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G. Sassone and W. A. Schaffer, \u003Cem>Cost-benefit Analysis\u003C\u002Fem>. Cambridge, USA: Academic Press Inc, 1978.\u003C\u002Fa>\u003Cbr\u002F>[2] M. Florio, &ldquo;European and International Perspectives on Benefit-Cost Analysis: Symposium Introduction,&rdquo; \u003Cem>JBCA\u003C\u002Fem>, vol. 12, no. 1, pp. 55&ndash;63, 2021, doi: \u003Ca href=\"https:\u002F\u002Fdoi.org\u002F10.1017\u002Fbca.2020.35\" target=\"_blank\">10.1017\u002Fbca.2020.35.\u003C\u002Fa>\u003Cbr\u002F>[3] H. M. Levin, &ldquo;Cost-benefit analysis: theory and application,&rdquo; \u003Cem>Evaluation and Program Planning\u003C\u002Fem>, vol. 20, no. 3, pp. 288&ndash;290, Aug. 1997, doi: \u003Ca href=\"https:\u002F\u002Fdoi.org\u002F10.1016\u002FS0149-7189(97)89859-X\" target=\"_blank\">10.1016\u002Fs0149-7189(97)89859-x.\u003C\u002Fa>\u003Cbr\u002F>[4] Os&oacute;rio Nhiuane, S&aacute; Nogueira Lisboa, M. 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Samuelson, &ldquo;Proof That Properly Discounted Present Values of Assets Vibrate Randomly,&rdquo; \u003Cem>The Bell\u003C\u002Fem> \u003Cem>Journal of Economics and Management Science\u003C\u002Fem>, vol. 4, no. 2, p. 369, 1973, doi: \u003Ca href=\"https:\u002F\u002Fdoi.org\u002F10.2307\u002F3003046\" target=\"_blank\">10.2307\u002F3003046.\u003C\u002Fa>\u003Cbr\u002F>[7] R. Kazman, Jai Asundi, and M. Klein, &ldquo;Quantifying the costs and benefits of architectural decisions,&rdquo; \u003Cem>International Conference on Software Engineering\u003C\u002Fem>, pp. 297&ndash;306, Jul. 2001, doi: \u003Ca href=\"https:\u002F\u002Fdoi.org\u002F10.1109\u002FICSE.2001.919103\" target=\"_blank\">10.5555\u002F381473.381504.\u003C\u002Fa>\u003Cbr\u002F>[8] O. &Scaron;pačkov&aacute; and D. 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Dymova, &ldquo;Stock screening with use of multiple criteria decision making and optimization☆,&rdquo; \u003Cem>Omega\u003C\u002Fem>, vol. 37, no. 3, pp. 659&ndash;671, Jun. 2009, doi: \u003Ca href=\"https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.omega.2008.04.002\" target=\"_blank\">10.1016\u002Fj.omega.2008.04.002.\u003C\u002Fa>\u003Cbr\u002F>[17] J. S. H. Kornbluth, &ldquo;Dynamic multi-criteria decision making,&rdquo; \u003Cem>Journal of Multi-Criteria Decision Analysis\u003C\u002Fem>, vol. 1, no. 2, pp. 81&ndash;92, Oct. 1992, doi: \u003Ca href=\"https:\u002F\u002Fdoi.org\u002F10.1002\u002Fmcda.4020010204\" target=\"_blank\">10.1002\u002Fmcda.4020010204.\u003C\u002Fa>\u003Cbr\u002F>[18] C. A. Menzie and J. S. Freshman, &ldquo;An assessment of the risk assessment paradigm for ecological risk assessment,&rdquo; \u003Cem>Human and Ecological Risk Assessment: An International Journal\u003C\u002Fem>, vol. 3, no. 5, pp. 853&ndash;892, Nov. 1997, doi: \u003Ca href=\"https:\u002F\u002Fdoi.org\u002F10.1080\u002F10807039709383732\" target=\"_blank\">10.1080\u002F10807039709383732.\u003C\u002Fa>\u003Cbr\u002F>[19] W. E. Cooper, &ldquo;Risk Assessment and Risk Management: an Essential Integration,&rdquo; \u003Cem>Human and Ecological Risk Assessment: an International Journal,\u003C\u002Fem> vol. 4, no. 4, pp. 931&ndash;937, Jan. 2019, doi: \u003Ca href=\"https:\u002F\u002Fdoi.org\u002F10.1080\u002F10807039891284884\" target=\"_blank\">10.1080\u002F10807039891284884.\u003C\u002Fa>\u003Cbr\u002F>[20] N. J. Garber and S. Subramanyan, &ldquo;Incorporating Crash Risk in Selecting Congestion-Mitigation Strategies: Hampton Roads Area (Virginia) Case Study,&rdquo; \u003Cem>Transportation Research Record: Journal of the Transportation Research Board\u003C\u002Fem>, vol. 1746, no. 1, pp. 1&ndash;5, Jan. 2001, doi:\u003Ca href=\"https:\u002F\u002Fdoi.org\u002F10.3141\u002F1746-01\" target=\"_blank\"> 10.3141\u002F1746-01.\u003C\u002Fa>\u003Cbr\u002F>[21] N. J. Garber and S. Subramanyan, &ldquo;Incorporating Crash Risk in Selecting Congestion-Mitigation Strategies: Hampton Roads Area (Virginia) Case Study,&rdquo; \u003Cem>Transportation Research Record: Journal of the Transportation Research Board\u003C\u002Fem>, vol. 1746, no. 1, pp. 1&ndash;5, Jan. 2001, doi: \u003Ca href=\"https:\u002F\u002Fdoi.org\u002F10.3141\u002F1746-01\" target=\"_blank\">10.3141\u002F1746-01.&nbsp;\u003C\u002Fa>\u003C\u002Fp>",false,{"id":155,"createTime":156,"updateTime":157,"relativeEntities":158,"slug":159,"properties":160,"entityType":96,"verifyStatus":173,"verifyTime":26,"verifyNote":26,"languages":26,"translateLanguages":26,"viewCount":35,"primaryUrl":174,"fullTextUrl":26,"authors":175,"publicationType":119,"publisherRelationship":184,"citationCount":47,"citationInfo":204,"publishDate":26,"publishYear":205,"citationAnalyzeStatus":173,"lastCitationAnalyze":206,"indexDatabases":207,"openAccess":26,"references":26,"isForceReanalyzing":153},"8ed4d0d5-7ee0-4f1b-8998-06c455d0f9c0","2026-01-21T03:27:38.423+00:00","2026-08-20T03:24:53.967+00:00",[],"Applications-of-linear-algebra-in-encryption",{"volume":161,"pages":163,"abstract":165,"title":167,"gsPaper":169,"issue":171},{"VOID":162},"1",{"VOID":164},"46-52",{"EN":166},"Information security is always a crucial issue in the continuously developing society. There are many solutions that have been proposed to secure information. In this article, the author discusses the introduction of encryption using knowledge from the Linear Algebra course to first-year students so that they can perceive the application of Linear Algebra. The information encryption process uses the knowledge of matrices, matrix operations, inverse matrices, transposition, Gauss elimination, linear transformation....",{"VI":168},"Applications of linear algebra in encryption",{"VOID":170},"13027047306708840612",{"VOID":172},"2","PENDING","http:\u002F\u002Fsj.hpu2.edu.vn\u002Findex.php\u002Fjournal\u002Farticle\u002Fview\u002F186",[176],{"id":177,"sortIndex":35,"researcher":26,"roles":178,"affiliations":180,"properties":181},"13c9a008-1526-4162-9d59-bf8b581bc982",[179],"AUTHOR",[],{"title":182},{"VI":183},"TG Nguyen-Thi",{"url":26,"publisher":185,"properties":26},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":186,"slug":10,"properties":187,"entityType":24,"verifyStatus":25,"verifyTime":26,"verifyNote":27,"languages":26,"translateLanguages":26,"viewCount":28,"subjectFields":192,"manageAffiliations":193,"indexDatabases":194,"url":32,"thumbnailPath":33,"statistic":195,"gsStatistic":200,"type":68,"analyzePriority":26},[],{"country":188,"issn":189,"title":190,"gsId":191},{"VOID":13},{"VOID":15},{"EN":17,"VI":18},{"VOID":23},[],[],[],{"impactFactor":35,"impactFactorByYear":196,"i10Index":35,"i10IndexLast5Year":35,"totalPublication":38,"totalPublicationByYear":197,"totalCitation":43,"totalCitationByYear":198,"totalCitationPerPublication":48,"totalCitationPerPublicationByYear":199,"hindexLast5Year":47,"hindex":47},{"2024":37},{"2022":40,"2023":41,"2024":42},{"2022":45,"2023":46,"2024":47},{"2022":50,"2023":51,"2024":52},{"impactFactor":26,"impactFactorByYear":26,"i10Index":54,"i10IndexLast5Year":54,"totalPublication":55,"totalPublicationByYear":201,"totalCitation":59,"totalCitationByYear":202,"totalCitationPerPublication":63,"totalCitationPerPublicationByYear":203,"hindexLast5Year":61,"hindex":61},{"0":47,"2022":43,"2023":40,"2024":57,"2025":58},{"2023":61,"2024":40,"2025":62,"2026":41},{"2023":65,"2024":66,"2025":67},{"total":47,"publishYear":205,"statisticByYear":26},2023,"2026-04-17T16:22:32.623+00:00",[],{"id":209,"createTime":210,"updateTime":211,"relativeEntities":212,"slug":213,"properties":214,"entityType":96,"verifyStatus":25,"verifyTime":230,"verifyNote":98,"languages":231,"translateLanguages":26,"viewCount":35,"primaryUrl":232,"fullTextUrl":233,"authors":234,"publicationType":119,"publisherRelationship":377,"citationCount":47,"citationInfo":401,"publishDate":403,"publishYear":402,"citationAnalyzeStatus":173,"lastCitationAnalyze":404,"indexDatabases":405,"openAccess":26,"references":406,"isForceReanalyzing":153},"1b8132c2-cfaf-436e-a60b-4dbf7d3f69e9","2024-09-03T17:02:52.098+00:00","2026-08-20T03:24:53.880+00:00",[],"Hydrothermal-synthesis-of-CdTe-quantum-dots-using-ammonia-as-a-reducing-agent",{"volume":215,"pages":217,"gsPaper":219,"keywords":221,"issue":223,"abstract":224,"title":226,"doi":228},{"VOID":216},"3",{"VOID":218},"3-9",{"VOID":220},"5557190127368612109",{"EN":222},"Hydride-free, hydrothermal,CdTe quantum dots,water-soluble,ammonia",{"VOID":172},{"EN":225},"Water-soluble CdTe quantum dots (QDs) have been applied in various fields, such as photoluminescent imaging, labeling agents in immune analysis, heavy metal ion sensing, and solar cells. The synthesis of CdTe QDs has relied vastly on reactions between Cd2+ and Te2- ions in the presence of mercapto ligands. Te2- ions are usually formed in situ in the synthetic solution by reducing tellurite ions with hydride salts, such as NaBH4 which gives rise to the emission of highly explosive hydrogen gas. Herein, we report a novel method to synthesize CdTe QDs by using ammonia as a reducing agent. We demonstrate that under hydrothermal conditions, ammonia can reduce tellurite forming telluride ions which react with cadmium ions in the presence of glutathione forming CdTe QDs. The resultant QDs exhibited high photoluminescence and resolvable absorption. The synthetic method demonstrated herein could reduce the cost of CdTe-based quantum dots for rapid deployment. ",{"EN":227},"Hydrothermal synthesis of CdTe quantum dots  using ammonia as a reducing 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",{"id":282,"sortIndex":283,"researcher":26,"roles":284,"affiliations":285,"properties":292},"c08fe44b-8c14-4f60-befa-e8709b3b849b",3,[],[286],{"id":271,"sortIndex":35,"affiliation":287,"properties":26},{"id":271,"createTime":26,"updateTime":26,"relativeEntities":288,"slug":26,"properties":289,"entityType":26,"verifyStatus":26,"verifyTime":26,"verifyNote":26,"languages":26,"translateLanguages":26,"viewCount":26,"url":26,"parentIds":291,"statistic":26},[],{"title":290},{"EN":276},[],{"title":293},{"EN":294},"Xuan-Bach Nguyen ",{"id":296,"sortIndex":54,"researcher":26,"roles":297,"affiliations":298,"properties":305},"fbf00a6c-7649-4341-a6a4-b89fc12a57cb",[],[299],{"id":271,"sortIndex":35,"affiliation":300,"properties":26},{"id":271,"createTime":26,"updateTime":26,"relativeEntities":301,"slug":26,"properties":302,"entityType":26,"verifyStatus":26,"verifyTime":26,"verifyNote":26,"languages":26,"translateLanguages":26,"viewCount":26,"url":26,"parentIds":304,"statistic":26},[],{"title":303},{"EN":276},[],{"title":306},{"EN":307},"Phuong-Nam Nguyen ",{"id":309,"sortIndex":61,"researcher":26,"roles":310,"affiliations":311,"properties":318},"239f0198-e2cc-491d-a7e9-43bffd9d7489",[],[312],{"id":271,"sortIndex":35,"affiliation":313,"properties":26},{"id":271,"createTime":26,"updateTime":26,"relativeEntities":314,"slug":26,"properties":315,"entityType":26,"verifyStatus":26,"verifyTime":26,"verifyNote":26,"languages":26,"translateLanguages":26,"viewCount":26,"url":26,"parentIds":317,"statistic":26},[],{"title":316},{"EN":276},[],{"title":319},{"EN":320},"Sinh-Hung Nguyen 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Mai",{"id":338,"sortIndex":339,"researcher":26,"roles":340,"affiliations":341,"properties":348},"4b6b1367-0408-476a-b74f-809a250c5bc7",7,[],[342],{"id":271,"sortIndex":35,"affiliation":343,"properties":26},{"id":271,"createTime":26,"updateTime":26,"relativeEntities":344,"slug":26,"properties":345,"entityType":26,"verifyStatus":26,"verifyTime":26,"verifyNote":26,"languages":26,"translateLanguages":26,"viewCount":26,"url":26,"parentIds":347,"statistic":26},[],{"title":346},{"EN":276},[],{"title":349},{"EN":350},"Phuong-Uyen Pham",{"id":352,"sortIndex":45,"researcher":26,"roles":353,"affiliations":354,"properties":361},"ec40b4cb-4f22-4bae-8d9b-f036d0dff81a",[],[355],{"id":271,"sortIndex":35,"affiliation":356,"properties":26},{"id":271,"createTime":26,"updateTime":26,"relativeEntities":357,"slug":26,"properties":358,"entityType":26,"verifyStatus":26,"verifyTime":26,"verifyNote":26,"languages":26,"translateLanguages":26,"viewCount":26,"url":26,"parentIds":360,"statistic":26},[],{"title":359},{"EN":276},[],{"title":362},{"EN":363},"Hai-Yen Vu 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L. 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Yang, and M. Gao, &ldquo;The influence of carboxyl groups on the photoluminescence of mercaptocarboxylic acid-stabilized CdTe nanoparticles,&rdquo; \u003Cem>J. Phys. Chem. B\u003C\u002Fem>, vol. 107, no. 1, pp. 8&ndash;13, Dec. 2002, doi: \u003Ca href=\"https:\u002F\u002Fdoi.org\u002F10.1021\u002Fjp025910c\" target=\"_blank\">10.1021\u002Fjp025910c.\u003C\u002Fa>\u003Cbr\u002F>[7] T. D. T. Ung, T. K. C. Tran, T. N. Pham, D. N. Nguyen, D. K. Dinh, and Q. L. Nguyen, &ldquo;CdTe and CdSe quantum dots: Synthesis, characterizations and applications in agriculture,&rdquo; \u003Cem>Adv. Nat. Sci. Nanosci. Nanotechnol.\u003C\u002Fem>, vol. 3, no. 4, p. 043001, Nov. 2012, doi: \u003Ca href=\"https:\u002F\u002Fdoi.org\u002F10.1088\u002F2043-6262\u002F3\u002F4\u002F043001\" target=\"_blank\">10.1088\u002F2043-6262\u002F3\u002F4\u002F043001.\u003C\u002Fa>\u003Cbr\u002F>[8] L. Jing \u003Cem>et al.\u003C\u002Fem>, &ldquo;Aqueous based semiconductor nanocrystals,&rdquo; \u003Cem>Chem. Rev.\u003C\u002Fem>, vol. 116, no. 18, pp. 10623&ndash;10730, Sep. 2016, doi: \u003Ca href=\"https:\u002F\u002Fdoi.org\u002F10.1021\u002Facs.chemrev.6b00041\" target=\"_blank\">10.1021\u002Facs.chemrev.6b00041.\u003C\u002Fa>\u003Cbr\u002F>[9] D. Vorontsov, A. Fuč&iacute;kov&aacute;, V. Dědič, and J. Valenta, &ldquo;Cd-free photoluminescent composites based on the ternary chalcogenides quantum dots,&rdquo; \u003Cem>Opt. Mater. (Amst).\u003C\u002Fem>, vol. 143, p. 114208, Sep. 2023, doi: \u003Ca href=\"https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.optmat.2023.114208\" target=\"_blank\">10.1016\u002Fj.optmat.2023.114208.\u003C\u002Fa>\u003Cbr\u002F>[10] Z. C. Wu \u003Cem>et al.\u003C\u002Fem>, &ldquo;Enhanced photoluminescence quantum yield of red-emitting CdTe:Gd\u003Csup>3+\u003C\u002Fsup> QDs for WLEDs applications,&rdquo; \u003Cem>J. Am. Ceram. 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Dunn, B. J. Cook, S. I. Johnson, A. M. Appel, and R. M. Bullock, &ldquo;Oxidation of ammonia with molecular complexes,&rdquo; \u003Cem>J. Am. Chem. Soc.\u003C\u002Fem>, vol. 142, no. 42, pp. 17845&ndash;17858, Sep. 2020, doi: \u003Ca href=\"https:\u002F\u002Fdoi.org\u002F10.1021\u002Fjacs.0c08269\" target=\"_blank\">10.1021\u002Fjacs.0c08269.\u003C\u002Fa>\u003C\u002Fp>",{"id":26,"text":410,"url":26,"identifiers":26},"\u003Cp>&nbsp;\u003C\u002Fp>",{"id":26,"text":410,"url":26,"identifiers":26},{"id":413,"createTime":414,"updateTime":415,"relativeEntities":416,"slug":417,"properties":418,"entityType":96,"verifyStatus":173,"verifyTime":26,"verifyNote":26,"languages":26,"translateLanguages":26,"viewCount":35,"primaryUrl":429,"fullTextUrl":26,"authors":430,"publicationType":119,"publisherRelationship":452,"citationCount":252,"citationInfo":472,"publishDate":26,"publishYear":402,"citationAnalyzeStatus":173,"lastCitationAnalyze":473,"indexDatabases":474,"openAccess":26,"references":26,"isForceReanalyzing":153},"5bdd758c-679e-4213-bb78-07f0c918a07e","2026-01-21T22:15:13.764+00:00","2026-08-20T03:24:53.855+00:00",[],"An-investigation-into-the-morphological-and-anatomical-characteristics-of-three-cassava-varieties-collected-from-the-Northern-provinces-of-Vietnam",{"volume":419,"abstract":420,"pages":422,"title":424,"gsPaper":426,"issue":428},{"VOID":216},{"EN":421},"Cassava (Manihot esculenta Crantz) is a crucial crop that sustains millions of people across tropical and subtropical regions, providing an essential source of carbohydrates and contributing significantly to food security. Morphologically, varieties KM94, 08SA06, and Ruột vàng exhibit distinct traits such as plant form, leaf structure, tuber shape, and starch content, which underline their adaptability and potential for high yield under diverse growing conditions. Anatomically, the stems of these varieties demonstrate unique structural features, including tightly packed epidermal cells with thick cuticle layers, varying layers of collenchyma and parenchyma, robust sclerenchyma rings, and well-organized vascular bundles. These features ensure efficient nutrient and water transport, structural integrity, and resilience against environmental stresses, essential for the growth and development of these cassava varieties. By highlighting these morphological and anatomical traits, this study emphasizes the importance of such detailed analyses for improving cassava cultivation practices.",{"VOID":423},"43-51",{"VI":425},"An investigation into the morphological and anatomical characteristics of three cassava () varieties collected from the Northern provinces of Vietnam",{"VOID":427},"3337185178400084290",{"VOID":216},"http:\u002F\u002Fsj.hpu2.edu.vn\u002Findex.php\u002Fjournal\u002Farticle\u002Fview\u002F261",[431,438,445],{"id":432,"sortIndex":35,"researcher":26,"roles":433,"affiliations":434,"properties":435},"8d3b8559-0c58-4763-b39d-a53f64a987fb",[179],[],{"title":436},{"VI":437},"VT Tran",{"id":439,"sortIndex":252,"researcher":26,"roles":440,"affiliations":441,"properties":442},"79c8d5e9-f1f4-4522-881e-c74cdd7e70a6",[179],[],{"title":443},{"VI":444},"KTN Thi",{"id":446,"sortIndex":47,"researcher":26,"roles":447,"affiliations":448,"properties":449},"a8da651e-a8f9-4146-8203-22dbd86f0e97",[179],[],{"title":450},{"VI":451},"LH Do Thi",{"url":26,"publisher":453,"properties":26},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":454,"slug":10,"properties":455,"entityType":24,"verifyStatus":25,"verifyTime":26,"verifyNote":27,"languages":26,"translateLanguages":26,"viewCount":28,"subjectFields":460,"manageAffiliations":461,"indexDatabases":462,"url":32,"thumbnailPath":33,"statistic":463,"gsStatistic":468,"type":68,"analyzePriority":26},[],{"country":456,"issn":457,"title":458,"gsId":459},{"VOID":13},{"VOID":15},{"EN":17,"VI":18},{"VOID":23},[],[],[],{"impactFactor":35,"impactFactorByYear":464,"i10Index":35,"i10IndexLast5Year":35,"totalPublication":38,"totalPublicationByYear":465,"totalCitation":43,"totalCitationByYear":466,"totalCitationPerPublication":48,"totalCitationPerPublicationByYear":467,"hindexLast5Year":47,"hindex":47},{"2024":37},{"2022":40,"2023":41,"2024":42},{"2022":45,"2023":46,"2024":47},{"2022":50,"2023":51,"2024":52},{"impactFactor":26,"impactFactorByYear":26,"i10Index":54,"i10IndexLast5Year":54,"totalPublication":55,"totalPublicationByYear":469,"totalCitation":59,"totalCitationByYear":470,"totalCitationPerPublication":63,"totalCitationPerPublicationByYear":471,"hindexLast5Year":61,"hindex":61},{"0":47,"2022":43,"2023":40,"2024":57,"2025":58},{"2023":61,"2024":40,"2025":62,"2026":41},{"2023":65,"2024":66,"2025":67},{"total":252,"publishYear":402,"statisticByYear":26},"2026-04-17T16:22:26.544+00:00",[],{"id":476,"createTime":477,"updateTime":478,"relativeEntities":479,"slug":480,"properties":481,"entityType":96,"verifyStatus":25,"verifyTime":477,"verifyNote":98,"languages":492,"translateLanguages":26,"viewCount":35,"primaryUrl":493,"fullTextUrl":494,"authors":495,"publicationType":119,"publisherRelationship":602,"citationCount":35,"citationInfo":627,"publishDate":403,"publishYear":402,"citationAnalyzeStatus":147,"lastCitationAnalyze":629,"indexDatabases":630,"openAccess":26,"references":631,"isForceReanalyzing":153},"34b156f5-5687-48f3-b420-ef04e2478f50","2025-07-10T17:52:14.403+00:00","2026-08-20T03:24:53.797+00:00",[],"Structure-magnetic-properties-and-magnetocaloric-effect-of-Fe-81-x-Cr-x-4-B-2Zr-10-Nd-3-rapidly-quenched-alloys",{"abstract":482,"title":484,"gsPaper":486,"keywords":488,"doi":490},{"EN":483},"This paper presents, we present the structure, magnetic properties, and magnetocaloric effect of the Fe81-xCrx+4B2Zr10Nd3 (x = 0, 1, 2, and 3) alloy ribbons. The alloy ribbons were prepared by using the melt-spinning method. Structural analysis by X-ray diffraction shows that the obtained alloy ribbons are almost amorphous. Curie temperature of the alloy ribbons decreases from 310 to 275 K when x increases from 0 to 3. Under a magnetic field change of 12 kOe, the maximum magnetic entropy change \\(|\\Delta S_m|_{\\text{max}}\\) of the Fe80Cr5B2Zr10Nd3 alloy ribbon is found to be 1.05 J.kg-1.K-1 at 302 K. In addition, the large refrigerant capacity (RC &gt; 80 J∙kg-1 with \\(\\Delta H=12\\) kOe) at room temperature is obtained in the alloy ribbon. Thus, the alloy ribbons can be considered a potential magnetic refrigerant in the room temperature range.",{"EN":485},"Structure, magnetic properties and magnetocaloric effect of \\(Fe_{81-x}Cr_{x+4}B_2Zr_{10}Nd_3\\) rapidly quenched alloys",{"VOID":487},"[\"4026587769168439658\"]",{"EN":489},"Magnetocaloric effect,magnetic entropy change,refrigerant capacity,magnetic refrigerant,melt-spinning method",{"VOID":491},"10.56764\u002Fhpu2.jos.2024.3.2.10-17",[100],"http:\u002F\u002Fsj.hpu2.edu.vn\u002Findex.php\u002Fjournal\u002Farticle\u002Fview\u002F242","https:\u002F\u002Fsj.hpu2.edu.vn\u002Findex.php\u002Fjournal\u002Farticle\u002Fdownload\u002F242\u002F156",[496,511,524,537,550,563,576,589],{"id":497,"sortIndex":35,"researcher":26,"roles":498,"affiliations":499,"properties":508},"bc8ca08f-04c0-4ef9-8f56-5c3f73756eba",[],[500],{"id":501,"sortIndex":35,"affiliation":502,"properties":26},"344f7682-e8b2-4ad4-a6b8-b0dea358fb58",{"id":501,"createTime":26,"updateTime":26,"relativeEntities":503,"slug":26,"properties":504,"entityType":26,"verifyStatus":26,"verifyTime":26,"verifyNote":26,"languages":26,"translateLanguages":26,"viewCount":26,"url":26,"parentIds":507,"statistic":26},[],{"title":505},{"EN":506},"Institute of Materials Science - VAST, Hanoi, Vietnam",[],{"title":509},{"EN":510},"Hai-Yen Nguyen",{"id":512,"sortIndex":252,"researcher":26,"roles":513,"affiliations":514,"properties":521},"36843ff8-6c32-4a20-88e8-4faf20737b86",[],[515],{"id":501,"sortIndex":35,"affiliation":516,"properties":26},{"id":501,"createTime":26,"updateTime":26,"relativeEntities":517,"slug":26,"properties":518,"entityType":26,"verifyStatus":26,"verifyTime":26,"verifyNote":26,"languages":26,"translateLanguages":26,"viewCount":26,"url":26,"parentIds":520,"statistic":26},[],{"title":519},{"EN":506},[],{"title":522},{"EN":523},"Huy-Ngoc Nguyen",{"id":525,"sortIndex":47,"researcher":26,"roles":526,"affiliations":527,"properties":534},"8328efaf-1e57-45a8-86a5-7cf806cdd84f",[],[528],{"id":501,"sortIndex":35,"affiliation":529,"properties":26},{"id":501,"createTime":26,"updateTime":26,"relativeEntities":530,"slug":26,"properties":531,"entityType":26,"verifyStatus":26,"verifyTime":26,"verifyNote":26,"languages":26,"translateLanguages":26,"viewCount":26,"url":26,"parentIds":533,"statistic":26},[],{"title":532},{"EN":506},[],{"title":535},{"EN":536},"Xuan-Hau Kieu",{"id":538,"sortIndex":283,"researcher":26,"roles":539,"affiliations":540,"properties":547},"004c570f-73ad-40d0-ac6d-ce9e538a2f9b",[],[541],{"id":501,"sortIndex":35,"affiliation":542,"properties":26},{"id":501,"createTime":26,"updateTime":26,"relativeEntities":543,"slug":26,"properties":544,"entityType":26,"verifyStatus":26,"verifyTime":26,"verifyNote":26,"languages":26,"translateLanguages":26,"viewCount":26,"url":26,"parentIds":546,"statistic":26},[],{"title":545},{"EN":506},[],{"title":548},{"EN":549},"Thi-Thanh Pham",{"id":551,"sortIndex":54,"researcher":26,"roles":552,"affiliations":553,"properties":560},"4a1d1d1f-a0d5-409e-a364-e3ba870e887b",[],[554],{"id":501,"sortIndex":35,"affiliation":555,"properties":26},{"id":501,"createTime":26,"updateTime":26,"relativeEntities":556,"slug":26,"properties":557,"entityType":26,"verifyStatus":26,"verifyTime":26,"verifyNote":26,"languages":26,"translateLanguages":26,"viewCount":26,"url":26,"parentIds":559,"statistic":26},[],{"title":558},{"EN":506},[],{"title":561},{"EN":562},"Viet-Anh Truong",{"id":564,"sortIndex":61,"researcher":26,"roles":565,"affiliations":566,"properties":573},"a9f05b9c-d745-4e9d-9fc0-dfd2df70d8c7",[],[567],{"id":271,"sortIndex":35,"affiliation":568,"properties":26},{"id":271,"createTime":26,"updateTime":26,"relativeEntities":569,"slug":26,"properties":570,"entityType":26,"verifyStatus":26,"verifyTime":26,"verifyNote":26,"languages":26,"translateLanguages":26,"viewCount":26,"url":26,"parentIds":572,"statistic":26},[],{"title":571},{"EN":276},[],{"title":574},{"EN":575},"Dinh-Thang Duong",{"id":577,"sortIndex":323,"researcher":26,"roles":578,"affiliations":579,"properties":586},"0668e388-7951-46bb-b3f7-11145e72875d",[],[580],{"id":271,"sortIndex":35,"affiliation":581,"properties":26},{"id":271,"createTime":26,"updateTime":26,"relativeEntities":582,"slug":26,"properties":583,"entityType":26,"verifyStatus":26,"verifyTime":26,"verifyNote":26,"languages":26,"translateLanguages":26,"viewCount":26,"url":26,"parentIds":585,"statistic":26},[],{"title":584},{"EN":276},[],{"title":587},{"EN":588},"Van-Duong Nguyen",{"id":590,"sortIndex":339,"researcher":26,"roles":591,"affiliations":592,"properties":599},"3e5937c6-3aa8-41f6-b99a-ca6c0bcbf3ad",[],[593],{"id":501,"sortIndex":35,"affiliation":594,"properties":26},{"id":501,"createTime":26,"updateTime":26,"relativeEntities":595,"slug":26,"properties":596,"entityType":26,"verifyStatus":26,"verifyTime":26,"verifyNote":26,"languages":26,"translateLanguages":26,"viewCount":26,"url":26,"parentIds":598,"statistic":26},[],{"title":597},{"EN":506},[],{"title":600},{"EN":601},"Huy-Dan Nguyen",{"url":26,"publisher":603,"properties":622},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":604,"slug":10,"properties":605,"entityType":24,"verifyStatus":25,"verifyTime":26,"verifyNote":27,"languages":26,"translateLanguages":26,"viewCount":28,"subjectFields":610,"manageAffiliations":611,"indexDatabases":612,"url":32,"thumbnailPath":33,"statistic":613,"gsStatistic":618,"type":68,"analyzePriority":26},[],{"country":606,"issn":607,"title":608,"gsId":609},{"VOID":13},{"VOID":15},{"EN":17,"VI":18},{"VOID":23},[],[],[],{"impactFactor":35,"impactFactorByYear":614,"i10Index":35,"i10IndexLast5Year":35,"totalPublication":38,"totalPublicationByYear":615,"totalCitation":43,"totalCitationByYear":616,"totalCitationPerPublication":48,"totalCitationPerPublicationByYear":617,"hindexLast5Year":47,"hindex":47},{"2024":37},{"2022":40,"2023":41,"2024":42},{"2022":45,"2023":46,"2024":47},{"2022":50,"2023":51,"2024":52},{"impactFactor":26,"impactFactorByYear":26,"i10Index":54,"i10IndexLast5Year":54,"totalPublication":55,"totalPublicationByYear":619,"totalCitation":59,"totalCitationByYear":620,"totalCitationPerPublication":63,"totalCitationPerPublicationByYear":621,"hindexLast5Year":61,"hindex":61},{"0":47,"2022":43,"2023":40,"2024":57,"2025":58},{"2023":61,"2024":40,"2025":62,"2026":41},{"2023":65,"2024":66,"2025":67},{"issue":623,"pages":624,"volume":626},{"VOID":172},{"VOID":625},"10-17",{"VOID":216},{"total":35,"publishYear":402,"statisticByYear":628},{},"2026-05-17T05:19:35.633+00:00",[],[632,634,635,636],{"id":26,"text":633,"url":26,"identifiers":26},"\u003Cp>[1] 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Phys., \u003C\u002Fem>vol. 101, no. 9, p.09c503, Mar. 2007, doi:\u003Ca href=\"https:\u002F\u002Fdoi.org\u002F10.1063\u002F1.2709409\" target=\"_blank\"> 10.1063\u002F1.2709409.\u003C\u002Fa>\u003C\u002Fp>",{"id":26,"text":410,"url":26,"identifiers":26},{"id":26,"text":410,"url":26,"identifiers":26},{"id":26,"text":410,"url":26,"identifiers":26},{"id":638,"createTime":639,"updateTime":640,"relativeEntities":641,"slug":642,"properties":643,"entityType":96,"verifyStatus":25,"verifyTime":658,"verifyNote":659,"languages":26,"translateLanguages":26,"viewCount":323,"primaryUrl":660,"fullTextUrl":661,"authors":662,"publicationType":119,"publisherRelationship":718,"citationCount":26,"citationInfo":26,"publishDate":743,"publishYear":205,"citationAnalyzeStatus":173,"lastCitationAnalyze":744,"indexDatabases":745,"openAccess":26,"references":26,"isForceReanalyzing":153},"5b62bc95-e25f-4bc2-b456-b67affb9a7f8","2023-09-17T10:01:19.282+00:00","2026-08-20T03:24:53.764+00:00",[],"Criteria-for-finite-time-stability-of-singular-large-scale-discrete-time-delay-systems",{"abstract":644,"title":647,"gsPaper":650,"keywords":652,"references":654,"doi":656},{"EN":645,"VI":646},"This paper concerns a problem of finite-time stability for a class of linear  singular large-scale systems with delays. Based on matrix transformations, Lyapunov function method combined with new estimation techniques, we derive sufficient conditions for solving the finite-time stability of the system. A numerical example is given to illustrate the validity and effectiveness of the theoretical results.","Bài viết này nghiên cứu bài toán ổn định hữu hạn thời gian của lớp hệ quy mô lớn rời rạc suy biến có trễ. Dựa trên các phép biến đổi ma trận, phương pháp hàm Lyapunov kết hợp với các kỹ thuật đánh giá, chúng tôi xây dựng một số điều kiện đủ cho tính ổn định hữu hạn thời gian của lớp hệ đang nghiên cứu. Một ví dụ được đề xuất để minh họa cho các kết quả đã xây dựng được.",{"EN":648,"VI":649},"Criteria for finite-time stability of singular large-scale discrete-time delay systems","Xây dựng một số điều kiện cho tính ổn định hữu hạn thời gian của lớp hệ quy mô lớn rời rạc ",{"VOID":651},"13200303815901344965",{"EN":653},"Schur’s complement lemma,finite-time stability,large-scale system,singular system",{"VOID":655},". F. Amato, R. Ambrosino, M. Ariola, C. Cosentino, G. De Tommasi, Finite-Time Stability and Control, Lecture Notes in Control and Information Sciences, Springer-Verlag London, 453 (2014).\n. L. Dai, Singular Control System, Lecture Notes in Control and Information Sciences, Berlin Springer-Verlag, (1989).\n. P. Dorato, “Short time stability in linear time-varying systems”, Proc IRE Int Convention Record, Part 4, (1961) 83-87.\n. N. H. Du, V. H. Linh, V. Mehrmann, D. D. 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Kharitonov, Time-Delay Systems: Lyapunov Functional and Matrices, Birkhauser, (2013).\n. V. L. Kharitonov, “Lyapunov-Krasovskii functionals for scalar time delay equations”, Systems & Control Letters, 51 (2002) 133-149.\n. O. M. Kwon, J. H. Park, “Decentralized guaranteed cost control for uncertain large-scale systems using delayed feedback: LMI optimization approach”, Journal of Optimization Theory and Applications, 129 (2006) 391-414.\n. T. La –inchua, P. Niamsup, Xinzhi Liu, “Finite-Time Stability of Large-Scale Systems with Interval Time-Varying Delay in Interconnection”, Complexity (2017) 1-11.\n. J. H. Park, “ Dynamic System Measure Control”, 113 (2002) 105-119.\n. V. N. Phat, N. H. Muoi, and M. V. Bulatov. “Robust finite-time stability of linear differential-algebraic delay equations”, Linear Algebra and its Applications 487 (2015) 146-157.\n. D. D. Siljak, Large-Scale Dynamic Systems: Stability and Structure, Dover Publications (2007).\n. Nguyen T. Thanh, Vu N. Phat, “Decentralized H_ {infty} control for large-scale interconnected nonlinear time-delay systems via LMI approach”, Journal of Process Control 22 (2012) 1325-1339.\n. Z. G. Wu, H. Su and P. Shi, Analysis and Synthesis of Singular Systems with Time Delays, Berlin, Springer, (2013).",{"VOID":657},"10.56764\u002Fhpu2.jos.2023.2.2.11-21","2023-09-17T10:01:19.281+00:00","168635","https:\u002F\u002Fsj.hpu2.edu.vn\u002Findex.php\u002Fjournal\u002Farticle\u002Fview\u002F195","https:\u002F\u002Fsj.hpu2.edu.vn\u002Findex.php\u002Fjournal\u002Farticle\u002Fdownload\u002F195\u002F127",[663,685,702],{"id":664,"sortIndex":35,"researcher":26,"roles":665,"affiliations":666,"properties":682},"4b63a258-b8ab-4843-a495-30761b670cab",[],[667],{"id":668,"sortIndex":35,"affiliation":669,"properties":679},"747df9e8-b604-426c-a911-68846b46b60b",{"id":668,"createTime":26,"updateTime":26,"relativeEntities":670,"slug":26,"properties":671,"entityType":26,"verifyStatus":26,"verifyTime":26,"verifyNote":26,"languages":26,"translateLanguages":26,"viewCount":26,"url":676,"parentIds":677,"statistic":26},[],{"title":672,"country":675},{"EN":673,"VI":674},"Department of Mathematics, Hanoi Pedagogical 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Mochizuki, Good formal structure for meromorphic flat connections on smooth projective surfaces, Advanced Studies Pure Mathematics 54 (2009), Algebraic Analysis and Around, pp.223–253.",{"id":26,"text":905,"url":26,"identifiers":26},"Carlos T.Simpson, Moduli of representations of the fundamental group of a smooth projective variety II, Publications math'ematiques de I.H.'E.S. 80 (1994), pp.5-79.",{"id":907,"createTime":908,"updateTime":909,"relativeEntities":910,"slug":911,"properties":912,"entityType":96,"verifyStatus":25,"verifyTime":26,"verifyNote":26,"languages":923,"translateLanguages":26,"viewCount":35,"primaryUrl":924,"fullTextUrl":925,"authors":926,"publicationType":119,"publisherRelationship":992,"citationCount":1017,"citationInfo":1018,"publishDate":743,"publishYear":205,"citationAnalyzeStatus":886,"lastCitationAnalyze":1019,"indexDatabases":1020,"openAccess":26,"references":1021,"isForceReanalyzing":153},"75761726-1ef3-4873-b104-7a93e7c5374c","2024-04-22T16:08:26.244+00:00","2026-08-20T03:24:53.654+00:00",[],"The-roles-of-intermediate-fluorophores-on-the-optical-properties-of-bottom-up-synthesized-carbon-nanodots",{"abstract":913,"title":915,"gsPaper":917,"keywords":919,"doi":921},{"EN":914},"Carbon nanodots (CNDs) are the latest nano-sized carbon materials having unique properties such as biocompatible, highly photoluminescent, and nontoxic which are suitable for diverse applications including lighting, sensing, bioimaging, and biochemical analyzing. 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