DIFFER

W. J. Goedheer

First name
W.
Middle name
J.
Last name
Goedheer
van der Velden, M. H. L., Brok, W. J. M., van der Mullen, J. ., Goedheer, W. J., & Banine, V. . (2006). Particle-in-cell Monte Carlo simulations of an extreme ultraviolet radiation driven plasma. Physical Review E, 73. Retrieved from <Go to ISI>://000236467700085 (Original work published 2025)
Land, V. ., & Goedheer, W. J. (2006). Effect of large-angle scattering, ion flow speed and ion-neutral collisions on dust transport under microgravity conditions. New Journal of Physics, 8. Retrieved from <Go to ISI>://000235010600008 (Original work published 2025)
Gordijn, A. ., Vanecek, M. ., Goedheer, W. J., Rath, J. ., & Schropp, R. E. I. (2006). Influence of pressure and plasma potential on high growth rate microcrystalline silicon grown by very high frequency plasma enhanced chemical vapour deposition. Japanese Journal of Applied Physics Part 1-Regular Papers Brief Communications & Review Papers, 45, 6166-6172. Retrieved from <Go to ISI>://000240512800022 (Original work published 2025)
van Eck, H. J. N., Ouden, den ., van Rooij, G. J., Goedheer, W. J., de Groot, B. ., Cardozo, N. J. L., & Kleyn, A. W. (2005). A 3 T magnet system for MAGNUM-PSI. IEEE Transactions on Applied Superconductivity, 15, 1303-1306. Retrieved from <Go to ISI>://000229765700055 (Original work published 2025)
de Groot, B. ., van Rooij, G. J., Veremiyenko, V. ., von Hellermann, M. G., van Eck, H. J. N., Barth, C. J., … Dahiya, R. P. (2005). Magnum-psi, a plasma generator for plasma-surface interaction research in ITER-like conditions. Fusion Engineering and Design, 74, 155-159. Retrieved from <Go to ISI>://000233886800019 (Original work published 2025)
Land, V. ., Goedheer, W. J., & Akdim, M. . (2005). Dust transport in a magnetized radio-frequency discharge under microgravity conditions. Physical Review E, 72. Retrieved from <Go to ISI>://000232931200092 (Original work published 2025)
Rath, J. ., Franken, R. H. J., Gordijn, A. ., Schropp, R. E. I., & Goedheer, W. J. (2004). Growth mechanism of microcrystalline silicon at high pressure conditions. Journal of Non-Crystalline Solids, 338-40, 56-60. Retrieved from <Go to ISI>://000222219000011 (Original work published 2025)
Akdim, M. ., & Goedheer, W. J. (2004). Modeling of dust voids in electronegative discharges, under microgravity. IEEE Transactions on Plasma Science, 32, 680-690. Retrieved from <Go to ISI>://000222278400025 (Original work published 2025)
Goedheer, W. J., & Chutov, Y. I. (2004). PIC/MC modeling of dusty radio-frequency discharges. IEEE Transactions on Plasma Science, 32, 551-554. Retrieved from <Go to ISI>://000222278400004 (Original work published 2025)
Goedheer, W. J., Akdim, M. ., & Land, V. . (2004). Transport of dust in low-pressure RF discharges. High Temperature Material Processes, 8, 139-148. Retrieved from <Go to ISI>://000223882200008