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Kevin C. Chen
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2020 – today
- 2023
- [b1]Kevin C. Chen:
Protocols and Devices for Scalable Spin-Photon Quantum Networks. MIT, USA, 2023
2010 – 2019
- 2015
- [c5]Chicheng Zhang, Jimin Song, Kamalika Chaudhuri, Kevin C. Chen:
Spectral Learning of Large Structured HMMs for Comparative Epigenomics. NIPS 2015: 469-477 - [i2]Chicheng Zhang, Jimin Song, Kevin C. Chen, Kamalika Chaudhuri:
Spectral Learning of Large Structured HMMs for Comparative Epigenomics. CoRR abs/1506.01744 (2015) - 2012
- [j5]Rajat Shuvro Roy, Kevin C. Chen, Anirvan M. Sengupta, Alexander Schliep:
SLIQ: Simple Linear Inequalities for Efficient Contig Scaffolding. J. Comput. Biol. 19(10): 1162-1175 (2012) - 2011
- [i1]Rajat Shuvro Roy, Kevin C. Chen, Anirvan M. Sengupta, Alexander Schliep:
SLIQ: Simple Linear Inequalities for Efficient Contig Scaffolding. CoRR abs/1111.1426 (2011)
2000 – 2009
- 2006
- [c4]Kamalika Chaudhuri, Kevin C. Chen, Radu Mihaescu, Satish Rao:
On the tandem duplication-random loss model of genome rearrangement. SODA 2006: 564-570 - 2005
- [j4]Kevin C. Chen, Lior Pachter:
Bioinformatics for Whole-Genome Shotgun Sequencing of Microbial Communities. PLoS Comput. Biol. 1(2) (2005) - [c3]Abraham Bachrach, Kevin C. Chen, Chris Harrelson, Radu Mihaescu, Satish Rao, Apurva Shah:
Lower Bounds for Maximum Parsimony with Gene Order Data. Comparative Genomics 2005: 1-10 - 2004
- [j3]Moses Charikar, Kevin C. Chen, Martin Farach-Colton:
Finding frequent items in data streams. Theor. Comput. Sci. 312(1): 3-15 (2004) - 2002
- [c2]Moses Charikar, Kevin C. Chen, Martin Farach-Colton:
Finding Frequent Items in Data Streams. ICALP 2002: 693-703 - 2000
- [j2]Kevin C. Chen, Dannie Durand, Martin Farach-Colton:
NOTUNG: A Program for Dating Gene Duplications and Optimizing Gene Family Trees. J. Comput. Biol. 7(3-4): 429-447 (2000) - [c1]Kevin C. Chen, Dannie Durand, Martin Farach-Colton:
Notung: dating gene duplications using gene family trees. RECOMB 2000: 96-106
1990 – 1999
- 1998
- [j1]Kevin C. Chen, Peter T. Cummings, Roseanne M. Ford:
Perturbation Expansion of Alt's Cell Balance Equations Reduces to Segel's One-Dimensional Equations for Shallow Chemoattractant Gradients. SIAM J. Appl. Math. 59(1): 35-57 (1998)
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