Academic literature on the topic 'ZNE'

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Journal articles on the topic "ZNE"

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Chandiposha, Misheck, Godfrey E. Zharare, and Muntubani D. S. Nzima. "Screening of Sugarcane Varieties for Tolerance to Water Deficiency Using Containers." International Journal of Agronomy 2023 (August 23, 2023): 1–10. http://dx.doi.org/10.1155/2023/5705785.

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The negative effects of water deficiency in sugarcane production caused by climate change on the productivity of sugarcane can be mitigated by drought tolerant varieties. A 14 × 2 factorial arrangement in completely randomised design replicated three times was used to screen 14 varieties for drought tolerance at the Zimbabwe Sugar Experiment Station (ZSAES). The first factor was the sugarcane varieties viz ZN1, ZN2, ZN3, ZN4, ZN5, ZN6, ZN7, ZN8, ZN9, ZN10, CP72–1312, NCo376, N14, and CP72–2086. The second factor comprised of two levels of irrigation, namely, well-watered (100% by volume) and w
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Karmakar, Mrinmoy, Narayan Chandra Sarkar, Yashbir Singh Shivay, and Kalipada Pramanik. "Effect of Zinc Application on Growth, Yield, Zinc uptake and Zinc Use Indices of Rice." International Journal of Economic Plants 11, Aug, 3 (2024): 247–57. http://dx.doi.org/10.23910/2/2024.5423a.

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A field experiment was conducted at the agriculture farm, Palli Siksha Bhavana, Visva-Bharati, Birbhum, West Bengal, India during kharif (rainy) seasons (June–September) of 2016 and 2017 to study effect of zinc application on growth, yield and nutrient uptake of rice. The experiment was laid out in split plot design replicated thrice, consisting two main plot treatments i.e. crop establishment methods (CEMs) and seven sub-plot treatments (levels of zinc and methods of application). Two CEMs were direct seeded rice (DSR) and transplanted puddled rice (TPR) and seven levels of zinc and methods o
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R, DEVARAJAN, and KRISHNASAMY R. "EFFECT OF ZINC ENRICHED ORGANIC MANURES ON RICE YIELD." Madras Agricultural Journal 83, May (1996): 280–83. http://dx.doi.org/10.29321/maj.10.a01022.

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A pot experiment was conducted to study the influence of well decomposed organic manures, zine enriched (ZnE) organic manures, different levels of Zn on ADT-36 rice yield and organic carbon and available Zn content in post-harvest soils. Two types of soils were used for the pot experiment. The experiment was conducted adopting completely factorial randomised design. The results revealed that grain and straw yield of rice was associated with the application of ZnE organic manures I tha than the recommended level of organic manure @ 12.5 t ha-1. The enrichment of organic manures @ 1.25 mg Zn kg-
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Mesmar, Joelle, Manal M. Fardoun, Rola Abdallah, et al. "Ziziphus nummularia Attenuates the Malignant Phenotype of Human Pancreatic Cancer Cells: Role of ROS." Molecules 26, no. 14 (2021): 4295. http://dx.doi.org/10.3390/molecules26144295.

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Pancreatic cancer (PC) is the fourth leading cause of all cancer-related deaths. Despite major improvements in treating PC, low survival rate remains a major challenge, indicating the need for alternative approaches, including herbal medicine. Among medicinal plants is Ziziphus nummularia (family Rhamnaceae), which is a thorny shrub rich in bioactive molecules. Leaves of Ziziphus nummularia have been used to treat many pathological conditions, including cancer. However, their effects on human PC are still unknown. Here, we show that the treatment of human pancreatic ductal adenocarcinoma cells
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Tonu Lema, Abner, Cytske Sabuna, and Yehezkial Wila Balu. "Optimization and Kinetic Study of Ende-Natural Zeolite as Candidates of Ammonia Adsorbent on Broiler Chicken Litter." KOVALEN: Jurnal Riset Kimia 8, no. 2 (2022): 150–57. http://dx.doi.org/10.22487/kovalen.2022.v8.i2.15914.

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Zeolite Natural Ende (ZNE) is a local material from Ende, East Nusa Tenggara which can be used as an adsorbent candidate to reduce environmental pollution due to poultry farm wastes. The purpose of this study is to obtain optimal conditions and adsorption kinetics of ZNE as an adsorbent in terms of absorbing NH3, water content, and neutralizing pH on broiler litter. This study consisted of 3 stages such as sample preparation, optimization of acid concentration, particle size, contact time, adsorbate concentration, as well as determination of ZNE-methylene blue adsorption kinetics. The results
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Khadka, Chhatra B., Andreas Eichhöfer, Florian Weigend, and John F. Corrigan. "Zinc Chalcogenolate Complexes as Precursors to ZnE and Mn/ZnE (E = S, Se) Clusters." Inorganic Chemistry 51, no. 5 (2012): 2747–56. http://dx.doi.org/10.1021/ic200307g.

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Fardoun, Manal, Tuqa Al-Shehabi, Ahmed El-Yazbi, et al. "Ziziphus nummularia Inhibits Inflammation-Induced Atherogenic Phenotype of Human Aortic Smooth Muscle Cells." Oxidative Medicine and Cellular Longevity 2017 (2017): 1–10. http://dx.doi.org/10.1155/2017/4134093.

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Cardiovascular disease (CVD) continues to be the leading cause of death worldwide. Atherosclerosis is a CVD characterized by plaque formation resulting from inflammation-induced insults to endothelial cells, monocytes, and vascular smooth muscle cells (VSMCs). Despite significant advances, current treatments for atherosclerosis remain insufficient, prompting the search for alternative modalities, including herbal medicine. Ziziphus nummularia is an herb commonly used in the amelioration of symptoms associated with many health conditions such as cold, diarrhea, cancer, and diabetes. However, it
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Zheng, Ran, Lei Han, Qinhe Pan, Kirsten E. Christensen, and Tiezhen Ren. "Two novel Zn-MOFs: structures and characterization." Acta Crystallographica Section B Structural Science 68, no. 2 (2012): 158–63. http://dx.doi.org/10.1107/s0108768112007999.

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Two novel three-dimensional Zn-MOFs (zinc metal-organic frameworks), Zn5(μ3-OH)(BTC)3(Phen)4·5H2O (denoted as HUT-11) and Zn4(μ4-O)(BTC)2(Phen)2·4H2O (denoted as HUT-12), have been synthesized by metal–ligand-directed assembly under hydrothermal conditions. Here, BTC and Phen are denoted as 1,3,5-benzenetricarboxylate and phenanthroline. HUT-11 contains two kinds of secondary building units (SBUs), Zn3(μ3-OH)(COO)5 clusters and Zn2(COO)4 clusters. This material exhibits a new three-dimensional (3,4,5)-connected topology with the Schläfli symbol (4·6·8)2(4·82)(4·64·85)(42·62·82). Two perpendicu
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Khadka, Chhatra B., Andreas Eichhoefer, Florian Weigend, and John F. Corrigan. "ChemInform Abstract: Zinc Chalcogenolate Complexes as Precursors to ZnE and Mn/ZnE (E: S, Se) Clusters." ChemInform 43, no. 23 (2012): no. http://dx.doi.org/10.1002/chin.201223016.

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Khassan, А., V. I. Donenko, and O. L. Ischenko. "The use of BIM to achieve zero energy building." Physical Metallurgy and Heat Treatment of Metals, no. 1 (92) (May 11, 2021): 59–65. http://dx.doi.org/10.30838/j.pmhtm.2413.230321.59.735.

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This Article introduces the advantage of using Building Information Modeling (BIM) technology to achieve the Zero Energy (ZE). A zero-energy building (ZE), also is known as a Zero Net Energy (ZNE) building, or Net-Zero Energy Building (NZEB). Net zero building is a building which is zero net energy consumption, which means that the total amount of energy used by the building on an annual basis is equal to the amount of renewable energy created on the site. A net Zero-Energy Building (ZEB) is a residential or commercial building with greatly reduced energy needs through efficiency gains such th
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Dissertations / Theses on the topic "ZNE"

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Ngonlong, Ekende Elisabeth. "Towards a better understanding of bacterial resistance to heavy metal ions: the case of the Sil and Zne systems from Cupriavidus metallidurans CH34." Doctoral thesis, Universite Libre de Bruxelles, 2012. http://hdl.handle.net/2013/ULB-DIPOT:oai:dipot.ulb.ac.be:2013/209686.

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Cheong, H., D. Nam, Анатолій Сергійович Опанасюк, et al. "Raman investigation on ZnS, ZnSe, ZnTe thin films obtained by CSVS technique." Thesis, Sumy State University Publishing, 2012. http://essuir.sumdu.edu.ua/handle/123456789/29350.

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У цій роботі були досліджені спектри комбінаційного розсіювання в тонких напівпровідникових плівках сульфіду цинку, селеніду цинку і телуриду цинку, нанесених за допомогою методу вакуумної сублімації в квазізамкнутом об'ємі. Всі плівки показали поздовжні оптичні репліки фононної моди. Зміна температури підкладки в результаті призвела до невеликим зміщень фононних частот в ZnSe і ZnTe, але не в тонких плівок ZnS. При цитуванні документа, використовуйте посилання http://essuir.sumdu.edu.ua/handle/123456789/29350<br>В этой работе были исследованы спектры комбинационного рассеяния в тонких полупр
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Опанасюк, Анатолій Сергійович, Анатолий Сергеевич Опанасюк, Anatolii Serhiiovych Opanasiuk, et al. "Raman Investigation on ZnS, ZnSe, ZnTe Thin Films Obtained by CSVS Technique." Thesis, Sumy State University, 2012. http://essuir.sumdu.edu.ua/handle/123456789/35100.

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In this work, Raman spectra of zinc sulfide, zinc selenide, and zinc telluride thin film semiconductors deposited by the close-spaced vacuum sublimation technique were investigated. All of the films showed longitudinal optical phonon mode replicas. Varying the substrate temperature results in small shifts of the phonon frequencies in ZnSe and ZnTe, but not in ZnS thin films. When you are citing the document, use the following link http://essuir.sumdu.edu.ua/handle/123456789/35100
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Доброжан, Олександр Анатолійович, Александр Анатольевич Доброжан, Oleksandr Anatoliiovych Dobrozhan та ін. "Порівняння оптичних втрат у сонячних елементах на основі гетеропереходів n-ito(zno)/n-cds(n-zns, znse)/p-czts". Thesis, Сумський державний університет, 2016. http://essuir.sumdu.edu.ua/handle/123456789/46239.

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Опанасюк, Анатолій Сергійович, Анатолий Сергеевич Опанасюк, Anatolii Serhiiovych Opanasiuk та ін. "Моделювання фізичних процесів у напівпровідникових сонячних елементах на основі гетеропереходів n-ITO(ZnO)/n-CdS(n-ZnS, ZnSe)/p-CZTS". Thesis, Сумський державний університет, 2018. http://essuir.sumdu.edu.ua/handle/123456789/67813.

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Перспективним способом використання сонячної енергії є її перетворення в електричну, використовуючи сонячні елементи (СЕ), зокрема тонкоплівкові прилади типу “superstrate”, які мають багатошарову конструкцію. На теперішній час найбільш поширені СЕ першого та другого поколінь на основі поглинальних шарів Si, CdTe, GaAs, Cu(In1-x,Gax)(S1-xSex)2, які демонструють ефективність більшу за 20 %.
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Опанасюк, Анатолій Сергійович, Анатолий Сергеевич Опанасюк, Anatolii Serhiiovych Opanasiuk та ін. "Вплив оптичних і рекомбінаційних втрат на ефективність сонячних елементів на основі гетеропереходів n-ITO(ZnO)/n-CdS(ZnS,ZnSe)/p-CZTS". Thesis, Астропринт, 2016. http://essuir.sumdu.edu.ua/handle/123456789/46081.

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Згідно з прогнозами з середини XXI століття сонячна енергетика стане домінуючим джерелом енергії людства. У наш час як перспективна заміна традиційним поглинаючим шарам тонкоплівкових сонячних елементів (СЕ) розглядається чотирикомпонентна сполука Cu2ZnSnS4 (CZTS), яка має оптимальну для перетворення сонячної енергії ширину забороненої зони (Eg = 1,5 eВ) та р-тип провідності. Віконним матеріалом у такому СЕ тардиційно виступає CdS, а фронтальним контактом ITO. Альтернативою відомим СЕ є конструкції з вікном з ZnS або ZnSe та струмознімальним шаром ZnO:Al. За оцінками ефективність тонкоплівков
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Jones, A. P. C. "Electroluminescence in epitaxial thin film ZnS and ZnSe." Thesis, Durham University, 1987. http://etheses.dur.ac.uk/6783/.

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The application of the metalorganic chemical vapour deposition technique to the production of II-VI compound semiconductor electroluminescent devices is discussed. Both low field MIS minority carrier injection devices and high field impact excitation structures are considered, and comparisons are drawn with more commiercially orientated electroluminescent displays. The epitaxial growth of ZnS and ZnSe onto (100) orientated GaAs substrates, using the reactions between dimethyl zinc and the hydrides HgS and H2Se, is described. Details are given of a novel epitaxial MISi device processing technol
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Silva, Alessandra dos Santos. "Estudo de propriedades físicas de nanocristais de ZnTe e Zn1-xAxTe (A = Mn; Co) no sistema vítreo P2O5 ZnO Al2O3 BaO PbO." Universidade Federal de Uberlândia, 2015. https://repositorio.ufu.br/handle/123456789/15620.

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Fundação de Amparo a Pesquisa do Estado de Minas Gerais<br>In this work, Zn1-xAxTe (A = Mn, Co) diluted magnetic semiconductors (DMS) nanocrystal (NCs) were successfully grown in the P2O5 ZnO Al2O3 BaO PbO glass system synthesized by the method of Fusion-Nucleation, after subjecting to appropriate thermal annealing. Various experimental techniques were used in this study in order to get a comprehensive understanding of the optical, morphological, structural and magnetic properties these NCs. Transmission electron microscopy (TEM) and atomic force microscopy (AFM) images revealed the si
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Cloitre, Thierry. "Elaboration par MOVPE des matériaux semiconducteurs II-VI grand gap ZnSe et ZnTe : application à la croissance des superréseaux ZnSe/ZnTe." Montpellier 2, 1992. http://www.theses.fr/1992MON20072.

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Ce memoire est consacre a la croissance epitaxiale par movpe des semiconducteurs ii-vi a grand gap, znse, znte, ainsi que des structures de type super-reseaux znse-znte. L'utilisation d'un nouveau precurseur du zinc a permis d'ameliorer considerablement la qualite des materiaux deposes (homogeneite et purete). La determination des conditions de croissance optimales de znse et znte, epitaxie grace a ce nouveau precurseur, a permis d'aboutir a la realisation effective de super-reseaux znse-znte pour movpe. Une premiere modelisation de la structure de bande de ces structures a ete realisee par la
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Luo, Ming. "Transition-metal ions in II-VI semiconductors ZnSe and ZnTe /." Morgantown, W. Va. : [West Virginia University Libraries], 2006. https://eidr.wvu.edu/etd/documentdata.eTD?documentid=4630.

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Thesis (Ph. D.)--West Virginia University, 2006.<br>Title from document title page. Document formatted into pages; contains xiv, 141 p. : ill. (some col.). Includes abstract. Includes bibliographical references (p. 135-141).
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Books on the topic "ZNE"

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Gačʻečʻilaże, Maqvala. Samačʻablos Ostʻa qopʻa-cʻxovreba, zne-čʻveuleba, kultura: 1857-1905 cc. kʻartʻuli presis masalebis mixedvitʻ. Mecʻniereba, 1996.

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Wang, Defu. Zen yang yan jiu zhe xue. Beijing zhong xian tuo fang ke ji fa zhan you xian gong si, 2012.

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Heathcote, Felicity. Peak performance: Zen and thesporting zone. Wolfhound, 1996.

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Ma, Xiao. Zhe huo le, Zen me ban. Ji lin mei shu chu ban she, 2016.

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You, Congqi. Zhe xue, yao zen me shuo ? Guo li zhong shan da xue wen xue yuan, 2009.

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zhou, Ye. Wo zen me hun cheng zhe yang? Shi jie zhi shi chu ban she, 2003.

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li, Jin. Zhe ju hua, ying yu zen me shuo. Bei jing yu yan ta xue chu ban she, 2011.

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Yiwei, Qi, ed. Zhe ju Zhong wen, Ying yu zen me shuo? Da ji wen hua gu fen you xian gong si, 2007.

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yong, Wang, and Wang quan cheng. Zhe yang zhuang xiu zen neng bu sheng qian. Bei jing ke xue ji zhu chu ban she, 2007.

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translator, Liang Yong'an, ed. Chan zhe de chu xin: Zen Mind, Beginner's Mind. Hainan chu ban she, 2012.

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Book chapters on the topic "ZNE"

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Eley, Charles. "Beyond ZNE: The World of Our Grandchildren." In Design Professional’s Guide to Zero Net Energy Buildings. Island Press/Center for Resource Economics, 2016. http://dx.doi.org/10.5822/978-1-61091-765-0_8.

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Eley, Charles. "ZNE for the Mainstream: Scaling Up the Concept." In Design Professional’s Guide to Zero Net Energy Buildings. Island Press/Center for Resource Economics, 2016. http://dx.doi.org/10.5822/978-1-61091-765-0_7.

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Eley, Charles. "Energy Modeling: Evaluating ZNE before the Utility Bills Arrive." In Design Professional’s Guide to Zero Net Energy Buildings. Island Press/Center for Resource Economics, 2016. http://dx.doi.org/10.5822/978-1-61091-765-0_4.

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Ves, S. "Band Gaps and Phase Transitions in Cubic ZnS, ZnSe and ZnTe." In NATO ASI Series. Springer US, 1991. http://dx.doi.org/10.1007/978-1-4899-2480-3_31.

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Tuncay, Ç., and M. Tomak. "Deep Defect Levels in the Wurtzite Semiconductors: Sic, ZnS, ZnSe and ZnTe." In Proceedings of the 17th International Conference on the Physics of Semiconductors. Springer New York, 1985. http://dx.doi.org/10.1007/978-1-4615-7682-2_136.

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Kolodziejski, L. A., R. L. Gunshor, A. V. Nurmikko, and N. Otsuka. "Exciton Self-Trapping in ZnSe/ZnTe Superlattice Structures." In Growth and Optical Properties of Wide-Gap II–VI Low-Dimensional Semiconductors. Springer US, 1989. http://dx.doi.org/10.1007/978-1-4684-5661-5_27.

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Gao, Y.-M., R. Kershaw, A. Wold, and D. M. Schleich. "Preparation of ZrO2 , Zno, and Zns Thin Films." In Inorganic Syntheses. John Wiley & Sons, Inc., 2007. http://dx.doi.org/10.1002/9780470132616.ch49.

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Fang, Zhen Yi, Wei Pan, Ming Hao Fang, and Sui Lin Shi. "Micromorphologies and Defects in CVD ZnS and ZnSe." In High-Performance Ceramics III. Trans Tech Publications Ltd., 2007. http://dx.doi.org/10.4028/0-87849-959-8.537.

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Mo, Y., J. J. Schwartz, M. H. Lynch, et al. "Field Emission Properties of ZnO, ZnS, and GaN Nanostructures." In Nanoscale Photonics and Optoelectronics. Springer New York, 2010. http://dx.doi.org/10.1007/978-1-4419-7587-4_7.

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O’Donnell, K. P., and B. Henderson. "Considerations for Blue-Green Optoelectronics Based on Epitaxial ZnSe/ZnS." In Growth and Optical Properties of Wide-Gap II–VI Low-Dimensional Semiconductors. Springer US, 1989. http://dx.doi.org/10.1007/978-1-4684-5661-5_3.

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Conference papers on the topic "ZNE"

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Tan, Zhenhua, Linbo Long, Jingcheng Shen, Congming Gao, Renping Liu, and Yi Jiang. "Para-ZNS: Improving Small-Zone ZNS SSDs Parallelism Through Dynamic Zone Mapping." In 2024 Design, Automation & Test in Europe Conference & Exhibition (DATE). IEEE, 2024. http://dx.doi.org/10.23919/date58400.2024.10546863.

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Andresen, Peter L., and Thomas M. Angelin. "Effects of Zinc Additions on the Stress Corrosion Crack Growth Rate of Sensitized Stainless Steel, Alloy 600 & Alloy 182 Weld Metal in 288C Water." In CORROSION 1995. NACE International, 1995. https://doi.org/10.5006/c1995-95409.

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Abstract The effect of ZnO additions on stress corrosion crack growth rates were studied using 1T CT fracture mechanics specimens of sensitized type 304 stainless steel, sensitized Alloy 600, and Alloy 182 weld metal exposed to ≈288°C water containing various levels of dissolved oxygen and impurities. Zn levels of 5 to 100 ppb Zn2+ were evaluated and found to reduce crack growth rates for all materials and in all water chemistries. Many Zn tests involved long term exposure and were performed at somewhat reduced corrosion potential (e.g., from ≈+200 to 0 - +50 mVshe); variations in corrosion po
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Christensen, Craig, Blaise Stoltenberg, and Greg Barker. "An Optimization Methodology for Zero Net Energy Buildings." In ASME 2003 International Solar Energy Conference. ASMEDC, 2003. http://dx.doi.org/10.1115/isec2003-44202.

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A zero net energy building (ZNEB) is grid-tied, net metered and produces as much energy on-site as it uses in a typical year. In this paper, we describe methods to cost optimize designs for ZNEB’s. The goal is to find a constrained optimum, i.e., the minimum-cost design that achieves ZNE. Increased first costs for improved efficiency are balanced against the size of the PV system required to achieve ZNE (where the net-metered PV system is the energy source of last resort, because it is expensive but can meet the remaining load “using the grid for storage”). Discrete building component options
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Patil, Hrushikesh Pramod, Peiyi Li, Ji Liu, and Huiyang Zhou. "Folding-Free ZNE: A Comprehensive Quantum Zero-Noise Extrapolation Approach for Mitigating Depolarizing and Decoherence Noise." In 2023 IEEE International Conference on Quantum Computing and Engineering (QCE). IEEE, 2023. http://dx.doi.org/10.1109/qce57702.2023.00104.

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Akpa, O., S. Shaik, T. Thompson, et al. "Sputter deposited ZnTe/ZnSe/ZnO heterojunctions for photovoltaic applications." In 2010 35th IEEE Photovoltaic Specialists Conference (PVSC). IEEE, 2010. http://dx.doi.org/10.1109/pvsc.2010.5616303.

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Akiyama, Toru, Kosuke Sano, Kohji Nakamura, and Tomonori Ito. "Structures and energetics of ZnO, ZnS, ZnSe nanowires: an empirical interatomic potential approach." In PHYSICS OF SEMICONDUCTORS: 28th International Conference on the Physics of Semiconductors - ICPS 2006. AIP, 2007. http://dx.doi.org/10.1063/1.2729767.

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Mason, B. E. "Photoconductivity of ZnS and ZnSe." In Laser-Induced Damage in Optical Materials 1989. SPIE, 1990. http://dx.doi.org/10.1117/12.2294467.

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Kovalenko, Alexander V., and V. V. Tishchenko. "ZnSe/GaAs(100) thin layers, ZnS-ZnSe-ZnS/GaAs(100) single quantum well structures and ZnS/ZnSe/GaAs(100) superlattices grown by photoassisted VPE." In Photonics West '95, edited by Manijeh Razeghi, Yoon-Soo Park, and Gerald L. Witt. SPIE, 1995. http://dx.doi.org/10.1117/12.206915.

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Khan, Talha Farooq, Mohsin Muhyuddin, Syed Wilayat Husain, and Muhammad Abdul Basit. "Synthesis and Characterization of ZnO-ZnS Nanoflowers for Enhanced Photocatalytic Performance : ZnS Decorated ZnO Nanoflowers." In 2019 16th International Bhurban Conference on Applied Sciences and Technology (IBCAST - 2019). IEEE, 2019. http://dx.doi.org/10.1109/ibcast.2019.8667220.

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McCamy, J. W., Douglas H. Lowndes, and J. D. Budai. "Growth of Epitaxial ZnS, ZnSe and ZnS-ZnSe Multilayers on GaAs by Pulsed-Laser Ablation." In 1992 International Conference on Solid State Devices and Materials. The Japan Society of Applied Physics, 1992. http://dx.doi.org/10.7567/ssdm.1992.s-i-11.

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Reports on the topic "ZNE"

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Johnson, Karl, Vagelis Vossos, Margarita Kloss, Gerald Robinson, and Rich Brown. Direct Current as an Integrating Platform for ZNE Buildings with EVs and Storage: DC Direct Systems – A Bridge to a Low Carbon Future? Office of Scientific and Technical Information (OSTI), 2016. http://dx.doi.org/10.2172/1408478.

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Yi, Gyu-Chul. Fabrications and Characterizations of ZnO/Zn1-xMgxO Nanorod Quantum Structures. Defense Technical Information Center, 2005. http://dx.doi.org/10.21236/ada466259.

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Kompella, Venkata Naga Surya Sri Lakshmi. ZEN. Iowa State University, 2024. http://dx.doi.org/10.31274/cc-20240624-1620.

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Wieder, Wendy, and Sally Shoop. Landing-Zone and Drop-Zone criteria. Cold Regions Research and Engineering Laboratory (U.S.), 2017. http://dx.doi.org/10.21079/11681/22406.

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Lee, Breanne. Modern Zen. Iowa State University, Digital Repository, 2013. http://dx.doi.org/10.31274/itaa_proceedings-180814-578.

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Thomas, Cherrelle. ZnO Update. Office of Scientific and Technical Information (OSTI), 2020. http://dx.doi.org/10.2172/1607842.

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Kamepalli, Sai Krishna, Raghuram Rajan, and Luigi Zingales. Kill Zone. National Bureau of Economic Research, 2020. http://dx.doi.org/10.3386/w27146.

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Blackfield, Donald T., and Brian R. Poole. The Near Zone to Far Zone Transformation (N2F). Office of Scientific and Technical Information (OSTI), 2016. http://dx.doi.org/10.2172/1245712.

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J. Conca. Unsaturated Zone and Saturated Zone Transport Properties (U0100). Office of Scientific and Technical Information (OSTI), 2000. http://dx.doi.org/10.2172/837132.

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Leybourne, M. I., J. M. Peter, M A Schmidt, D. Layton-Matthews, A. Voinot, and L. Mathieu. Geochemical evidence for a magmatic contribution to the metal budget of the Windy Craggy Cu-Co(±Zn) volcanogenic massive-sulfide deposit, northwestern British Columbia. Natural Resources Canada/CMSS/Information Management, 2022. http://dx.doi.org/10.4095/328018.

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Abstract:
Volcanogenic massive-sulfide (VMS) deposits may have had metal contributions from magmatic degassing and leaching of footwall rocks. The Windy Craggy Cu-Co-Zn VMS deposit in northwestern British Columbia may include magmatic contributions, based on laser-ablation inductively coupled plasma mass spectrometry (LA-ICP-MS) of fluid inclusions (enriched in Sb, Sn, and Bi) and lithogeochemistry. Sulfide-mineral trace-element abundances in the massive-sulfide orebody, underlying stockwork zone, gold zone, and altered and unaltered mafic rock and argillite were analyzed by LA-ICP-MS. Elevated Au, W, A
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