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Predicting intact rock strength for mechanical excavation using multivariate statistics, artificial neural networks, and regression trees
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B. Tiryaki, "Predicting intact rock strength for mechanical excavation using multivariate statistics, artificial neural networks, and regression trees," ENGINEERING GEOLOGY , vol.99, pp.51-60, 2008

Tiryaki, B. 2008. Predicting intact rock strength for mechanical excavation using multivariate statistics, artificial neural networks, and regression trees. ENGINEERING GEOLOGY , vol.99 , 51-60.

Tiryaki, B., (2008). Predicting intact rock strength for mechanical excavation using multivariate statistics, artificial neural networks, and regression trees. ENGINEERING GEOLOGY , vol.99, 51-60.

Tiryaki, Bulent. "Predicting intact rock strength for mechanical excavation using multivariate statistics, artificial neural networks, and regression trees," ENGINEERING GEOLOGY , vol.99, 51-60, 2008

Tiryaki, Bulent. "Predicting intact rock strength for mechanical excavation using multivariate statistics, artificial neural networks, and regression trees." ENGINEERING GEOLOGY , vol.99, pp.51-60, 2008

Tiryaki, B. (2008) . "Predicting intact rock strength for mechanical excavation using multivariate statistics, artificial neural networks, and regression trees." ENGINEERING GEOLOGY , vol.99, pp.51-60.

@article{article, author={Bulent Tiryaki}, title={Predicting intact rock strength for mechanical excavation using multivariate statistics, artificial neural networks, and regression trees}, journal={ENGINEERING GEOLOGY}, year=2008, pages={51-60} }