Exploring quantum mechanics mathematical foundations through theoretical model development
Anjali Shrivastavanjali.shrivastav@pccoepune.orgDepartment of Electronics and TelecommunicationPimpri Chinchwad College of EngineeringPune, Maharashtra, 411044, IndiaView full profile → , Shashikala Gurpurdirector@symlaw.ac.inSymbiosis Law School Pune (SLS-P)Symbiosis Centre for Advanced Legal Studies and Research (SCALSAR), Symbiosis International (Deemed University)Pune, Maharashtra, 411014, IndiaView full profile → , Tanveer Ahmad Wanitanveer.ahmad@niu.edu.inDepartment of PhysicsNoida International UniversityGreater Noida, Uttar Pradesh, 203201, IndiaView full profile → , *Avinash SomatkarCorresponding authoravinash.somatkar@vit.eduDepartment of Mechanical EngineeringVishwakarma Institute of TechnologyPune, Maharashtra, 411037, IndiaView full profile → , Ganesh Jorvekarkbphodcm@sanjivani.org.inDepartment of Computer TechnologySanjivani K.B.P. PolytechnicKopargaon, Maharashtra, 423603, IndiaView full profile → , Sardor Sabirovsabirov_sardor@mamunedu.uzDepartment of General Professional SciencesMamun UniversityKhiva, 220900, UzbekistanView full profile →
* Corresponding author · click or hover a name for details
- Received:
- 01 Apr 2025
- Published Online:
- 18 Mar 2026
- Article type:
- Research Article
- Language:
- EN
- Article no.:
- JIM-2491
- Pages:
- 567–574
Abstract
Keywords
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References
[1] U. J. Mohrhoff, “Niels Bohr, objectivity, and the irreversibility of measurements,” Quantum Studies: Mathematics and Foundations, vol. 7, pp. 373–382 (2020).
[2] H. Capellmann, “Space-time in quantum theory,” Foundations of Physics, vol. 51, pp. 44 (2021).
[3] G. Mussardo, Quantum. Erwin’s Version, in The ABC’s of Science, Cham, Switzerland: Springer, pp. 159–167 (2020).
[4] A. Drago, “Dirac’s book The Principles of Quantum Mechanics as an alternative way of organizing a theory,” Foundations of Science, vol. 28, pp. 551–574 (2023).
[5] P. Chiranjeevi, T. Poojitha, R. N. Hemanth Kumar, A. B. Sameer, and B. Sai Dharma Teja, “CodeMate: A coding chatbot using generative AI,” International Journal for Interdisciplinary Sciences and Engineering Applications (IJISEA), vol. 6, no. 2, pp. 60–65 (2025).
[6] D. C. Chang, “Review on the physical basis of wave–particle duality: Conceptual connection between quantum mechanics and the Maxwell theory,” Modern Physics Letters B, vol. 35, pp. 2130004 (2021).
[7] G. Aubrun, L. Lami, C. Palazuelos, and M. Plávala, “Entanglement and superposition are equivalent concepts in any physical theory,” Physical Review Letters, vol. 128, pp. 160402 (2022).
[8] M. A. Chamgordani, “The entanglement properties of superposition of fermionic coherent states,” International Journal of Theoretical Physics, vol. 61, pp. 33 (2022).
[9] B. A. Stickler, K. Hornberger, and M. S. Kim, “Quantum rotations of nanoparticles,” Nature Reviews Physics, vol. 3, pp. 589–597 (2021).
[10] S. K. J. Sydulu, K. N. Jyothi, P. N. Chandana, K. V. S. Enosh, and P. Gopi, “Voice and Text-Based Healthcare Chatbot with Real-Time Multilingual Translation,” International Journal of Recent Advances in Engineering and Technology (IJRAET), vol. 14, no. 1, pp. 42–50 (Apr. 2025).
[11] A. Godbole, R. Dhabliya, V. Deshpande, S. A. Sivakumar, B. M. Shankar, and V. Khetani, “Ethical hacking and penetration testing strengthening cybersecurity posture through offensive security measures,” Journal of Discrete Mathematical Sciences and Cryptography, vol. 27, no. 4, pp. 1295–1305 (2024).
[12] V. Deshpande, D. Khubalkar, A. Dhablia, M. J. Pasha, D. Dhabliya, and Y. Gandhi, “Enhancing financial transaction security with lightweight cryptographic algorithms,” Journal of Discrete Mathematical Sciences and Cryptography, vol. 27, no. 2-B, pp. 741–751 (2024).
[13] D. Goyal, A. Kumar, Y. Gandhi, and V. Khetani, “Securing wireless sensor networks with novel hybrid lightweight cryptographic protocols,” Journal of Discrete Mathematical Sciences and Cryptography, vol. 27, no. 2-B, pp. 703–714 (2024).
[14] J. Preskill, Quantum Computing 40 Years Later, in Feynman Lectures on Computation, Boca Raton, FL, USA: CRC Press, pp. 193–244 (2023).




