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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.

Book 2025 Cited by 0
Seddik Abdelalim, Ilias Elmouki, Noreddine Abghour — Finite Abelian Groups, Elliptic Curves, Blockchain with Hashing and Graphs — DOI: 10.9734/bpi/mono/978-81-992493-9-4/ch6
Cite this publication
APA

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

Harvard

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.

IEEE

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.

Vancouver

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.

MLA

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.

Chicago

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.

BibTeX

@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}, }

Book 2025 Cited by 0
Seddik Abdelalim, Asmaa Cherkaoui, Abdelkarim Lkoiaza, Ilias Elmouki, Noreddine Abghour — Finite Abelian Groups, Elliptic Curves, Blockchain with Hashing and Graphs — DOI: 10.9734/bpi/mono/978-81-992493-9-4/ch9
Cite this publication
APA

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

Harvard

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.

IEEE

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.

Vancouver

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.

MLA

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.

Chicago

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.

BibTeX

@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}, }

Book 2025 Cited by 0
Seddik Abdelalim, Abdelkarim Lkoiaza, Asmaa Cherkaoui, Ilias Elmouki, Noreddine Abghour — Finite Abelian Groups, Elliptic Curves, Blockchain with Hashing and Graphs — DOI: 10.9734/bpi/mono/978-81-992493-9-4/ch8
Cite this publication
APA

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

Harvard

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.

IEEE

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.

Vancouver

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.

MLA

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.

Chicago

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.

BibTeX

@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}, }

Book 2025 Cited by 0
Seddik Abdelalim, Ilias Elmouki, Noreddine Abghour — Finite Abelian Groups, Elliptic Curves, Blockchain with Hashing and Graphs — DOI: 10.9734/bpi/mono/978-81-992493-9-4/ch7
Cite this publication
APA

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

Harvard

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.

IEEE

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.

Vancouver

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.

MLA

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.

Chicago

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.

BibTeX

@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}, }

Journal 2025 Cited by 0
Abdelilah Jraifi, Aziz Darouichi, Ilias Elmouki — Ricerche di Matematica — DOI: 10.1007/s11587-024-00890-5
Cite this publication
APA

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

Harvard

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.

IEEE

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.

Vancouver

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.

MLA

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.

Chicago

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.

BibTeX

@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}, }

Journal 2025 Cited by 0
ABDELKARIM LKOAIZA, Seddik ABDELALIM, Asmaa CHERKAOUI, Ilias ELMOUKI — Statistics, Optimization & Information Computing — DOI: 10.19139/soic-2310-5070-2755
Cite this publication
APA

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

Harvard

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.

IEEE

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.

Vancouver

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.

MLA

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.

Chicago

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.

BibTeX

@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}, }

Journal 2025 Cited by 0
Asmaa CHERKAOUI, Seddik ABDELALIM, Abdelkarim LKOAIZA, Ilias ELMOUKI — Statistics, Optimization & Information Computing — DOI: 10.19139/soic-2310-5070-2761
Cite this publication
APA

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

Harvard

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.

IEEE

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.

Vancouver

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.

MLA

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.

Chicago

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.

BibTeX

@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}, }

Journal 2025 Cited by 2
H. Tejaswini, M. M. Manohara Pai, Radhika M. Pai, Tejaswini H — SN Computer Science — DOI: 10.1007/s42979-025-04581-2
Cite this publication
APA

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

Harvard

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.

IEEE

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.

Vancouver

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.

MLA

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.

Chicago

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.

BibTeX

@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}, }

Journal 2025 Cited by 2
Fatima Khalid, Usman Haider, Muhammad Hanif, Ahmar Rashid, Akhtar Khalil — IEEE Access — DOI: 10.1109/ACCESS.2025.3636276
Cite this publication
APA

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

Harvard

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.

IEEE

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.

Vancouver

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.

MLA

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.

Chicago

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.

BibTeX

@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}, }

Journal 2025 Cited by 0
Abdul Waheed, Nicholas S. Reese — DOI: 10.1145/3744699
Cite this publication
APA

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

Harvard

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.

IEEE

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.

Vancouver

Waheed A, Reese NS. DMAP: A Blockchain-Enhanced Deepfake Verification Framework to Safeguard Individual Privacy and National Security. 2025. doi: 10.1145/3744699.

MLA

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.

Chicago

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.

BibTeX

@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}, }