Repository
Publications
A searchable record of ICResG research output — journal articles, conference papers, technical reports and more. Search by author, title, year, venue, DOI, research area or keyword.
292 publications found.
Cite this publication
Abdelalim, S., Elmouki, I., & Abghour, N. (2025). Computational Techniques in Finite Group Theory: Python Implementations and Applications. Finite Abelian Groups, Elliptic Curves, Blockchain with Hashing and Graphs. https://doi.org/10.9734/bpi/mono/978-81-992493-9-4/ch6
Abdelalim, S., Elmouki, I. and Abghour, N. (2025) 'Computational Techniques in Finite Group Theory: Python Implementations and Applications', Finite Abelian Groups, Elliptic Curves, Blockchain with Hashing and Graphs. doi: 10.9734/bpi/mono/978-81-992493-9-4/ch6.
S. Abdelalim, I. Elmouki, and N. Abghour, "Computational Techniques in Finite Group Theory: Python Implementations and Applications," Finite Abelian Groups, Elliptic Curves, Blockchain with Hashing and Graphs, 2025. doi: 10.9734/bpi/mono/978-81-992493-9-4/ch6.
Abdelalim S, Elmouki I, Abghour N. Computational Techniques in Finite Group Theory: Python Implementations and Applications. Finite Abelian Groups, Elliptic Curves, Blockchain with Hashing and Graphs. 2025. doi: 10.9734/bpi/mono/978-81-992493-9-4/ch6.
Abdelalim, Seddik, et al.. "Computational Techniques in Finite Group Theory: Python Implementations and Applications." Finite Abelian Groups, Elliptic Curves, Blockchain with Hashing and Graphs, 2025. https://doi.org/10.9734/bpi/mono/978-81-992493-9-4/ch6.
Abdelalim, S., Elmouki, I., Abghour, N.. "Computational Techniques in Finite Group Theory: Python Implementations and Applications." Finite Abelian Groups, Elliptic Curves, Blockchain with Hashing and Graphs (2025). https://doi.org/10.9734/bpi/mono/978-81-992493-9-4/ch6.
@book{abdelalim2025, title={Computational Techniques in Finite Group Theory: Python Implementations and Applications}, author={Abdelalim, Seddik and Elmouki, Ilias and Abghour, Noreddine}, journal={Finite Abelian Groups, Elliptic Curves, Blockchain with Hashing and Graphs}, year={2025}, doi={10.9734/bpi/mono/978-81-992493-9-4/ch6}, }
Cite this publication
Abdelalim, S., Cherkaoui, A., Lkoiaza, A., Elmouki, I., & Abghour, N. (2025). Advancing Blockchain Security Using Graph Theory: A Python Programming Perspective. Finite Abelian Groups, Elliptic Curves, Blockchain with Hashing and Graphs. https://doi.org/10.9734/bpi/mono/978-81-992493-9-4/ch9
Abdelalim, S., Cherkaoui, A., Lkoiaza, A., Elmouki, I. and Abghour, N. (2025) 'Advancing Blockchain Security Using Graph Theory: A Python Programming Perspective', Finite Abelian Groups, Elliptic Curves, Blockchain with Hashing and Graphs. doi: 10.9734/bpi/mono/978-81-992493-9-4/ch9.
S. Abdelalim, A. Cherkaoui, A. Lkoiaza, I. Elmouki, and N. Abghour, "Advancing Blockchain Security Using Graph Theory: A Python Programming Perspective," Finite Abelian Groups, Elliptic Curves, Blockchain with Hashing and Graphs, 2025. doi: 10.9734/bpi/mono/978-81-992493-9-4/ch9.
Abdelalim S, Cherkaoui A, Lkoiaza A, Elmouki I, Abghour N. Advancing Blockchain Security Using Graph Theory: A Python Programming Perspective. Finite Abelian Groups, Elliptic Curves, Blockchain with Hashing and Graphs. 2025. doi: 10.9734/bpi/mono/978-81-992493-9-4/ch9.
Abdelalim, Seddik, et al.. "Advancing Blockchain Security Using Graph Theory: A Python Programming Perspective." Finite Abelian Groups, Elliptic Curves, Blockchain with Hashing and Graphs, 2025. https://doi.org/10.9734/bpi/mono/978-81-992493-9-4/ch9.
Abdelalim, S., Cherkaoui, A., Lkoiaza, A., Elmouki, I., Abghour, N.. "Advancing Blockchain Security Using Graph Theory: A Python Programming Perspective." Finite Abelian Groups, Elliptic Curves, Blockchain with Hashing and Graphs (2025). https://doi.org/10.9734/bpi/mono/978-81-992493-9-4/ch9.
@book{abdelalim2025, title={Advancing Blockchain Security Using Graph Theory: A Python Programming Perspective}, author={Abdelalim, Seddik and Cherkaoui, Asmaa and Lkoiaza, Abdelkarim and Elmouki, Ilias and Abghour, Noreddine}, journal={Finite Abelian Groups, Elliptic Curves, Blockchain with Hashing and Graphs}, year={2025}, doi={10.9734/bpi/mono/978-81-992493-9-4/ch9}, }
Cite this publication
Abdelalim, S., Lkoiaza, A., Cherkaoui, A., Elmouki, I., & Abghour, N. (2025). A Python Programming Initiative for Hash Construction through the Example of SHA-2. Finite Abelian Groups, Elliptic Curves, Blockchain with Hashing and Graphs. https://doi.org/10.9734/bpi/mono/978-81-992493-9-4/ch8
Abdelalim, S., Lkoiaza, A., Cherkaoui, A., Elmouki, I. and Abghour, N. (2025) 'A Python Programming Initiative for Hash Construction through the Example of SHA-2', Finite Abelian Groups, Elliptic Curves, Blockchain with Hashing and Graphs. doi: 10.9734/bpi/mono/978-81-992493-9-4/ch8.
S. Abdelalim, A. Lkoiaza, A. Cherkaoui, I. Elmouki, and N. Abghour, "A Python Programming Initiative for Hash Construction through the Example of SHA-2," Finite Abelian Groups, Elliptic Curves, Blockchain with Hashing and Graphs, 2025. doi: 10.9734/bpi/mono/978-81-992493-9-4/ch8.
Abdelalim S, Lkoiaza A, Cherkaoui A, Elmouki I, Abghour N. A Python Programming Initiative for Hash Construction through the Example of SHA-2. Finite Abelian Groups, Elliptic Curves, Blockchain with Hashing and Graphs. 2025. doi: 10.9734/bpi/mono/978-81-992493-9-4/ch8.
Abdelalim, Seddik, et al.. "A Python Programming Initiative for Hash Construction through the Example of SHA-2." Finite Abelian Groups, Elliptic Curves, Blockchain with Hashing and Graphs, 2025. https://doi.org/10.9734/bpi/mono/978-81-992493-9-4/ch8.
Abdelalim, S., Lkoiaza, A., Cherkaoui, A., Elmouki, I., Abghour, N.. "A Python Programming Initiative for Hash Construction through the Example of SHA-2." Finite Abelian Groups, Elliptic Curves, Blockchain with Hashing and Graphs (2025). https://doi.org/10.9734/bpi/mono/978-81-992493-9-4/ch8.
@book{abdelalim2025, title={A Python Programming Initiative for Hash Construction through the Example of SHA-2}, author={Abdelalim, Seddik and Lkoiaza, Abdelkarim and Cherkaoui, Asmaa and Elmouki, Ilias and Abghour, Noreddine}, journal={Finite Abelian Groups, Elliptic Curves, Blockchain with Hashing and Graphs}, year={2025}, doi={10.9734/bpi/mono/978-81-992493-9-4/ch8}, }
Cite this publication
Abdelalim, S., Elmouki, I., & Abghour, N. (2025). A Python Programming Initiative for Elliptic Curves over Finite Fields. Finite Abelian Groups, Elliptic Curves, Blockchain with Hashing and Graphs. https://doi.org/10.9734/bpi/mono/978-81-992493-9-4/ch7
Abdelalim, S., Elmouki, I. and Abghour, N. (2025) 'A Python Programming Initiative for Elliptic Curves over Finite Fields', Finite Abelian Groups, Elliptic Curves, Blockchain with Hashing and Graphs. doi: 10.9734/bpi/mono/978-81-992493-9-4/ch7.
S. Abdelalim, I. Elmouki, and N. Abghour, "A Python Programming Initiative for Elliptic Curves over Finite Fields," Finite Abelian Groups, Elliptic Curves, Blockchain with Hashing and Graphs, 2025. doi: 10.9734/bpi/mono/978-81-992493-9-4/ch7.
Abdelalim S, Elmouki I, Abghour N. A Python Programming Initiative for Elliptic Curves over Finite Fields. Finite Abelian Groups, Elliptic Curves, Blockchain with Hashing and Graphs. 2025. doi: 10.9734/bpi/mono/978-81-992493-9-4/ch7.
Abdelalim, Seddik, et al.. "A Python Programming Initiative for Elliptic Curves over Finite Fields." Finite Abelian Groups, Elliptic Curves, Blockchain with Hashing and Graphs, 2025. https://doi.org/10.9734/bpi/mono/978-81-992493-9-4/ch7.
Abdelalim, S., Elmouki, I., Abghour, N.. "A Python Programming Initiative for Elliptic Curves over Finite Fields." Finite Abelian Groups, Elliptic Curves, Blockchain with Hashing and Graphs (2025). https://doi.org/10.9734/bpi/mono/978-81-992493-9-4/ch7.
@book{abdelalim2025, title={A Python Programming Initiative for Elliptic Curves over Finite Fields}, author={Abdelalim, Seddik and Elmouki, Ilias and Abghour, Noreddine}, journal={Finite Abelian Groups, Elliptic Curves, Blockchain with Hashing and Graphs}, year={2025}, doi={10.9734/bpi/mono/978-81-992493-9-4/ch7}, }
Cite this publication
Jraifi, A., Darouichi, A., & Elmouki, I. (2025). Analytical solution of the Dupire-like equation in calibration to the generalized stochastic volatility jump-diffusion model for option pricing. Ricerche di Matematica. https://doi.org/10.1007/s11587-024-00890-5
Jraifi, A., Darouichi, A. and Elmouki, I. (2025) 'Analytical solution of the Dupire-like equation in calibration to the generalized stochastic volatility jump-diffusion model for option pricing', Ricerche di Matematica. doi: 10.1007/s11587-024-00890-5.
A. Jraifi, A. Darouichi, and I. Elmouki, "Analytical solution of the Dupire-like equation in calibration to the generalized stochastic volatility jump-diffusion model for option pricing," Ricerche di Matematica, 2025. doi: 10.1007/s11587-024-00890-5.
Jraifi A, Darouichi A, Elmouki I. Analytical solution of the Dupire-like equation in calibration to the generalized stochastic volatility jump-diffusion model for option pricing. Ricerche di Matematica. 2025. doi: 10.1007/s11587-024-00890-5.
Jraifi, Abdelilah, et al.. "Analytical solution of the Dupire-like equation in calibration to the generalized stochastic volatility jump-diffusion model for option pricing." Ricerche di Matematica, 2025. https://doi.org/10.1007/s11587-024-00890-5.
Jraifi, A., Darouichi, A., Elmouki, I.. "Analytical solution of the Dupire-like equation in calibration to the generalized stochastic volatility jump-diffusion model for option pricing." Ricerche di Matematica (2025). https://doi.org/10.1007/s11587-024-00890-5.
@article{jraifi2025, title={Analytical solution of the Dupire-like equation in calibration to the generalized stochastic volatility jump-diffusion model for option pricing}, author={Jraifi, Abdelilah and Darouichi, Aziz and Elmouki, Ilias}, journal={Ricerche di Matematica}, year={2025}, doi={10.1007/s11587-024-00890-5}, }
Cite this publication
LKOAIZA, A., ABDELALIM, S., CHERKAOUI, A., & ELMOUKI, I. (2025). An Extended Grendel Approach Applied to Blockchain Signature as an Alternative to Keccak Permutation. Statistics, Optimization & Information Computing. https://doi.org/10.19139/soic-2310-5070-2755
LKOAIZA, A., ABDELALIM, S., CHERKAOUI, A. and ELMOUKI, I. (2025) 'An Extended Grendel Approach Applied to Blockchain Signature as an Alternative to Keccak Permutation', Statistics, Optimization & Information Computing. doi: 10.19139/soic-2310-5070-2755.
A. LKOAIZA, S. ABDELALIM, A. CHERKAOUI, and I. ELMOUKI, "An Extended Grendel Approach Applied to Blockchain Signature as an Alternative to Keccak Permutation," Statistics, Optimization & Information Computing, 2025. doi: 10.19139/soic-2310-5070-2755.
LKOAIZA A, ABDELALIM S, CHERKAOUI A, ELMOUKI I. An Extended Grendel Approach Applied to Blockchain Signature as an Alternative to Keccak Permutation. Statistics, Optimization & Information Computing. 2025. doi: 10.19139/soic-2310-5070-2755.
LKOAIZA, ABDELKARIM, et al.. "An Extended Grendel Approach Applied to Blockchain Signature as an Alternative to Keccak Permutation." Statistics, Optimization & Information Computing, 2025. https://doi.org/10.19139/soic-2310-5070-2755.
LKOAIZA, A., ABDELALIM, S., CHERKAOUI, A., ELMOUKI, I.. "An Extended Grendel Approach Applied to Blockchain Signature as an Alternative to Keccak Permutation." Statistics, Optimization & Information Computing (2025). https://doi.org/10.19139/soic-2310-5070-2755.
@article{lkoaiza2025, title={An Extended Grendel Approach Applied to Blockchain Signature as an Alternative to Keccak Permutation}, author={LKOAIZA, ABDELKARIM and ABDELALIM, Seddik and CHERKAOUI, Asmaa and ELMOUKI, Ilias}, journal={Statistics, Optimization & Information Computing}, year={2025}, doi={10.19139/soic-2310-5070-2755}, }
Cite this publication
CHERKAOUI, A., ABDELALIM, S., LKOAIZA, A., & ELMOUKI, I. (2025). A Fisher–Yates Shuffle in a Hardened Merkle–Damgård hash for the blockchain's PoW. Statistics, Optimization & Information Computing. https://doi.org/10.19139/soic-2310-5070-2761
CHERKAOUI, A., ABDELALIM, S., LKOAIZA, A. and ELMOUKI, I. (2025) 'A Fisher–Yates Shuffle in a Hardened Merkle–Damgård hash for the blockchain's PoW', Statistics, Optimization & Information Computing. doi: 10.19139/soic-2310-5070-2761.
A. CHERKAOUI, S. ABDELALIM, A. LKOAIZA, and I. ELMOUKI, "A Fisher–Yates Shuffle in a Hardened Merkle–Damgård hash for the blockchain's PoW," Statistics, Optimization & Information Computing, 2025. doi: 10.19139/soic-2310-5070-2761.
CHERKAOUI A, ABDELALIM S, LKOAIZA A, ELMOUKI I. A Fisher–Yates Shuffle in a Hardened Merkle–Damgård hash for the blockchain's PoW. Statistics, Optimization & Information Computing. 2025. doi: 10.19139/soic-2310-5070-2761.
CHERKAOUI, Asmaa, et al.. "A Fisher–Yates Shuffle in a Hardened Merkle–Damgård hash for the blockchain's PoW." Statistics, Optimization & Information Computing, 2025. https://doi.org/10.19139/soic-2310-5070-2761.
CHERKAOUI, A., ABDELALIM, S., LKOAIZA, A., ELMOUKI, I.. "A Fisher–Yates Shuffle in a Hardened Merkle–Damgård hash for the blockchain's PoW." Statistics, Optimization & Information Computing (2025). https://doi.org/10.19139/soic-2310-5070-2761.
@article{cherkaoui2025, title={A Fisher–Yates Shuffle in a Hardened Merkle–Damgård hash for the blockchain's PoW}, author={CHERKAOUI, Asmaa and ABDELALIM, Seddik and LKOAIZA, Abdelkarim and ELMOUKI, Ilias}, journal={Statistics, Optimization & Information Computing}, year={2025}, doi={10.19139/soic-2310-5070-2761}, }
Cite this publication
Tejaswini, H., Pai, M. M. M., Pai, R. M., & H, T. (2025). A Review on Utilization and Impact of Prominent Datasets in Fisheries Research. SN Computer Science. https://doi.org/10.1007/s42979-025-04581-2
Tejaswini, H., Pai, M.M.M., Pai, R.M. and H, T. (2025) 'A Review on Utilization and Impact of Prominent Datasets in Fisheries Research', SN Computer Science. doi: 10.1007/s42979-025-04581-2.
H. Tejaswini, M. M. M. Pai, R. M. Pai, and T. H, "A Review on Utilization and Impact of Prominent Datasets in Fisheries Research," SN Computer Science, 2025. doi: 10.1007/s42979-025-04581-2.
Tejaswini H, Pai MMM, Pai RM, H T. A Review on Utilization and Impact of Prominent Datasets in Fisheries Research. SN Computer Science. 2025. doi: 10.1007/s42979-025-04581-2.
Tejaswini, H., et al.. "A Review on Utilization and Impact of Prominent Datasets in Fisheries Research." SN Computer Science, 2025. https://doi.org/10.1007/s42979-025-04581-2.
Tejaswini, H., Pai, M. M. M., Pai, R. M., H, T.. "A Review on Utilization and Impact of Prominent Datasets in Fisheries Research." SN Computer Science (2025). https://doi.org/10.1007/s42979-025-04581-2.
@article{tejaswini2025, title={A Review on Utilization and Impact of Prominent Datasets in Fisheries Research}, author={Tejaswini, H. and Pai, M. M. Manohara and Pai, Radhika M. and H, Tejaswini}, journal={SN Computer Science}, year={2025}, doi={10.1007/s42979-025-04581-2}, }
Cite this publication
Khalid, F., Haider, U., Hanif, M., Rashid, A., & Khalil, A. (2025). Sparse Prototype-Based Framework for Deepfake Detection Using Class-Specific Dictionary Learning. IEEE Access. https://doi.org/10.1109/ACCESS.2025.3636276
Khalid, F., Haider, U., Hanif, M., Rashid, A. and Khalil, A. (2025) 'Sparse Prototype-Based Framework for Deepfake Detection Using Class-Specific Dictionary Learning', IEEE Access. doi: 10.1109/ACCESS.2025.3636276.
F. Khalid, U. Haider, M. Hanif, A. Rashid, and A. Khalil, "Sparse Prototype-Based Framework for Deepfake Detection Using Class-Specific Dictionary Learning," IEEE Access, 2025. doi: 10.1109/ACCESS.2025.3636276.
Khalid F, Haider U, Hanif M, Rashid A, Khalil A. Sparse Prototype-Based Framework for Deepfake Detection Using Class-Specific Dictionary Learning. IEEE Access. 2025. doi: 10.1109/ACCESS.2025.3636276.
Khalid, Fatima, et al.. "Sparse Prototype-Based Framework for Deepfake Detection Using Class-Specific Dictionary Learning." IEEE Access, 2025. https://doi.org/10.1109/ACCESS.2025.3636276.
Khalid, F., Haider, U., Hanif, M., Rashid, A., Khalil, A.. "Sparse Prototype-Based Framework for Deepfake Detection Using Class-Specific Dictionary Learning." IEEE Access (2025). https://doi.org/10.1109/ACCESS.2025.3636276.
@article{khalid2025, title={Sparse Prototype-Based Framework for Deepfake Detection Using Class-Specific Dictionary Learning}, author={Khalid, Fatima and Haider, Usman and Hanif, Muhammad and Rashid, Ahmar and Khalil, Akhtar}, journal={IEEE Access}, year={2025}, doi={10.1109/ACCESS.2025.3636276}, }
Cite this publication
Waheed, A. & Reese, N. S. (2025). DMAP: A Blockchain-Enhanced Deepfake Verification Framework to Safeguard Individual Privacy and National Security. https://doi.org/10.1145/3744699
Waheed, A. and Reese, N.S. (2025) 'DMAP: A Blockchain-Enhanced Deepfake Verification Framework to Safeguard Individual Privacy and National Security'. doi: 10.1145/3744699.
A. Waheed and N. S. Reese, "DMAP: A Blockchain-Enhanced Deepfake Verification Framework to Safeguard Individual Privacy and National Security," 2025. doi: 10.1145/3744699.
Waheed A, Reese NS. DMAP: A Blockchain-Enhanced Deepfake Verification Framework to Safeguard Individual Privacy and National Security. 2025. doi: 10.1145/3744699.
Waheed, Abdul, and Nicholas S. Reese. "DMAP: A Blockchain-Enhanced Deepfake Verification Framework to Safeguard Individual Privacy and National Security." 2025. https://doi.org/10.1145/3744699.
Waheed, A., Reese, N. S.. "DMAP: A Blockchain-Enhanced Deepfake Verification Framework to Safeguard Individual Privacy and National Security." (2025). https://doi.org/10.1145/3744699.
@article{waheed2025, title={DMAP: A Blockchain-Enhanced Deepfake Verification Framework to Safeguard Individual Privacy and National Security}, author={Waheed, Abdul and Reese, Nicholas S.}, year={2025}, doi={10.1145/3744699}, }