-Galaviz, Mikko Tiusanen, Cornelya F. C. Klütsch, Paul E. Aspholm, Katrine Raundrup, Eero J. Vesterinen, Helena Wirta, Tomas Roslin

    Published 2024-11-01
    “…Abstract Global environmental change may lead to changes in community structure and in species interactions, ultimately changing ecosystem functioning. …”
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  12. 2192

    Calculating slope gradient variations in the submarine landforms by R and Python statistical libraries by Polina Lemenkova

    Published 2019-12-01
    “…Multiple factors affect submarine geomorphology causing variations in the gradient slope: geological settings (rock composition, structure, permeability, erodibility of the materials), submarine erosion, gravity flows of water streams, tectonics, sediments from the volcanic arcs, transported by transverse submarine canyons. …”
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  13. 2193

    Compressing Neural Networks Using Tensor Networks with Exponentially Fewer Variational Parameters by Yong Qing, Ke Li, Peng-Fei Zhou, Shi-Ju Ran

    Published 2025-01-01
    “…Our study suggests that the deep TN is an exceptionally efficient mathematical structure for representing the variational parameters of NNs, one that exhibits better compressibility than the commonly used matrices and multiway arrays.…”
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  14. 2194
  15. 2195

    Relationship Between Genetic and Phenotypic Variations in Natural Populations of Perennial and Biennial Sagebrush by Khurelpurev Oyundelger, Lisa Großmann, Veit Herklotz, Dörte Harpke, Oyuntsetseg Batlai, Karsten Wesche, Christiane M. Ritz

    Published 2024-10-01
    “…Population genetic structure in the biennial A. scoparia was weak, while the perennial A. frigida showed some spatial genetic structure, which was impacted by geographical factors, soil nutrients, and precipitation amount. …”
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  17. 2197

    Zymoseptoria tritici Shows Local Differences in Within-Field Diversity and Effector Variation by Andrea Tobian Herreno, Pu Huang, Isabella Siepe, Remco Stam

    Published 2025-01-01
    “…Inspection of population structure and diversity features, such as minor allele frequency distribution and clonality, show no within-field structure, the most abundant single-nucleotide polymorphisms are present in low frequency, and European fields have higher clonality. …”
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  18. 2198
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    Genetic Diversity and Phenotypic Variation of Indigenous Wild Cherry Species in Kazakhstan and Uzbekistan by Ulzhan Manapkanova, Nazgul Rymkhanova, Stefanie Reim, Eric Fritzsche, Monika Höfer, Natalya Beshko, Yeskendir Satekov, Svetlana V. Kushnarenko

    Published 2025-05-01
    “…This study investigates the phenotypic characteristics, genetic diversity, and population structure of four wild cherry species collected from various regions of Kazakhstan and Uzbekistan: <i>Prunus fruticosa</i> Pall., <i>Ptunus erythrocarpa</i> (Nevski) Gilli, <i>Prunus griffithii</i> var. …”
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  20. 2200

    Variational Methods for Almost Periodic Solutions of a Class of Neutral Delay Equations by M. Ayachi, J. Blot

    Published 2008-01-01
    “…We obtain results on the structure of the set of the a.p. solutions, results of existence of a.p. solutions, results of existence of a.p. solutions, and also a density result for the forced equations.…”
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