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Android malware family classification based on resource consumption over time.

, , , , , and . MALWARE, page 31-38. IEEE Computer Society, (2017)

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Debugging Debug Information With Neural Networks., , and . IEEE Access, (2022)A theoretical evaluation of peer-to-peer internal clock synchronization., , , and . Autonomics, page 1. ICST, (2008)AndroDFA: Android Malware Classification Based on Resource Consumption., , , , , and . Inf., 11 (6): 326 (2020)Dynamic quorums for DHT-based enterprise infrastructures., , , , and . J. Parallel Distributed Comput., 68 (9): 1235-1249 (2008)Where Did My Variable Go? Poking Holes in Incomplete Debug Information., , , and . CoRR, (2022)Virtual Tree: A Robust Overlay Network for Ensuring Interval Valid Queries in Dynamic Distributed Systems., , , and . ICDCN, volume 7129 of Lecture Notes in Computer Science, page 197-200. Springer, (2012)Android malware family classification based on resource consumption over time., , , , , and . MALWARE, page 31-38. IEEE Computer Society, (2017)Principled Composition of Function Variants for Dynamic Software Diversity and Program Protection., , and . ASE, page 183:1-183:5. ACM, (2022)Structure-less content-based routing in mobile ad hoc networks., , , , and . ICPS, page 37-46. IEEE Computer Society, (2005)On The Accuracy of Event Distribution Lists for Publish/Subscribe in Dynamic Distributed Systems., , , , , and . ICDCS Workshops, page 31. IEEE Computer Society, (2006)