4 | -- | 5 | Steven Gottlieb. Becoming a Computational Scientist |
6 | -- | 7 | Eric Ayars. Finally, a Python-Based Computational Physics Text |
8 | -- | 17 | Lizhe Wang, Dan Chen, Wangyang Liu, Yan Ma, Yanhui Wu, Ze Deng. DDDAS-Based Parallel Simulation of Threat Management for Urban Water Distribution Systems |
18 | -- | 23 | Troels F. Ronnow. Evaluating a Special Class of Two-Body Integrals through Maple's Integral Routine Extension |
24 | -- | 32 | Yi Peng, Li Chen, Jun-Hai Yong. Importance-Driven Isosurface Decimation for Visualization of Large Simulation Data Based on OpenCL |
34 | -- | 40 | Massimo Di Pierro. Portable Parallel Programs with Python and OpenCL |
42 | -- | 50 | Brett Marmaras, J. Jay Wang. Simulation and Visualization of Few-Body Systems and the Differential Precession of Mercury |
52 | -- | 64 | Ferosh Jacob, Adam Wynne, Yan Liu, Jeff Gray. Domain-Specific Languages for Developing and Deploying Signature Discovery Workflows |
66 | -- | 68 | D. E. Stevenson. What Can We Learn From Seventh Graders? |
70 | -- | 76 | Sotirios A. Tsaftaris. A Scientist's Guide to Cloud Computing |
78 | -- | 86 | Carla Martin-Villalba, Alfonso Urquia, Yuri B. Senichenkov, Yuri B. Kolesov. Two Approaches to Facilitate Virtual Lab Implementation |
88 | -- | 0 | Charles Day. Python Power |