A. Campo And M. ARICI, "Semi-analytical, piecewise temperature-time distributions in solid bodies of regular shape affected by uniform surface heat flux employing the Method Of Lines (MOL) and the eigenvalue method," INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER , vol.108, 2019
Campo, A. And ARICI, M. 2019. Semi-analytical, piecewise temperature-time distributions in solid bodies of regular shape affected by uniform surface heat flux employing the Method Of Lines (MOL) and the eigenvalue method. INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER , vol.108 .
Campo, A., & ARICI, M., (2019). Semi-analytical, piecewise temperature-time distributions in solid bodies of regular shape affected by uniform surface heat flux employing the Method Of Lines (MOL) and the eigenvalue method. INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER , vol.108.
Campo, Antonio, And MÜSLÜM ARICI. "Semi-analytical, piecewise temperature-time distributions in solid bodies of regular shape affected by uniform surface heat flux employing the Method Of Lines (MOL) and the eigenvalue method," INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER , vol.108, 2019
Campo, Antonio And ARICI, MÜSLÜM. "Semi-analytical, piecewise temperature-time distributions in solid bodies of regular shape affected by uniform surface heat flux employing the Method Of Lines (MOL) and the eigenvalue method." INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER , vol.108, 2019
Campo, A. And ARICI, M. (2019) . "Semi-analytical, piecewise temperature-time distributions in solid bodies of regular shape affected by uniform surface heat flux employing the Method Of Lines (MOL) and the eigenvalue method." INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER , vol.108.
@article{article, author={Antonio Campo And author={MÜSLÜM ARICI}, title={Semi-analytical, piecewise temperature-time distributions in solid bodies of regular shape affected by uniform surface heat flux employing the Method Of Lines (MOL) and the eigenvalue method}, journal={INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER}, year=2019}