Global and Stochastic Analysis (GSA)
Vol. 13 No. 3 (2026)
The issue is under Press...
1. ASYMPTOTIC ANALYSIS OF THE STOCHASTIC HTLV-I MODEL WITH BLACK-KARASINSKI PROCESS
DOI: 10.64837/GSA.13.3.1
How to Cite:
Khammich, L., & Kiouach, D. (2026). Asymptotic analysis of the stochastic HTLV-I model with Black-Karasinski
process. Glob. Stoch. Anal., 13(3), 1–16.
process. Glob. Stoch. Anal., 13(3), 1–16.
2. A NOVEL FIRST HYPER-GOURAVA STRESS INDEX OF GRAPHS WITH QSPR APPLICATIONS
DOI: 10.64837/GSA.13.3.2
How to Cite:
Girija, K. P., Ravi Kumar, C. K., Munavalli, R., Shivashankara, K., Siva Kota Reddy, P., Harshavardhana, C. N., &
Megalamani, S. B. (2026). A novel first hyper-Gourava stress index of graphs with QSPR applications. Glob. Stoch.
Anal., 13(3), 17–34.
Megalamani, S. B. (2026). A novel first hyper-Gourava stress index of graphs with QSPR applications. Glob. Stoch.
Anal., 13(3), 17–34.
3. FORECASTING BITCOIN VOLATILITY USING A WEIGHTED SEMIPARAMETRIC EGARCH MODEL
INCORPORATING CRUDE OIL MARKET VOLATILITY
INCORPORATING CRUDE OIL MARKET VOLATILITY
DOI: 10.64837/GSA.13.3.3
How to Cite:
Kumari, A., & Naveena. (2026). Forecasting Bitcoin volatility using a weighted semiparametric EGARCH model
incorporating crude oil market volatility. Glob. Stoch. Anal., 13(3), 35–51.
DOI: 10.64837/GSA.13.3.4
How to Cite:
Vasanthi, R., & Perumalsamy, M. (2026). Independent transversal geodetic energy of a graph. Glob. Stoch.
Anal., 13(3), 52–65.
Anal., 13(3), 52–65.
5. SPECTRAL BOUNDS FOR FUZZY GRAPH LAPLACIANS UNDER INTERVAL UNCERTAINTY
DOI: 10.64837/GSA.13.3.5
How to Cite:
Vasudevan, A., Yogeesh, N., Roy, K., William, P., Mastan, Z. P., & Manoharan, T. (2026). Spectral bounds for fuzzy
graph Laplacians under interval uncertainty. Glob. Stoch. Anal., 13(3), 66–75.
graph Laplacians under interval uncertainty. Glob. Stoch. Anal., 13(3), 66–75.
6. GRAPH-LABELING BASED CIPHER GRAPH CONSTRUCTION FOR RSA ENCRYPTION
DOI: 10.64837/GSA.13.3.6
How to Cite:
Prabhu, N., Girija, K. P., Raksha, Vasanth Kumar, S., & Hegde, S. (2026). Graph-labeling based cipher graph
construction for RSA encryption. Glob. Stoch. Anal., 13(3), 76–91.
construction for RSA encryption. Glob. Stoch. Anal., 13(3), 76–91.
7. COMPARATIVE THERMAL PERFORMANCE ASSESSMENT OF HAMILITON-CROSSER AND XUE
MODEL IN POROUS SLIDER VIA L16 ORTHOGONAL ARRAY-BASED OPTIMIZATION
MODEL IN POROUS SLIDER VIA L16 ORTHOGONAL ARRAY-BASED OPTIMIZATION
DOI: 10.64837/GSA.13.3.7
How to Cite:
Manjula, G. J., Kirankumar, M., Sridevi, M. J., Jagadeesha, R. D., Radhika, M., Jagannatha, C. G., Jagadeesha, K. C.,
& Rekha, J. (2026). Comparative thermal performance assessment of Hamiliton-Crosser and Xue model in porous
slider via L16 orthogonal array-based optimization. Glob. Stoch. Anal., 13(3), 92–111.
& Rekha, J. (2026). Comparative thermal performance assessment of Hamiliton-Crosser and Xue model in porous
slider via L16 orthogonal array-based optimization. Glob. Stoch. Anal., 13(3), 92–111.
8. ENUMERATION AND CLASSIFICATION OF CERTAIN CLASSES OF GRACEFUL DIGRAPHS USING AN
ANALYTICAL AND ALGORITHMIC APPROACH
ANALYTICAL AND ALGORITHMIC APPROACH
DOI: 10.64837/GSA.13.3.8
How to Cite:
Smitha, G. V., Kumudakshi, & Dara, S. (2026). Enumeration and classification of certain classes of graceful digraphs
using an analytical and algorithmic approach. Glob. Stoch. Anal., 13(3), 112–127.
using an analytical and algorithmic approach. Glob. Stoch. Anal., 13(3), 112–127.
9. THE SECOND HYPER-GOURAVA STRESS INDEX OF GRAPHS: MATHEMATICAL PROPERTIES
AND QSPR APPLICATIONS
AND QSPR APPLICATIONS
DOI: 10.64837/GSA.13.3.9
How to Cite:
Girija, K. P., Ravi Kumar, C. K., Munavalli, R., Shivashankara, K., Siva Kota Reddy, P., Harshavardhana, C. N., &
Megalamani, S. B. (2026). The second hyper-Gourava stress index of graphs: Mathematical properties and QSPR
applications. Glob. Stoch. Anal., 13(3), 128–144.
Megalamani, S. B. (2026). The second hyper-Gourava stress index of graphs: Mathematical properties and QSPR
applications. Glob. Stoch. Anal., 13(3), 128–144.
10. COMPARATIVE ANALYSIS OF FRONT AND REAR STAGNATION POINT FLOW OF ENGINE OIL
DOI: 10.64837/GSA.13.3.10
How to Cite:
Jagadeesha, R. D., Kirankumar, M., Sridevi, M. J., Kemparaju, S., Shashikumar, H. C., Jagadeesha, K. C., Vikas, K., &
Rekha, J. (2026). Comparative analysis of front and rear stagnation point flow of engine oil. Glob. Stoch.
Anal., 13(3), 145–157.
Rekha, J. (2026). Comparative analysis of front and rear stagnation point flow of engine oil. Glob. Stoch.
Anal., 13(3), 145–157.
11. ON THE REVERSE SOMBOR COINDEX OF GRAPHS AND ITS CHEMICAL APPLICABILITY
DOI: 10.64837/GSA.13.3.11
How to Cite:
Nagendrappa, G., Goudar, V. M., Gombi, M. R., & Rajathagiri, D. T. (2026). On the reverse Sombor coindex of graphs
and its chemical applicability. Glob. Stoch. Anal., 13(3), 158–170.
Sudha, S., & Maddileti Pasupula. (2026). Dual solution and stability analysis of stagnation-point Williamson fluid
flow over a nonlinearly stretching/shrinking sheet with thermal radiation. Glob. Stoch. Anal., 13(3),171–185.
coindex of $TUC_4C_8(R)[p,q]$ nanostructures and its chemical applicability. Glob. Stoch. Anal., 13(3), 186–204.
and its chemical applicability. Glob. Stoch. Anal., 13(3), 158–170.
12. DUAL SOLUTION AND STABILITY ANALYSIS OF STAGNATION-POINT WILLIAMSON FLUID FLOW
OVER A NONLINEARLY STRETCHING/SHRINKING SHEET WITH THERMAL RADIATION
OVER A NONLINEARLY STRETCHING/SHRINKING SHEET WITH THERMAL RADIATION
DOI: 10.64837/GSA.13.3.12
How to Cite:
Sudha, S., & Maddileti Pasupula. (2026). Dual solution and stability analysis of stagnation-point Williamson fluid
flow over a nonlinearly stretching/shrinking sheet with thermal radiation. Glob. Stoch. Anal., 13(3),171–185.
13. REDUCED SOMBOR COINDEX OF 𝑻𝑼𝑪𝟒𝑪𝟖(𝑹)[𝒑,𝒒] NANOSTRUCTURES AND ITS CHEMICAL
APPLICABILITY
APPLICABILITY
DOI: 10.64837/GSA.13.3.13
How to Cite:
Rajathagiri, D. T., Goudar, V. M., Shrikanth, C. K., Sharathkumar, H. T., & Nagendrappa, G. (2026). Reduced Sombor
coindex of $TUC_4C_8(R)[p,q]$ nanostructures and its chemical applicability. Glob. Stoch. Anal., 13(3), 186–204.