BOSHLANG‘ICH SINF O‘QUVCHILARIDA TANQIDIY FIKRLASHNI RIVOJLANTIRISHNING NAZARIY ASOSLARI
;
tadqiqotchilik, robototexnika, kasbiy ko‘nikma, tanqidiy fikrlash, mantiqiy fikrlash, axborotlarni yig‘ish, dispozisiya.Abstrak
Ushbu maqolada o‘quvchilar tadqiqotchilik va kasbiy ko‘nikmalarini tanqidiy fikrlash orqali rivojlantirish mazmuni, ta’limning inovasion texnologiyalari robototexnika, modellashtirish, konstruksiyalashtirish, dasturlashtirishni o‘rgatishda tanqidiy fikirlash qobilyatining ahamiyati va uni shakllanish jarayoni to‘g‘risida so‘z yuritilgan.
Iqtiboslar
O‘zbekiston Respublikasi Prezidentining 2019 yil 30 sentyabrdagi “Xalq ta’limi tizimidagi maktabdan tashqari ta’lim samaradorligini tubdan oshirish chora-tadbirlari to‘g‘risida”gi PQ-4467-sonli qarori
Tolipov O‘.Q. Oliy pedagogik ta’lim tizimida umummehnat va kasbiy ko‘nikma va malakalarni rivojlantirishning pedagogik texnologiyalari: Ped. fan. dokt. ... diss. – Toshkent: 2004. – 314 b.
Facione, P. A. (2000). The disposition toward critical thinking: Its character, measurement, and relationship to critical thinking skill. Informal Logic, 20(1), 61-84.
Facione, Peter A., 1990 a, Critical Thinking: A Statement of Expert Consensus for Purposes of Educational Assessment and Instruction, Research Findings and Recommendations Prepared for the Committee on Pre-College Philosophy of the American Philosophical Association, ERIC Document ED315423.
Adams, C.A. (2013), Sustainability reporting and performance management in universities: Challenges and benefits. Sustainability Accounting, Management and Policy Journal Vol 4 Iss 3, pp. 384-392
Hauser, S.M. (2000), “Education, ability, and civic engagement in the contemporary, United States. Social Sciences Results, Vol. 29 No 4, pp.556-582
Pardabaev J.E. “STEAM” - Education as an innovative approach to the development of vocational training for students” // European Journal of Research and Reflection in Educational Sciences. Vol. 8 No. 3, 2020. ISSN 2056-5852
I. B. Sapaev, B. Sapaev, S. Sadullaev, J. Sh. Abdullayev, A. V. Umarov, R. U. Siddikov, A. A. Mamasoliev and K. S. Daliev. Influence of the parameters to transition capacitance at nCdS-pSi heterostructure, E3S Web of Conferences 413, 04008 (2023) https://doi.org/10.1051/e3sconf/202341304008
A. Umarov, U. Abdurakhmanov, Ya. Raximova, M. Karaboeva, D. Saidqulov and F. Boymuratov. Study of the electro and thermophysical properties of composite ceramic materials containing nickel nanoparticles, E3S Web of Conferences 410, 02060 (2023), https://doi.org/10.1051/e3sconf/202341002060
A. V. Umarov, H. Kuchkarov and M. Kurbanov. Study and analysis of the IR spectra of a composition based on polyamide filled with iron nanoparticles. E3S Web of Conferences 401, 05085 (2023) https://doi.org/10.1051/e3sconf/202340105085
O. G. Abdullaev, Yu. U. Toshmirzaev, T. S. Mirzaev and A. V. Umarov. Mathematical simulation of process of curing auto-filler based on unsaturated polyester resin. E3S Web of Conferences 401, 05038 (2023), https://doi.org/10.1051/e3sconf/202340105038
A. V. Umarov, D. K. Djumabayev, B. A. Mirsalikhov and G. A. Kasimova. Manufacturing technology of photovoltaic devices based on layered compositions and their properties. E3S Web of Conferences 401, 03044 (2023), https://doi.org/10.1051/e3sconf/202340103044
A. V. Umarov, B. A. Mirsalixov, D. K. Djumabayev and F. X. Xusnuddinov. Development and research of layered composite materials based on Cu2ZnSnS(Se)4 for solar cells. E3S Web of Conferences 401, 05082 (2023), https://doi.org/10.1051/e3sconf/202340105082
A. V. Umarov, M. Kurbanov, F. Sh. Xusniddinov, B. S. Abdullaeva and M. Y. Mansurova. Study of thermophysical properties of polyamide-based nanocomposites filled with iron nanoparticles, E3S Web of Conferences 401, 05037 (2023), https://doi.org/10.1051/e3sconf/202340105037
O. G. Abdullaev, A. V. Umarov, N. Abdukelimu, H. A. Aisa and B. S. Abdullaeva. Investigation of some physico-chemical properties of Elaeagnus L. GUM. E3S Web of Conferences 401, 03032 (2023), https://doi.org/10.1051/e3sconf/202340103032
A. V. Umarov, N. Makhmudov, Sh. Eshkuvvatov, B. S. Abdullaeva and G. A. Kasimova. Analysis of technology methods and study of properties of high-temperature superconducting ceramics based on YTTIRIUM. E3S Web of Conferences 401, 05040 (2023), https://doi.org/10.1051/e3sconf/202340105040
Abdurakhmanov. U, Umarov. A.V, Raximova. Y.M, Saidkulov, D., Matyakubov, B.M. An Investigation of the Electrophysical Properties of Composite Ceramic Materials Containing Nickel Nanoparticles. Physical Chemistry Research, 2023, 11(2), страницы 231–239, https://doi.org/10.22036/pcr.2022.335151.2063
I. Sapaev, B. Sapaev, D. Abdullaev, J. Abdullayev, A. Umarov, R. Siddikov, A. Mamasoliev and K. Daliev. Influence of the parameters to transition capacitance at NCDS-PSI heterostructure, E3S Web of Conferences 383, 04022 (2023), https://doi.org/10.1051/e3sconf/202338304022
Umarov. A.V, Current status and trends in the physicochemical properties of nanomaterials and nanotechnology researches, E3S Web of Conferences 410, 02060 (2023), https://doi.org/10.1051/e3sconf/202341002060
Umarov. A, Kurbonov. M, Kuchkarov. K, Kasimova. G, Electrical and Mechanical Properties of a Polyamide-6-Based Composition Filled with Iron Nanoparticles, AIP Conference Proceedings, 2022, 2432, 020012, https://doi.org/10.1063/5.0089975
Sapaev. I.B, Sapaev. B, Umarov. A.V, Kamalova. D.I, Kasimova. G.A, Electrophysical Properties of Layout Composition of n+CdsS-nSdS-nSi Structure, AIP Conference Proceedings, 2022, 2432, 020007, https://doi.org/10.1063/5.0089905
Sapaev. I.B, Sapaev. B, Umarov. A.V, Yuldashev. Q.A, Imamkulov. N, Chemical Element Distribution of Cadmium Sulfide Obtained on Silicon Substrate, AIP Conference Proceedings, 2022, 2432, 050025, https://doi.org/10.1063/5.0089906
Negmatova. K, Daminov. A, Umarov. A, Abed. N, Synthesis of diamonds in the C - Mn - Ni - (H) system and the diamond-shaped mechanism, E3S Web of Conferences, 2021, 264, 05003, https://doi.org/10.1051/e3sconf/202126405003
Umarov. A, Kamolova. D, Kurbonov. M, Electron-paramagnetic resonance and infrared spectroscopic research of the structure of a southfield Polyvinylidene difluoride near the percolation threshold, E3S Web of Conferences, 2021, 264, 05009, https://doi.org/10.1051/e3sconf/202126405009
Umarov. A, Kamalova. D, Investigation of ultrafine expansion in Epr studies of a polymer composition based on polystyrene, AIP Conference Proceedings, 2020, 2308, 030019, https://doi.org/10.1063/5.0033333
Umarov. A.V, Abdurakhmanov. U, Khamzayev. H.E, Kattaev. N.T, Tozhiboev. A.G, Synthesis and Structural Investigations of Metal-Containing Nanocomposites Based on Polyethylene, Zeitschrift fur Naturforschung - Section A Journal of Physical Sciences, 2019, 74(3), pp 183–187, https://doi.org/10.1515/zna-2018-0332
Zubitskij. B.D, D'yakov. S.N, Umarov. V.A, Simonov. P.S, Ekgauz. V.I, Cleaning the coke oven gas from tar and naphthalene, Koks i Khimiya, 2002, (3), pp 27–30.
Umarov. A.V, Askarov. M.A, Makhmudov. R.H, Kasimova. G.A, Investigation of the electroconductivity of resistive compositions based on glass and cadmium oxide with alternating current, Turkish Journal of Physics, 1997, 21(2), pp 200–205.
Margrupov. M.A, Umarov. A.V, Saidkhodzhaeva. K.Sh, Kasimov. G.A, Study of the density of filler surface layer modified by polyacrylonitrile heat treated, Plasticheskie Massy: Sintez Svojstva Pererabotka Primenenie, 1995, (2), pp 26–27.
Magrupov. M.A, Umarov. A.V, Khamidov. Sh.R, Makhmudov. R.Kh, About the interacting of glass-binder and current-conducting phase in resistive compositions, Elektrichestvo, 1994, (6), pp 70–72.
Magrupov. M.A, Umarov. A.V, Khamidov. Sh.R, Makhmudov. R.Kh, Electrical conductivity of a sitall, Glass and Ceramics, 1992, 49(7), pp 313–314.
Abdurakhmanov. U, Umarov. A.V, Zainutdinov. A.Kh, Magrupov. M.A, Electrical conductivity of semiconductor pyropolymers in an alternating electrical field, Polymer Science U.S.S.R., 1989, 31(6), pp 1323–1330, https://doi.org/10.1016/0032-3950(89)90160-3
Umarov. A.V, Abdurakhmanov. U, Faiziev. A.R, Magrupov. M.A, Compact independent fixed-pressure chamber for powders, instruments and experimental techniques New York, 1985, 28(6 pt 2), pp 1470–1471.