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1. High strain dynamic properties of perfectly dry and satureated cohesionless soil

by Shiv Shankar Kumar | Murali Krishna A | Dey, Arindam.

Edition: Vol. 48(3), SeptemberSource: Indian geotechnical journalPublisher: New York Springer 2018Online access: Click here Availability: Items available for reference: School of Engineering & Technology (1).

2. Numerical investigation of Hill slope instability due to seepage and anthropogenic activities

by Talukdar, Priyanka | Bora, Ruplekha | Dey, Arindam.

Edition: Vol. 48(3), SeptemberSource: Indian geotechnical journalPublisher: New York Springer 2018Online access: Click here Availability: Items available for reference: School of Engineering & Technology (1).

3. Suitability of the Typology of Shallow Foundations on Hill-Slopes

by Acharyya, Rana | Dey, Arindam.

Edition: Vol.49(6), DecSource: Indian geotechnical journalPublisher: New York Springer 2019Online access: Click here Availability: Items available for reference: School of Engineering & Technology (PG) (1).

4. Combined Functioning of Geotextile as Barrier and Drainage Material in Unsaturated Earth Retaining Structures

by Jana, Amalesh | Dey, Arindam.

Edition: Vol,48 (2), JuneSource: Indian geotechnical journalPublisher: New York Springer 2018Online access: Click Here Availability: Items available for reference: School of Engineering & Technology (1).

5. Bearing capacity of surface footings on reinforced sandy bed : A revised regression model

by Dey, Arindam | Basudhar, Prabir Kumar.

Edition: Vol.52(2), AprilSource: Indian geotechnical journalPublisher: New York Springer 2022Online access: Click here Availability: Items available for reference: School of Engineering & Technology (PG) (1).

6. Random finite element and limit equilibrium methods-based probabilistic stability analyses of a cut slope

by Chakraborty, Rubi | Dey, Arindam.

Edition: Vol.52(4), AugSource: Indian geotechnical journalPublisher: New York Springer 2022Online access: Click here Availability: Items available for reference: School of Engineering & Technology (PG) (1).

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