P. Irving Books
Microreactor Technology And Process Intensification
By Yong Wang, J. Hu, C. Hofmann, J. M. Davis, J. Harrison, C. M. Fischer, D. L. King, E. O. Jones, Volker Hessel, J. D. Palmer, R. Nassar, Susanne B. Jones, P. Irving, G. Rawlings, Y. Liang, A Lee, L PEDERSON, J. Fang, James Cao, S. Zhao, G. Kolb, C. Cao, Klavs F. Jensen, Holger Löwe, C. Fischer, Jianli Hu, E. D. Wetzel, K. Brooks, Y. Wang, J. Palmer, G. Whyatt, Douglas C., Jamelyn D. Holladay, Anna Lee Tonkovich, S. R. Deshmukh, A. Karlsson, Anna Lee Y. Tonkovich, D. E. Akporiaye, M. Plassen, Ralph Gillespie, J. S. Holmgren, V. S. Nagineni, K. R. Aithal, N. V. Seetala, U. Siriwardane, R. S. Besser, K. Varahramyan, D. Kuila, Bradley R. Johnson, Ya-Huei Chin, Robert T. Rozmiarek, Yufei Gao, V. S. Stenkamp, W. TeGrotenhuis, R. Wegeng, Götz Veser, J. D. Holladay, R. A. Dagle, G. G. Xia, D. G. Norton, D. G. Vlachos, V. Cominos, V. Hessel, H. Pennemann, R. Zapf, Daniel R. Palo, Jamie D. Holladay, Robert A. Dagle, Q. Ming, K. P. Brooks, L. R. Pederson, G. C. Rawlings, R. S. Wegeng, G. A. Whyatt, Kai T. Jarosch, Steven T. Perry, David Kuhlmann, Chunshe Cao, X. Shari Li
Microreaction technology, with its unprecedented heat and mass transfer advantages as well as uniform residence time and flow pattern, is one of the few technologies with potential to develop effi...
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Polymer Composites In The Aerospace Industry
By P. E. Irving, P. Irving, Costas Soutis, Phil; Soutis, Costas E
Polymer composites are increasingly used in aerospace applications due to properties such as strength and durability compared to weight. Edited by two leading authorities in the field, this book su...
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Microreactor Technology And Process Intensification (ACS Symposium Series, No. 914)
By Yong Wang, J. Hu, C. Hofmann, J. M. Davis, J. Harrison, C. M. Fischer, D. L. King, E. O. Jones, Volker Hessel, J. D. Palmer, R. Nassar, Susanne B. Jones, P. Irving, G. Rawlings, Y. Liang, A Lee, L PEDERSON, J. Fang, James Cao, S. Zhao, G. Kolb, C. Cao, Klavs F. Jensen, Holger Löwe, C. Fischer, Jianli Hu, E. D. Wetzel, K. Brooks, Y. Wang, J. Palmer, G. Whyatt, Douglas C., Jamelyn D. Holladay, Anna Lee Tonkovich, S. R. Deshmukh, A. Karlsson, Anna Lee Y. Tonkovich, D. E. Akporiaye, M. Plassen, Ralph Gillespie, J. S. Holmgren, V. S. Nagineni, K. R. Aithal, N. V. Seetala, U. Siriwardane, R. S. Besser, K. Varahramyan, D. Kuila, Bradley R. Johnson, Ya-Huei Chin, Robert T. Rozmiarek, Yufei Gao, V. S. Stenkamp, W. TeGrotenhuis, R. Wegeng, Götz Veser, J. D. Holladay, R. A. Dagle, G. G. Xia, D. G. Norton, D. G. Vlachos, V. Cominos, V. Hessel, H. Pennemann, R. Zapf, Daniel R. Palo, Jamie D. Holladay, Robert A. Dagle, Q. Ming, K. P. Brooks, L. R. Pederson, G. C. Rawlings, R. S. Wegeng, G. A. Whyatt, Kai T. Jarosch, Steven T. Perry, David Kuhlmann, Chunshe Cao, X. Shari Li
Microreaction technology, with its unprecedented heat and mass transfer advantages as well as uniform residence time and flow pattern, is one of the few technologies with potential to develop effi...
Read More