Author: Terje Hertzberg

 Total number of MIC articles   4
 Total number of DOI citations  28
 Total number of DOI excluding self-citations  25
 Average citations per article  7.00
 Average excluding self-citations  6.25
 Years 1983 - 1990 

MIC: Terje Hertzberg

4. Magne Hillestad, C. Sørlie, T.F. Anderson, I. Olsen and Terje Hertzberg, “Multivariable robust adaptive controller using reduced-order model”, 1990-2-1
 
[1] J. Perregaard and E.L. Sørensen (1992), doi:10.1016/S0098-1354(09)80029-X
[2] J. Perregaard (1993), doi:10.1016/0098-1354(93)80037-N
3. Kristian M. Lien and Terje Hertzberg, “Improved heuristic algorithm for selection of tear streams and precedence ordering in process flowsheeting computations”, 1990-1-2
 
[1] S. LAKSHMINARAYANAN, S. SUBBA RAO and CH. DURGAPRASADA RAO (1992), doi:10.1080/00986449208936028
[2] J. R. ROACH, B. K. O'NEILL and D. A. HOCKING (1997), doi:10.1080/00986449708936616
2. Magne Hillestad and Terje Hertzberg, “Dynamic Simulation of Chemical Engineering Systems by the Sequential Modular Approach”, 1986-3-1
 
[1] G. Endrestøl, Terje Sira, Monica Østenstad, Tahir I. Malik, M. Meeg and J. Thrane (1989), doi:10.4173/mic.1989.4.2
[2] Sidharth Abrol and Courtland M. Hilton (2012), doi:10.1016/j.compchemeng.2012.02.005
[3] J.F. Andrus (1991), doi:10.1016/0898-1221(91)90050-E
[4] Alexandre C. Dimian, Costin S. Bildea and Anton A. Kiss (2014), doi:10.1016/B978-0-444-62700-1.00004-8
[5] Nailah Fasihah Sidek and Noorlisa Harun (2023), doi:10.1063/5.0148557
1. Truls Gundersen and Terje Hertzberg, “Partitioning and Tearing of Networks Applied to Process Flowsheeting”, 1983-3-2
 
[1] G.V. Varma, K.H. Lau and D.L. Ulrichson (1993), doi:10.1016/0098-1354(93)80026-J
[2] A. Aspelund, T. Gundersen, J. Myklebust, M.P. Nowak and A. Tomasgard (2010), doi:10.1016/j.compchemeng.2009.10.018
[3] M. Hillestad and T. Hertzberg (1986), doi:10.1016/0098-1354(86)87008-9
[4] J.F. Cordoba (1988), doi:10.1016/0098-1354(88)85010-5
[5] M. Hillestad and T. Hertzberg (1988), doi:10.1016/0098-1354(88)85056-7
[6] J. R. ROACH, B. K. O'NEILL and D. A. HOCKING (1997), doi:10.1080/00986449708936616
[7] Magne Hillestad and Terje Hertzberg (1986), doi:10.4173/mic.1986.3.1
[8] S. LAKSHMINARAYANAN, S. SUBBA RAO and CH. DURGAPRASADA RAO (1992), doi:10.1080/00986449208936028
[9] Fei Zhao, Xi Chen and Lingyu Zhu (2016), doi:10.1016/B978-0-444-63428-3.50167-3
[10] Fei Zhao, Xi Chen and Lingyu Zhu (2017), doi:10.1002/aic.15622
[11] Shamsheer S. Chauhan, John T. Hwang and Joaquim R. R. A. Martins (2018), doi:10.1007/978-3-319-67988-4_7
[12] Andreas Möller and Jan Hedemann (2018), doi:10.1007/978-3-658-20380-1_23
[13] Shamsheer S. Chauhan, John T. Hwang and Joaquim R. R. A. Martins (2018), doi:10.1007/s00158-018-2004-5
[14] Delin Qu, Dengwen Sun, Masaaki Muraki and Toyohiko Hayakawa (1992), doi:10.1252/jcej.25.28
[15] Delin Qu, Dengwen Sun, Masaaki Muraki and Toyohiko Hayakawa (1992), doi:10.1252/jcej.25.527
[16] Andreas Moeller (2015), doi:10.1007/978-3-319-09228-7_18
[17] Ali Baharev, Hermann Schichl, Arnold Neumaier and Tobias Achterberg (2021), doi:10.1145/3446429
[18] Elias Martinez-Hernandez (2022), doi:10.1016/j.dche.2022.100075
[19] B. Lohe and E. Futterer (1994), doi:10.1002/9783527624867.ch3