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Journal articles on the topic 'Kristallash'

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1

Xolbay, Rustamovich Xaydaraliyev, Uralbayevich Raxmanov Ilxom, and Umidovich Abdinazarov Farrux. "MOLIBDEN AJRATIB OLISH USULLARINI O'RGANISH." SCHOLAR 1, no. 11 (2023): 15–19. https://doi.org/10.5281/zenodo.7886269.

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Ushbu maqolada molibdenni ajratib olish zaruriyati, rudadan molibden ajratib olish usullari, turli rudalar tarkibidagi molibdenning miqdori, molibdenni rudadan ajratib olish bosqichlari va molibden ishlab chiqarish jarayonlari haqida so‘z yuritilgan.
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Avanesyan, S. M., and N. I. Zheludev. "Fonony v kristallakh." Uspekhi Fizicheskih Nauk 146, no. 8 (1985): 725. http://dx.doi.org/10.3367/ufnr.0146.198508n.0725.

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3

Muydinova, Madina Alisherovna, Shodiya Anvarjon qizi Rasulova, and Dilnura Dilmurodjon qizi Imyaminova. "SUYUQ KRISTALLAR." GOLDEN BRAIN 1, no. 33 (2023): 63–66. https://doi.org/10.5281/zenodo.10265801.

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<i>Suyuq kristallar&nbsp;bu suyuqlik va kristallarning xususiyatlariga ega bo'lgan moddaning holati. Bu moddalar ma'lum yo'nalishlarda kristall kabi tartiblangan molekulalardan iborat, lekin boshqa yo'nalishlarda suyuqlik kabi oqishi mumkin. Suyuq kristallar turli xil ilovalarga ega, jumladan televizorlar va smartfonlar kabi elektron qurilmalar uchun displeylarda.</i>
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4

Qurbonova, Ra'noxon Ilxomiddin qizi, and Elyor Mamasoat o'g'li Abdunazarov. "ERITMALARDA KRISTALLANISH JARAYONI." JOURNAL OF UNIVERSAL SCIENCE RESEARCH 1, no. 1 (2023): 278–84. https://doi.org/10.5281/zenodo.7600057.

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Maqolada oziq-ovqat mahsulotlaridagi kimyoviy moddalarning eritmada kristallanish jarayoni so&rsquo;nggi ilmiy adabiyotlar yordamida tahlil qilingan. Jumladan, kristallanish jarayonining fizik mohiyati va kimyoviy yo&rsquo;l bilan sodir bo&rsquo;lishi rasm, jadval va fikrlar bilan tasdiqlangan. Kristallanish jarayonining bosqichlari misollar bilan tushuntirilgan.
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5

Andreev, A. V. "Mnogovolnovaya difraktsiya rentgenovskikh luchei v kristallakh." Uspekhi Fizicheskih Nauk 148, no. 3 (1986): 552. http://dx.doi.org/10.3367/ufnr.0148.198603n.0552.

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6

Khomskii, D. I. "Dinamicheskii effekt Yana–Tellera v kristallakh." Uspekhi Fizicheskih Nauk 150, no. 11 (1986): 483. http://dx.doi.org/10.3367/ufnr.0150.198611q.0483.

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7

Timofeev, V. E., and D. N. Aristov. "Goldstounovskaya moda skirmionnogo kristalla." Письма в Журнал экспериментальной и теоретической физики 118, no. 5-6 (9) (2023): 455–61. http://dx.doi.org/10.31857/s1234567823180118.

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8

Timofeev, V. E., and D. N. Aristov. "Dinamicheskaya vospriimchivost' skirmionnogo kristalla." Письма в Журнал экспериментальной и теоретической физики 117, no. 9-10 (5) (2023): 684–88. http://dx.doi.org/10.31857/s1234567823090070.

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9

Maxmudov, Ravshan Umarovich, Xayatulla Isaqov, Nodira Xayatullayevna Abduraximova, Sultan Usmanov, and Baxrom Xayrillayevich Kucharov. "TRIMETILOLTIOMOCHEVINA - MIS ASETAT – SUVNI 25 VA 50 °C HARORATLI SISTEMADA ERUVCHANLIGI." Журнал химии товаров и народной медицины 1, no. 1 (2022): 91–107. http://dx.doi.org/10.55475/jcgtm/vol1.iss1.2022.15.

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HOH2CNCSN(CH2OH)2-Сu(СН3СОО)2-H2O tizimida 25 va 50°C haroratlarda eruvchanligi izotermik usul bilan o‘rganildi. 25 va 50°C da eruvchanlikning izotermik diagrammasi tuzildi, unda yangi birikmaning HOH2CNCSN(CH2OH)2, Сu(СН3СОО)2 va HOH2CNCSN(CH2OH)2•Сu(СН3СОО)2•2H2O tarkibidagi birikmaning kristallanish maydonlari tuzildi chegaralangan. Murakkab kutilgan kristallanish hududidan ajratilgan va kimyoviy va fizik-kimyoviy tahlil usullari bilan aniqlangan.
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10

Al'shits, V. I., M. V. Koldaeva, E. A. Petrzhik, and E. V. Darinskaya. "SPEKTRY REZONANSNOY MAGNITOPLASTIChNOSTI V KRISTALLAKh NaCl(Ca + Ni)." Žurnal èksperimentalʹnoj i teoretičeskoj fiziki 166, no. 5 (2024): 696–702. http://dx.doi.org/10.31857/s0044451024110129.

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11

Muhammadjonov, Nuriddin Muhammadyahyo o`g`li. "KRISTALLAR JISMLAR ANIQLANISH TARIXIGA TAHLILI." EURASIAN JOURNAL OF MEDICAL AND NATURAL SCIENCES 2, no. 1 (2022): 17–19. https://doi.org/10.5281/zenodo.5862767.

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12

Borodacheva, Ekaterina, Nikolay Mukhin, and Ulrike Steinmann. "Phononic Crystal Based Approach for Heterogeneous Liquids Manipulation and Detection." tm - Technisches Messen 89, s1 (2022): 89–94. http://dx.doi.org/10.1515/teme-2022-0062.

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Zusammenfassung Es wird ein physikalisches und methodisches Konzept vorgeschlagen, das auf der Anwendung eines phononischen Kristalls zur Manipulation und Detektion heterogener Flüssigkeit in einem Kanal basiert. Der phononische Kristall wurde aus einem Edelstahlblock mit einer periodischen Struktur aus zylindrischen Löchern hergestellt. Ein Defekt der periodischen Struktur in Form eines flüssigkeitsgefüllten Kanals wurde in die Mitte des phononischen Kristalls gelegt. Die akustische Defekteigenmode wurde auf den Bandlückenfrequenzbereich des phononischen Kristalls abgestimmt. Eine wandernde a
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13

Sarychev, M. N., I. V. Zhevstovskikh, Yu V. Korostelin, V. T. Surikov, N. S. Averkiev, and V. V. Gudkov. "Magnitouprugost' yan-tellerovskoy podsistemy v kristallakh tipa AIIBVI, dopirovannykh khromom." Журнал экспериментальной и теоретической физики 163, no. 1 (2023): 96–105. http://dx.doi.org/10.31857/s0044451023010121.

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The influence of an external magnetic field on the complex elastic moduli of crystals with a sphalerite or zinc blende (ZnSe) and wurtzite (CdSe) structure lightly doped by Cr2+ ions has been investigated. Measurements have been performed in the frequency interval 26–32 MHz at 1.4 K. In II–VI crystals, bivalent chromium cations are triply orbital-degenerate in the ground state and, being in a tetrahedral environment, produce Jahn–Teller complexes. These complexes are described in terms of the T ⊗ (e + t2)-problem and exhibit the adiabatic potential energy surface with the global minima of tetr
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14

Pikin, S. A., and M. A. Osipov. "Ferroelectricity in liquid crystals." Uspekhi Fizicheskih Nauk 152, no. 8 (1987): 696. http://dx.doi.org/10.3367/ufnr.0152.198708l.0696.

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15

Turg'unova, Sabohat Ilhomjon qizi. "L - KARNITIN BILAN GLITSIRRIZIN KISLOTANING SUPRAMOLEKULYAR KOMPLEKSI KRISTALLARI." Zamonaviy dunyoda innovatsion tadqiqotlar 2, no. 17 (2023): 24–26. https://doi.org/10.5281/zenodo.7956182.

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Respublikamizda so&lsquo;ngi yillarda dorivor o&lsquo;simliklar tabiiy resurslardan oqilona foydalanish, ularni muhofaza qilish, yetishtiriladigan plantatsiyalar tashkil etish va qayta ishlash borasida izchil islohatlar amalga oshirilmoqda. &nbsp;
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Ikromov, Nurillo Avazbekovic Erkinjonov Abdulhamid Baxtiyorjon o'g'li Ikromov Abdukarim Nodirbek o'g'li Zaynobidinov Muhammadaziz Inomjon o'g'li Mamasodikov Dilshodbek Soibjon o'g'li Mamirbekov Oybek Ulug'bek o'g'li. "KRISTALLANISH VA QOTISHMALARNING QOTISH JARAYONIDA KOMPONENTLARNING O'ZARO TA'SIRI." THEORETICAL ASPECTS IN THE FORMATION OF PEDAGOGICAL SCIENCES 1, no. 6 (2022): 39–46. https://doi.org/10.5281/zenodo.7293995.

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Mashinasozlikda sof metallardan foydalanish nihoyatda cheklangan. Hamma vaqt ham, ular samarali va kerakli xossalarga ega bo&lsquo;lavermaydi. Metallar hamma vaqt ham bir yo&#39;la bir necha kerakli xossaga, masalan, ham qattiqlikka, ham plastiklikka ega bo&lsquo;lmaydi. Ularning elektr xossalari temperatura o&lsquo;zgarishiga bog&lsquo;liq, issiqlikdan kengayish koeffitsiyenti esa nihoyatda yuqori. Toza metallardan farqli ravishda istalgan, oldindan belgilangan xossali qotishmalar olish mumkin [1,2,3].
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17

Tishchenko, G. N. "Structure data of organic crystals." Uspekhi Fizicheskih Nauk 154, no. 2 (1988): 345. http://dx.doi.org/10.3367/ufnr.0154.198802o.0345.

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18

Shikin, V. B., and Yu V. Shikina. "Charged dislocations in semiconductor crystals." Uspekhi Fizicheskih Nauk 165, no. 8 (1995): 887. http://dx.doi.org/10.3367/ufnr.0165.199508b.0887.

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Sosin, Sergei S., Lyudmila A. Prozorova, and Aleksandr I. Smirnov. "New magnetic states in crystals." Uspekhi Fizicheskih Nauk 175, no. 1 (2005): 92. http://dx.doi.org/10.3367/ufnr.0175.200501e.0092.

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20

Vinogradov, Aleksei P., A. V. Dorofeenko, A. M. Merzlikin, and A. A. Lisyansky. "Surface states in photonic crystals." Uspekhi Fizicheskih Nauk 180, no. 3 (2010): 249. http://dx.doi.org/10.3367/ufnr.0180.201003b.0249.

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21

Timofeev, V. E., Yu V. Baramygina, and D. N. Aristov. "Topologicheskiy perekhod v spektre magnonov skirmionnogo kristalla." Письма в Журнал экспериментальной и теоретической физики 118, no. 11-12 (12) (2023): 908–14. http://dx.doi.org/10.31857/s1234567823240072.

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22

Novikov, I. A., M. A. Kir'yanov, A. Yu Frolov, V. V. Popov, T. V. Dolgova, and A. A. Fedyanin. "Prostranstvenno neodnorodnoe sverkhbystroe razmagnichivanie nikelevogo magnitoplazmonnogo kristalla." Письма в Журнал экспериментальной и теоретической физики 118, no. 7-8 (10) (2023): 584–89. http://dx.doi.org/10.31857/s1234567823200065.

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Frolovtsev, D. N., and S. A. Magnitskiy. "SPONTANNOE PARAMETRIChESKOE RASSEYaNIE V DVUOSNYKh NELINEYNO-OPTIChESKIKh KRISTALLAKh: OSOBENNOSTI SOSTOYaNIYa POLYaRIZATsII IZLUChENIYa." Журнал экспериментальной и теоретической физики 165, no. 1 (2024): 32–42. http://dx.doi.org/10.31857/s0044451024010048.

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24

Sushchinskii, M. M. "Resonant inelastic light scattering in crystals." Uspekhi Fizicheskih Nauk 154, no. 3 (1988): 353. http://dx.doi.org/10.3367/ufnr.0154.198803a.0353.

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Abov, Yurii G. "Coherent processes in nuclei and crystals." Uspekhi Fizicheskih Nauk 166, no. 9 (1996): 949. http://dx.doi.org/10.3367/ufnr.0166.199609d.0949.

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Gorbatsevich, Aleksandr A., Oleg E. Omel'yanovskii, and Viktor I. Tsebro. "Toroidal ordering in crystals and nanostructures." Uspekhi Fizicheskih Nauk 179, no. 8 (2009): 887. http://dx.doi.org/10.3367/ufnr.0179.200908h.0887.

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Yablunovskiy, A., E. P. Chukalina, L. Kh Yin, and M. N. Popova. "Spektroskopiya vysokogo razresheniya kristalla ErCrO3: novyy fazovyy perekhod?" Письма в Журнал экспериментальной и теоретической физики 118, no. 1-2 (7) (2023): 82–89. http://dx.doi.org/10.31857/s1234567823140033.

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Delev, V. A., O. A. Skaldin, and Yu I. Timirov. "Rasshcheplenie solitonov v elektrokonvektivnoy strukture nematicheskogo zhidkogo kristalla." Письма в Журнал экспериментальной и теоретической физики 119, no. 1-2 (2024): 59–65. http://dx.doi.org/10.31857/s1234567824010117.

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Vysotskii, V. I., and R. N. Kuz'min. "Channeling of neutral particles and photons in crystals." Uspekhi Fizicheskih Nauk 162, no. 9 (1992): 1. http://dx.doi.org/10.3367/ufnr.0162.199209a.0001.

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Morozov, Aleksandr I., and Aleksandr S. Sigov. "Muon spin relaxation in crystals with defects." Uspekhi Fizicheskih Nauk 163, no. 9 (1993): 75. http://dx.doi.org/10.3367/ufnr.0163.199309c.0075.

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Val'kov, A. Yu, Vadim P. Romanov, and A. N. Shalaginov. "Fluctuations and light scattering in liquid crystals." Uspekhi Fizicheskih Nauk 164, no. 2 (1994): 149. http://dx.doi.org/10.3367/ufnr.0164.199402b.0149.

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Zhernov, Arkadii P., and Alexander V. Inyushkin. "Kinetic coefficients in isotopically disordered crystals." Uspekhi Fizicheskih Nauk 172, no. 5 (2002): 573. http://dx.doi.org/10.3367/ufnr.0172.200205c.0573.

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Vinogradov, Evgenii A., B. N. Mavrin, N. N. Novikova, and V. A. Yakovlev. "Inverted optical phonons in ion-covalent crystals." Uspekhi Fizicheskih Nauk 179, no. 3 (2009): 313. http://dx.doi.org/10.3367/ufnr.0179.200903l.0313.

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Dolganov, P. V., N. A. Spiridenko, V. K. Dolganov, E. I. Kats, and K. D. Baklanova. "Kaskadnoe obrazovanie topologicheskikh defektov i satellitnykh kapel' pri dinamicheskoy kapillyarnoy neustoychivosti v zhidkikh kristallakh." Письма в Журнал экспериментальной и теоретической физики 118, no. 1-2 (7) (2023): 118–24. http://dx.doi.org/10.31857/s1234567823140094.

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35

Golovenchits, E. I., V. A. Sanina, and G. A. Smolenskii. "Electric-dipolar glass in crystals with Jahn-Teller ions." Uspekhi Fizicheskih Nauk 146, no. 6 (1985): 349. http://dx.doi.org/10.3367/ufnr.0146.198506j.0349.

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Arakelyan, S. M. "Optical bistability, multistability, and instabilities in liquid crystals." Uspekhi Fizicheskih Nauk 153, no. 12 (1987): 579. http://dx.doi.org/10.3367/ufnr.0153.198712b.0579.

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37

Kholopov, Evgenii V. "Convergence problems of Coulomb and multipole sums in crystals." Uspekhi Fizicheskih Nauk 174, no. 10 (2004): 1033. http://dx.doi.org/10.3367/ufnr.0174.200410a.1033.

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38

Sh Mustafayev, T., F. R Axmedjanov, and O. I Eshniyozov. "KVARS KRISTALLARIDA AKUSTIK TO‘LQINLARNING SO‘NISH ANIZOTROPIYASI." 2022-yil, 3-son (133/1) ANIQ FANLAR SERIYASI 3, no. 133/1 (2022): 1–10. http://dx.doi.org/10.59251/2181-1296.v3.1331.703.

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Akustik to‘lqinlarning so‘nish anizotropiyasi kvars kristallarida 0,4 dan 1,6 GGs gacha bo‘lgan chastota diapazonida Bregg yorug‘lik diffraksiyasi usuli bilan o‘rganilgan. Natijalar akustik so‘nish sirtlarini qurish uchun ishlatilishi mumkin bo‘lgan ushbu kristallar uchun haqiqiy va xayoliy elastik konstantalarni aniqlash uchun ishlatilgan. Bu ko‘rsatilgan kvars kristalli akustik to‘lqinlarning so‘nish koeffitsientining nisbatan yuqori anizotropiyasi bilan tavsiflanadi. Kuzatilgan effekt samarali Gryunayzen konstantasining to‘lqin vektori yo‘nalishiga kuchli bog‘liqligi bilan izohlanadi.
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Shukrullayev, Javohir Oybek o'g'li. "GIPS TOSHINING DASTLABKI MEXANIK KIMYOVIY FAOLLASHUVINING OS-KALSIY SULFAT YARIMGIDRATINING FIZIK-TEXNIK XUSUSIYATLARIGA TA'SIRINI O'RGANISH." « Zamonaviy dunyoda tabiiy fanlar: Nazariy va amaliy izlanishlar» nomli ilmiy, masofaviy, onlayn konferensiyasi 1, no. 24 (2022): 100–102. https://doi.org/10.5281/zenodo.7218362.

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Ushbu ishning kalsiy sulfat digitratidan hosil bo&#39;lgan ok-gemigidrat kristallarining shakli gidrotermik tozalash amalga oshiriladigan muhitga bog&#39;liqligi ko&#39;rsatilgan. Gips toshining tarkibiga organik kislotalarning kiritilishi yanada muntazam va izometrik shakldagi os-gemigidrat kristallarini olish imkonini berishi ko&#39;rsatildi. Shunga asoslanib, biz gips toshining dastlabki kimyoviy faollashuvi os-gemigidratning fizik-texnik xususiyatlariga, qayta kristallanish jarayoni va tezligiga qanday ta&#39;sir qilishini kuzatish vazifasini qo&#39;ydik.
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Emel'yantsev, P. S., N. I. Pyshkov, and S. E. Svyakhovskiy. "Postroenie struktury odnomernogo fotonnogo kristalla po zadannomu spektru koeffitsienta otrazheniya." Письма в Журнал экспериментальной и теоретической физики 117, no. 11-12 (6) (2023): 826–31. http://dx.doi.org/10.31857/s1234567823110058.

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Ulrich, Joachim, Silke Niehörster, and Torsten Gehrmann. "Habitusänderung eines organischen Kristalls auf der Grundlage seiner funktionellen Gruppen." Chemie Ingenieur Technik 67, no. 10 (1995): 1351–55. http://dx.doi.org/10.1002/cite.330671021.

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Xo'jakulov, Amirjon Murodovich, та Najmiddin Abduqodirovich Boymurodov. "OʻZBEKISTONDA VOLFARAM MINERAL XOM ASHYO BAZASI VA UNING ASOSIY MUAMMOLARI". "Sanoatda raqamli texnologiyalar" ilmiy-texnik jurnal 2, № 1 (2024): 40–45. https://doi.org/10.5281/zenodo.10726243.

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<em>Bu maqola O&lsquo;zbekıston hududida joylashgan va hozirgi kunda faoliyat olib borayotgan volfram konlarining geologik joylashuvi, relyefi, mineralogik umumlashtirilgan tarkibi haqıda asosiy ma&rsquo;lumotlar berilgan. Ushbu maqolada volframning eruvchan shakllari va sheelit va volframitning kristallanish sharoitlari, shuningdek ularni ishlab chiqarishning asosiy jihatlari tabiatda uchraydigan volfram rudasi turlari va uni boyitish jarayoni texnologiyasiga ilmiy yondashuvi tahlil qilingan va o&lsquo;rganilgan. Volframitni boyitish jarayonida odatda flotatsiya va gravitatsion boyitishning k
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43

Kolontsova, E. V. "Radiation-induced states in crystals with ionic-covalent bonds." Uspekhi Fizicheskih Nauk 151, no. 1 (1987): 149. http://dx.doi.org/10.3367/ufnr.0151.198701g.0149.

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44

Tagantsev, A. K. "Pyroelectric, piezoelectric, flexoelectric, and thermal polarization effects in ionic crystals." Uspekhi Fizicheskih Nauk 152, no. 7 (1987): 423. http://dx.doi.org/10.3367/ufnr.0152.198707c.0423.

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45

Kurik, M. V., and O. D. Lavrentovich. "Defects in liquid crystals: homotopy theory and experimental studies." Uspekhi Fizicheskih Nauk 154, no. 3 (1988): 381. http://dx.doi.org/10.3367/ufnr.0154.198803b.0381.

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Stepanov, Alexander V., and Yurii M. Tsipenyuk. "Semiclassical approach to nuclear gamma resonance in crystals." Uspekhi Fizicheskih Nauk 170, no. 1 (2000): 83. http://dx.doi.org/10.3367/ufnr.0170.200001e.0083.

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Kvyatkovskii, O. E., and Evgenii G. Maksimov. "Microscopic theory of the lattice dynamics and the nature of the ferroelectric instability in crystals." Uspekhi Fizicheskih Nauk 154, no. 1 (1988): 3. http://dx.doi.org/10.3367/ufnr.0154.198801a.0003.

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Akhiezer, A. I., N. F. Shul'ga, V. I. Truten', A. A. Grinenko, and V. V. Syshchenko. "Dynamics of high-energy charged particles in straight and bent crystals." Uspekhi Fizicheskih Nauk 165, no. 10 (1995): 1165. http://dx.doi.org/10.3367/ufnr.0165.199510c.1165.

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Vugmeister, B. E., and M. D. Glinchuk. "Cooperative phenomena in crystals containing off-center ions—dipole glass and ferroelectricity." Uspekhi Fizicheskih Nauk 146, no. 7 (1985): 459. http://dx.doi.org/10.3367/ufnr.0146.198507c.0459.

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Baryshevskii, V. G., and V. V. Tikhomirov. "Synchrotron-type radiation processes in crystals and polarization phenomena accompanying them." Uspekhi Fizicheskih Nauk 159, no. 11 (1989): 529. http://dx.doi.org/10.3367/ufnr.0159.198911d.0529.

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