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1 Fahsi, A., Tounsi, A., Hebali, H., Chikh, A., Adda Bedia, E.A. and Mahmoud, S.R. (2017), "A four variable refined nth-order shear deformation theory for mechanical and thermal buckling analysis of functionally graded plates", Geomech. Eng., 13(3), 385-410./   DOI View Article
2 Haeri, H., Sarfarazi, V., Bagher Shemirani, A.R. and Hosseini, S.S. (2017), "Experimental and numerical investigation of the effect of sample shapes on point load index", Geomech. Eng., 13(6), 1045-1055./   DOI View Article
3 Bagher Shemirani, A., Haeri, H., Sarfarazi, V. and Hedayat, A. (2017), "A review paper about experimental investigations on failure behaviour of non-persistent joint", Geomech. Eng., 13(4), 535-570./ View Article
4 Bagher Shemirani, A., Haeri, H., Sarfarazi, V. and Hedayat, A. (2017), "A review paper about experimental investigations on failure behaviour of non-persistent joint", Geomech. Eng., 13(4), 535-570./ View Article
5 Maedeh, P., Ghanbari, A. and Wu, W. (2017a), "New coefficients to find natural period of elevated tanks considering fluid-structure-soil interaction effects", Geomech. Eng., 12(6), 949-963./   DOI View Article
6 Mohanty, S.K., Pradhan, P.K. and Mohanty, C.R. (2017), "Stabilization of expansive soil using industrial wastes", Geomech. Eng., 12(1), 111-125./   DOI View Article
7 Yang, D.W., Ma, Z.G., Qi, F.Z., Gong, P., Liu, D.P., Zhao, G.Z. and Zhang, R.R. (2017), "Optimization study on roof break direction of gob-side entry retaining by roof break and filling in thick-layer soft rock layer", Geomech. Eng., 13(2), 195-215./   DOI View Article
8 Ning, J.G., Wang, J., Tan, Y.L., Zhang, L.S. and Bu, T.T. (2017a), "In situ investigations into mining-induced overburden failures in close multiple-seam longwall mining: A case study", Geomech. Eng., 12(4): 657-673./   DOI View Article
9 Jin, P., Wang, E. and Song, D. (2017), "Study on correlation of acoustic emission and plastic strain based on coal-rock damage theory", Geomech. Eng., 12(4), 627-637./   DOI View Article
10 Gullu, H. and Fedakar, H.I. (2017), "On the prediction of unconfined compressive strength of silty soil stabilized with bottom ash, jute and steel fibers via artificial intelligence", Geomech. Eng., 12(3), 441-464./   DOI View Article