Global Physics Awards
Muhammad Bilal — Lanzhou University
| Affiliation | Lanzhou University |
|---|---|
| Country | China |
| Scopus ID | 59630538800 |
| Documents | 14 |
| Citations | 39 |
| h-index | 4 |
| Subject Area | Particle Physics |
| Event | Global Physics Awards |
| ORCID | 0000-0002-5637-674X |
Muhammad Bilal is a researcher affiliated with Lanzhou University in China whose recorded scholarly profile is associated with particle physics. This article summarizes the publicly identified profile indicators, research context, and award-relevance considerations connected with the Global Physics Awards, using bibliographic information attributed to the researcher’s Scopus and ORCID records.
Abstract
This academic profile presents an overview of Muhammad Bilal’s publicly identified research record in particle physics in relation to the Global Physics Awards. The available Scopus profile reports 14 documents, 39 citations, and an h-index of 4.[1][2]
Keywords
Muhammad Bilal; Lanzhou University; particle physics; bibliometrics; Scopus; scholarly communication; Global Physics Awards; research recognition.
Introduction
Academic recognition pages commonly bring together institutional affiliation, persistent researcher identifiers, bibliographic records, and a concise account of disciplinary relevance. In this case, the profile concerns Muhammad Bilal of Lanzhou University, China, and is situated within the subject area of particle physics. The Global Physics Awards provides the event context for considering the researcher’s profile.[1][2]
Research Profile
The recorded affiliation is Lanzhou University in China. The profile’s stated subject area, particle physics, places the work within a field concerned with the properties, interactions, and fundamental structure of matter and radiation. The publicly listed data should be read as a profile snapshot, since database coverage and citation counts may change as records are updated.[1]
Research Contributions
The available profile information associates Muhammad Bilal’s indexed scholarly record with particle physics. Within this discipline, research contributions may include theoretical analysis, phenomenological investigation, computational modelling, experimental interpretation, or collaborative work related to fundamental interactions. The precise scope and contribution of each publication should be verified from the individual bibliographic records and full texts.[3]
Publications
The Scopus author profile identifies 14 documents associated with Author ID 59630538800. The profile should be consulted directly for the current document list, publication dates, source titles, co-authorship information, and available document-level identifiers.[1][3]
Research Impact
The available Scopus profile reports 39 citations and an h-index of 4. These figures indicate that at least four indexed publications in the profile have each received four or more citations within the relevant database coverage.[1]
Award Suitability
Muhammad Bilal’s documented affiliation, persistent identifiers, and indexed publication record provide verifiable elements for consideration in an academic recognition process. The profile is relevant to an award context focused on physics because its stated subject area is particle physics and its associated record includes measurable scholarly activity.[4]
Conclusion
Muhammad Bilal’s profile identifies an affiliation with Lanzhou University and a research association with particle physics. The Scopus record reports 14 documents, 39 citations, and an h-index of 4, while the ORCID iD provides an additional persistent identifier for scholarly record verification. These elements form a factual basis for profile review in connection with the Global Physics Awards.[1]
External Links
References
- Elsevier (2026.). Scopus author details: Muhammad Bilal, Author ID 59630538800. Scopus.
https://www.scopus.com/authid/detail.uri?authorId=59630538800 - ORCID (2026.). ORCID record: 0000-0002-5637-674X. ORCID.
https://orcid.org/0000-0002-5637-674X - Influence of room-temperature Xe20+ irradiation-induced defects on hardening and amorphization of secondary phase precipitates in Zircaloy-4.
https://globalphysicsawards.com/ - Global Physics Awards. (2026.). Global Physics Awards.
https://globalphysicsawards.com/