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Matematik Doktora Programı

Doktora programına, Matematik alanında bir yüksek lisans derecesine sahip 
öğrenciler başvurabilir. Programdaki araştırma konuları, cebir, yaklaşım teorisi, diferansiyel denklemler, 
fonksiyonel analiz, geometri, sayılar teorisi, operatör teori, spektral teori, saçılma teorisi ve toplanabilme 
teorisi biçiminde sıralanabilir. Programa başvurmak için, adayların geçerli Yabancı Dil Sınavı’ndan (YDS) minimum 55 
puan (veya YDS’ye denk olarak kabul edilen diğer sınavlardan, bu puana karşılık gelen puan) ve Akademik 
Personel ve Lisansüstü Eğitim Sınavı’ndan (ALES) minimum 55 almaları beklenmektedir. Doktora programına 
başvuran adaylar, lisans ve yüksek lisans başarısı, dil puanı, mülakat, bilim sınavı ve ALES puanları göz önüne 
alınarak programa kabul edilir. Programa kabul edilen öğrenciler, toplamda 21 kredi olan 7 dersi başarıyla 
geçtikten ve bir tane doktora semineri verdikten sonra doktora yeterlik sınavına başvurabilir ve bu sınavı 
geçtikten sonra doktora tez çalışmalarına başlayabilir.
Her öğrenci, bölümdeki öğretim elemanlarının 
danışmanlığı gözetiminde çalışır ve bölümde düzenlenen bölüm seminerlerine katılabilir.
Program dili 
“Türkçe” dir.

Son İki Yılda Uluslararası Dergilerde Yayınlanan Makaleler

2025
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2024
38. Demirbilek, U.; Nadeem, M.; çelik, F.; Bulut, H.; şenol, M. Generalized extended (2+1)-dimensional Kadomtsev-Petviashvili equation in fluid dynamics: analytical solutions, sensitivity and stability analysis. NONLINEAR DYNAMICS, 2024, 112, 1-16.
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31. Batool, F.; Suleman, M.; Demirbilek, U.; Rezazadeh, H.; Khedher, K.; Alsulamy, S.; Ahmad, H. Studying the impacts of M-fractional and beta derivatives on the nonlinear fractional model. OPTICAL AND QUANTUM ELECTRONICS, 2024, 56, 164-.
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28. Bayındır, H.; Değer, U. A note on approximation by some product means in variable exponent Lebesgue spaces. MAEJO INTERNATIONAL JOURNAL OF SCIENCE AND TECHNOLOGY, 2024, 18, 37-45.
27. Tariq, H.; Ashraf, H.; Rezazadeh, H.; Demirbilek, U. Travelling wave solutions of nonlinear conformable Bogoyavlenskii equations via two powerful analytical approaches. APPLIED MATHEMATICS-A JOURNAL OF CHINESE UNIVERSITIES, 2024, 39, 502-518.
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26. Yılmaz, E.; Aydın, E.; Göktaş, S. Solution of Dirac dynamic system by Laplace transform on time scales in quantum physics. FILOMAT, 2024, 38, 7719-7728.
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25. Tunç, T.; Erdem, A. Korovkin-type theorems via some modes of convergence. FILOMAT, 2024, 38, 8-.
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22. çuvalcıoğlu, G.; Taciroğlu, M.; Bal, A. A new method for CBR prediction using fuzzy set theory. CONSTRUCTION AND BUILDING MATERIALS, 2024, 447, -.
10.1016/j.conbuildmat.2024.138046
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20. Mabrouk, S.; Rezazadeh, .; Ahmad, H.; Rashed, .; Demirbilek, U.; Gepreel, K. Implementation of optical soliton behavior of the space–time conformable fractional Vakhnenko–Parkes equation and its modified model. OPTICAL AND QUANTUM ELECTRONICS, 2024, 56, -.
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19. şenol, M.; Gençyiğt, M.; Demirbilek, U.; Az-zo’bi, E. Sensitivity and wave propagation analysis of the time-fractional (3+1)-dimensional shallow water waves model. ZEITSCHRIFT FÜR ANGEWANDTE MATHEMATIK UND PHYSIK, 2024, 75, -.
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2023
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14. Ravi, V.; Chidambaram, N.; çolakoğlu havare, .; Ahmed, H.; Jaganathan, S.; Jaganathan, J. QSPR Study and Distance-Based New Topological Descriptors of Some Drugs Used in the COVID-19 Treatment. JOURNAL OF MATHEMATICS, 2023, 2023, 1-15.
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4. Yılmazer, M.; Yılmaz, E.; Göktaş, S.; Et, M. Multiplicative Laplace transform in q− calculus. FILOMAT, 2023, 37, 5859-5872.
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3. Yılmaz, E.; Gülşen, T.; Göktaş, S. Reconstruction of Green’s function for multiplicative Sturm-Liouville problem. FILOMAT, 2023, 37, 761-773.
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1. Dişkaya, O.; Menken, H. Compositions of positive integers with 2s and 3s. DEMONSTRATIO MATHEMATICA, 2023, 56, -.
10.1515/dema-2022-0227