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  1. 861

    The crystal structure of diaqua-methanol-κ1 O- (3-thiophenecarboxylato-κO)-(2,2′-dipyridyl-κ2 N,N′)manganese(II) 3-thiophenecarboxylate, C21H22N2O7S2Mn by Shi Zheng, Zhang Zhongyu, Han Bing, Li Yunyun

    Published 2023-08-01
    “…C21H22N2O7S2Mn, monoclinic, P21/c (no. 14), a = 14.544(6) Å, b = 9.636(4) Å, c = 17.087(7) Å, β = 96.664(6)° $96.664(6){}^{\circ}$ , V = 2378.5(17) Å3, Z = 4, Rgt ${R}_{\mathit{g}\mathit{t}}$ (F) = 0.0349, wRref $w{R}_{\mathit{r}\mathit{e}\mathit{f}}$ (F 2) = 0.1036, T = 273.15 K.…”
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  2. 862
  3. 863

    Hydrothermal synthesis and crystal structure of catena-poly[(1,10-phenanthroline-κ 2 N,N′)-bis(μ 2-nitroisophthalato-κ 3 O,O′:O″)nickel(II)], C20H13NiN3O7 by Wen-Jie Bi, Dong Xie, Xing-ming Hu, Hu Chen, He-dong Bian

    Published 2025-02-01
    “…C20H13NiN3O7; triclinic, P1̄ (no. 2), a = 8.329(7) Å, b = 8.726(8) Å, c = 13.300(12) Å, α = 85.948(14)°, β = 75.509(14)°, γ = 72.258(13)°, V = 891.3(13) Å3, Z = 2, R gt(F) = 0.0373, wR ref(F 2) = 0.1007, T = 296(2) K.…”
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  4. 864

    Crystal structure of catena-poly[diaqua-bis(μ2-1,3-di(1H-imidazol-1-yl)propane-κ2 N:N′)cobalt(II)] dinitrate, C18H28N10O8Co by Liu Jie, Jiang Peng, Yang Xiao-Ming, Lu Jiu-Fu

    Published 2021-09-01
    “…C18H28N10O8Co, monoclinic, P21/c (no. 14), a = 9.2248(5) Å, b = 13.3140(8) Å, c = 10.6132(6) Å, β = 109.348(7)°, V = 1229.89(13) Å3, Z = 2, R gt(F) = 0.0336, wR ref(F 2) = 0.1078, T = 293(2) K.…”
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  5. 865
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  9. 869

    Erratic Male Meiosis Resulting in 2n Pollen Grain Formation in a 4x Cytotype (2n=28) of Ranunculus laetus Wall. ex Royle by Puneet Kumar, Vijay Kumar Singhal

    Published 2012-01-01
    “…On the basis of size, the two types of pollen grains were categorized as n (normal reduced) and 2n (unreduced, 1.5-times larger than the n pollen grains). …”
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  10. 870

    The crystal structure of N-(6-chloro-2-methyl-2H-indazol-5-yl)acetamide, C10H10ClN3O by Du Yi-Jing, Sun Hong-Shun, Wang Jian-Qiang, Guo Cheng

    Published 2023-08-01
    “…C10H10ClN3O, monoclinic, P21/c (no. 14), a = 4.7273(7) Å, b = 10.2148(16) Å, c = 21.283(3) Å, β = 91.458(4)°, V = 1027.4(3) Å3, Z = 4, Rgt ${R}_{gt}$ (F) = 0.0623, wRref $w{R}_{ref}$ (F 2) = 0.1287, T = 193 K.…”
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  11. 871

    Method for Rapid Labeling of Waste Sludge from a Food Factory with 15N-Glycine and Evaluation of N Use Using Komatsuna (Brassica rapa Var. perviridis) by Mizuho Miura-Ido, Yuzuri Iwamoto, Hiroi Kouya, Yoshihiko Takahashi, Amjad Hassan, Norikuni Ohtake, Hidetaka Hori, Takuji Ohyama

    Published 2021-01-01
    “…Even in 100 mg SF-PMM, excellent growth of the roots was observed. About 56% of the N in the plant was shown to come from 15N-SF-PMM, and about 6% of the total15N in the 15N-SF-PMM was also shown to be incorporated into the plant.…”
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  12. 872
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  15. 875

    Synthesis of 3-Phenyl-4[4-(m-nitrophenyl)-N-2-(2’-arylureido / arylthioureido-4’-N-morpholino-s-triazin)-benzo-[6,7]-coumarins and their Applicatiions by J. P. Raval, K. R. Desai

    Published 2004-01-01
    “…Several 3 – phenyl – 4 [4-(m – nitrophenyl) – N – 2 - (2’-arylureido /arylthioureido - 4’- N -morpholino-s-triazin)-benzo-(6,7)-coumarins were prepared using 2-(m–nitrophenyl)-3-hydroxy naphthalene, cyanuric chloride, morpholine and various aryl – ureas / aryl – thioureas derivatives to give desired compound. …”
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  16. 876

    Crystal structure of catena-poly[tetrakis(butyl)-μ2-2-((oxido(phenyl)methylene)hydrazineylidene)propanoato-κ4 O:O,O′,N-μ2-2-((oxido(phenyl)methylene)hydrazineylidene)propanoato-κ4 O,N,O′:N′-ditin(IV)], C34H50N6O6Sn2 by Gao Zhongjun, Zhang Haifeng

    Published 2023-08-01
    “…C34H50N6O6Sn2, triclinic, P 1‾ $\overline{1}$ , a = 12.110(2) Å, b = 12.406(2) Å, c = 13.744(3) Å, α = 79.547(2)° $79.547(2){}^{\circ}$ , β = 82.072(2)° $82.072(2){}^{\circ}$ , γ = 87.257(2)° $87.257(2){}^{\circ}$ , V = 2010.7(7) Å3, Z = 2, R gt(F) = 0.0471, wR ref(F 2) = 0.1392, T = 298 K.…”
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  17. 877
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  20. 880

    Theoretical Modeling of Intensity Noise in InGaN Semiconductor Lasers by Moustafa Ahmed

    Published 2014-01-01
    “…This paper introduces modeling and simulation of the noise properties of the blue-violet InGaN laser diodes. The noise is described in terms of the spectral properties of the relative intensity noise (RIN). …”
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