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Carnegie Mellon 15-859U: Theory's Greatest Hits, 2009

Theory's Greatest Hits, 2009. Http:/ www.cs.cmu.edu/ odonnell/hits09/. Monday, April 26, 2010. Tight bounds for Clock Synchronization [Lenzen, Locher, Wattenhofer PODC '09]. The largest skew between any two logical clocks in the network (global skew) is small. The largest skew between the logical clocks of any pair of adjacent nodes in the network (local skew) is small. The maximum possible skew between any pair of nodes degrades smoothly as a function of the distance between the nodes (gradient property).

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Carnegie Mellon 15-859U: Theory's Greatest Hits, 2009 | theory-hits09.blogspot.com Reviews
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Theory's Greatest Hits, 2009. Http:/ www.cs.cmu.edu/ odonnell/hits09/. Monday, April 26, 2010. Tight bounds for Clock Synchronization [Lenzen, Locher, Wattenhofer PODC '09]. The largest skew between any two logical clocks in the network (global skew) is small. The largest skew between the logical clocks of any pair of adjacent nodes in the network (local skew) is small. The maximum possible skew between any pair of nodes degrades smoothly as a function of the distance between the nodes (gradient property).
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Carnegie Mellon 15-859U: Theory's Greatest Hits, 2009 | theory-hits09.blogspot.com Reviews

https://theory-hits09.blogspot.com

Theory's Greatest Hits, 2009. Http:/ www.cs.cmu.edu/ odonnell/hits09/. Monday, April 26, 2010. Tight bounds for Clock Synchronization [Lenzen, Locher, Wattenhofer PODC '09]. The largest skew between any two logical clocks in the network (global skew) is small. The largest skew between the logical clocks of any pair of adjacent nodes in the network (local skew) is small. The maximum possible skew between any pair of nodes degrades smoothly as a function of the distance between the nodes (gradient property).

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Carnegie Mellon 15-859U: Theory's Greatest Hits, 2009

http://theory-hits09.blogspot.com/2010/04/this-week-i-will-present-paper.html

Theory's Greatest Hits, 2009. Http:/ www.cs.cmu.edu/ odonnell/hits09/. Tuesday, April 13, 2010. This week, I will present the paper "Regularity lemmas and combinatorial algorithms" by N. Bansal and R. Williams. This introduces a new approach for combinatorial algorithms for fundamental problems exploiting regularity concepts from graph theory and additive combinatorics. Subscribe to: Post Comments (Atom). Jan 28: Deterministic algorithms for the Lovász Local Lemma (Shiva). Mar 11: Spring Break, no class.

2

Carnegie Mellon 15-859U: Theory's Greatest Hits, 2009: April 2010

http://theory-hits09.blogspot.com/2010_04_01_archive.html

Theory's Greatest Hits, 2009. Http:/ www.cs.cmu.edu/ odonnell/hits09/. Monday, April 26, 2010. Tight bounds for Clock Synchronization [Lenzen, Locher, Wattenhofer PODC '09]. The largest skew between any two logical clocks in the network (global skew) is small. The largest skew between the logical clocks of any pair of adjacent nodes in the network (local skew) is small. The maximum possible skew between any pair of nodes degrades smoothly as a function of the distance between the nodes (gradient property).

3

Carnegie Mellon 15-859U: Theory's Greatest Hits, 2009: Intrinstic Robustness of the Price of Anarchy

http://theory-hits09.blogspot.com/2010/03/intrinstic-robustness-on-price-of.html

Theory's Greatest Hits, 2009. Http:/ www.cs.cmu.edu/ odonnell/hits09/. Monday, March 22, 2010. Intrinstic Robustness of the Price of Anarchy. Everybody loves cookies. Even us, the students in 15-589U class, love cookies. Thus, for Thursday's class, Ryan, who wishes us all to attend the talk, will bring cookies. Alas, we are 12 students in the class, and Ryan only has 11. Cookies. But what if each of us cares only about how many cookies (s)he gets? Therefore, we all ask for cookies, and no one gets any!

4

Carnegie Mellon 15-859U: Theory's Greatest Hits, 2009: February 2010

http://theory-hits09.blogspot.com/2010_02_01_archive.html

Theory's Greatest Hits, 2009. Http:/ www.cs.cmu.edu/ odonnell/hits09/. Monday, February 22, 2010. An O(log n / loglog n)-approximation algorithm for the Asymmetric Travelling Salesperson problem. In this Thursday's seminar, we will go over the recent SODA 2010 paper which gives an O(log n/loglog n)-approximation algorithm for the Asymmetric Travelling Salesperson (ATSP) problem ( paper link. In the recent paper, Asadpour et al. consider the same LP and give an improved algorithm (based on rounding th...

5

Carnegie Mellon 15-859U: Theory's Greatest Hits, 2009: Fully Homomorphic Encryption Scheme

http://theory-hits09.blogspot.com/2010/03/fully-homorphic-encryption-scheme.html

Theory's Greatest Hits, 2009. Http:/ www.cs.cmu.edu/ odonnell/hits09/. Monday, March 29, 2010. Fully Homomorphic Encryption Scheme. The paper this week is about how to construct "fully homomorphic" encryption scheme. Is called " fully homomorphic. As the encryption scheme of the original paper is based on ideal lattice which is quite complex algebraic object, we will instead present a followup work (by Gentry along with Marten van Dijk, Shai Halevi, and Vinod Vaikuntanathan) which simplify the first pape...

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Carnegie Mellon 15-859U: Theory's Greatest Hits, 2009

Theory's Greatest Hits, 2009. Http:/ www.cs.cmu.edu/ odonnell/hits09/. Monday, April 26, 2010. Tight bounds for Clock Synchronization [Lenzen, Locher, Wattenhofer PODC '09]. The largest skew between any two logical clocks in the network (global skew) is small. The largest skew between the logical clocks of any pair of adjacent nodes in the network (local skew) is small. The maximum possible skew between any pair of nodes degrades smoothly as a function of the distance between the nodes (gradient property).

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