All Stories

  1. Envisioning CS1 and CS2: The Future of Introductory Problem Solving and Programming
  2. Free Interactive Textbooks for Teaching Parallel and Distributed Computing Across the Computer Science Curriculum
  3. U.S. Government-Funded Opportunities for CS Educators
  4. ASM Visualizer: A Learning Tool for Assembly Programming
  5. Fostering Creativity: Student-Generative AI Teaming in an Open-Ended CS0 Assignment
  6. Hands-on parallel & distributed computing with Raspberry Pi devices and clusters
  7. A Free Online Textbook Introducing Computer Architecture Topics
  8. Evaluating FFT performance of the C and Rust Languages on Raspberry Pi platforms
  9. Teaching Distributed Computing Fundamentals using Raspberry Pi Clusters
  10. Teaching PDC in the Time of COVID: Hands-on Materials for Remote Learning
  11. Dive into Systems
  12. TextbooksForAll
  13. Teaching Parallel and Distributed Computing in the Time of COVID
  14. Teaching Web-Attacks on a Raspberry Pi Cyber Range
  15. Evaluating Cryptographic Performance of Raspberry Pi Clusters
  16. Energy-Efficient Analysis of Synchrophasor Data using the NVIDIA Jetson Nano
  17. PDCunplugged: A Free Repository of Unplugged Parallel Distributed Computing Activities
  18. Incorporating Parallel Computing in the Undergraduate Computer Science Curriculum
  19. Introducing Beginners to Distributed Computing using Raspberry Pi Clusters
  20. A Raspberry Pi Mesh Sensor Network for Portable Perimeter Security
  21. Deep Learning for Inexpensive Image Classification of Wildlife on the Raspberry Pi
  22. The Adventures of ScriptKitty
  23. Leveraging MapReduce and Synchrophasors for Real-Time Anomaly Detection in the Smart Grid
  24. Designing a Raspberry Pi sensor network for remote observation of wildlife
  25. Exploring RNNs for analyzing Zeek HTTP data
  26. Exploring Parallel Computing with OpenMP on the Raspberry Pi
  27. The Adventures of ScriptKitty
  28. Towards Energy-Proportional Anomaly Detection in the Smart Grid
  29. Exploring the raspberry Pi for data summarization in wireless sensor networks
  30. Investigating tensorflow for airport facial identification
  31. Integrating historical and real-time anomaly detection to create a more resilient smart grid architecture
  32. Teaching Parallel and Distributed Computing with MPI on Raspberry Pi Clusters
  33. Portable Parallel Computing with the Raspberry Pi
  34. Using Inexpensive Microclusters and Accessible Materials for Cost-Effective Parallel and Distributed Computing Education
  35. Investigating a Raspberry Pi cluster for detecting anomalies in the smart grid
  36. Leveraging single board computers for anomaly detection in the smart grid
  37. Real-time regex matching with apache spark
  38. Measuring I/O Performance of Lustre and the Temporary File System for Tradespace Applications on HPC Systems
  39. Teaching Parallel Computing with OpenMP on the Raspberry Pi (Abstract Only)
  40. Can we really do it?
  41. Evaluating single board computer clusters for cyber operations
  42. Workshop 24-Roundtable I Introduction
  43. The Micro-Cluster Showcase
  44. Applying clustering algorithms to determine authorship of chinese twitter messages
  45. Accurate simulation of large collections of phylogenetic trees
  46. Heterogeneous Compression of Large Collections of Evolutionary Trees
  47. Budget Beowulfs
  48. Nifty Assignments
  49. Parallel Author Verification of E-mail (Abstract Only)
  50. Using MapReduce to Compare Large Collections of Phylogenetic Trees
  51. A Network-Based Approach for Identifying Cancer Causing Pathogens
  52. Geofold: Topology-based protein unfolding pathways capture the effects of engineered disulfides on kinetic stability
  53. An efficient and extensible approach for compressing phylogenetic trees
  54. Paper Mâché: Creating Dynamic Reproducible Science
  55. A Novel Approach for Compressing Phylogenetic Trees
  56. MrsRF: an efficient MapReduce algorithm for analyzing large collections of evolutionary trees
  57. TreeZip: A New Algorithm for Compressing Large Collections of Evolutionary Trees
  58. Using tree diversity to compare phylogenetic heuristics
  59. New Approaches to Compare Phylogenetic Search Heuristics