User contributions for Jmarken
From Murray Wiki
Jump to navigationJump to search
3 August 2023
- 18:4318:43, 3 August 2023 diff hist −34 Andras Gyorgy, Aug 2023 →Schedule
- 17:3517:35, 3 August 2023 diff hist +35 Andras Gyorgy, Aug 2023 →Schedule
- 17:3517:35, 3 August 2023 diff hist −49 Andras Gyorgy, Aug 2023 →Schedule Tag: Manual revert
- 17:2217:22, 3 August 2023 diff hist +8 Andras Gyorgy, Aug 2023 →Schedule
- 17:1617:16, 3 August 2023 diff hist +14 Andras Gyorgy, Aug 2023 →Schedule
- 17:1617:16, 3 August 2023 diff hist +27 Andras Gyorgy, Aug 2023 →Schedule
- 17:1117:11, 3 August 2023 diff hist −3 Andras Gyorgy, Aug 2023 →Schedule
- 14:4814:48, 3 August 2023 diff hist +21 Andras Gyorgy, Aug 2023 →Schedule
21 October 2022
25 March 2022
- 05:3105:31, 25 March 2022 diff hist +74 Yan Zhang, 28 Mar 2022 No edit summary
- 05:3005:30, 25 March 2022 diff hist +22 Yan Zhang, 28 Mar 2022 No edit summary
13 February 2020
- 19:4319:43, 13 February 2020 diff hist 0 David Garcia, 13 Feb 2020 No edit summary current
11 February 2020
- 18:2218:22, 11 February 2020 diff hist 0 David Garcia, 13 Feb 2020 →Schedule
- 17:0517:05, 11 February 2020 diff hist +7 David Garcia, 13 Feb 2020 →Schedule
19 December 2019
- 15:4015:40, 19 December 2019 diff hist −1 Group Schedule, Winter 2020 →Week 4: 27-31 Jan
- 15:4015:40, 19 December 2019 diff hist +1 Group Schedule, Winter 2020 →Week 1: 6-10 Jan
3 December 2019
- 03:0903:09, 3 December 2019 diff hist +85 Group Schedule, Fall 2019 →Week 10: 2-6 Dec current
7 October 2019
- 22:5922:59, 7 October 2019 diff hist −3 Group Schedule, Fall 2019 →Week 2: 7-11 Oct
- 22:5622:56, 7 October 2019 diff hist +29 Group Schedule, Fall 2019 →Week 2: 7-11 Oct
- 22:5622:56, 7 October 2019 diff hist +89 Group Schedule, Fall 2019 →Week 2: 7-11 Oct
26 September 2019
27 January 2019
- 21:5521:55, 27 January 2019 diff hist +2 Sara Molinari, 29 Jan 2019 →Schedule
- 21:5421:54, 27 January 2019 diff hist +14 Sara Molinari, 29 Jan 2019 →Schedule
- 21:5321:53, 27 January 2019 diff hist −1 Sara Molinari, 29 Jan 2019 →Schedule
26 January 2019
- 21:5721:57, 26 January 2019 diff hist +12 SURF discussions, Jan 2019 →31 Jan (Thu)
- 21:0621:06, 26 January 2019 diff hist +7 Sara Molinari, 29 Jan 2019 →Schedule
10 December 2018
- 23:1223:12, 10 December 2018 diff hist +6 SURF 2019: Engineering a synthetic high-bandwidth intercellular communication system through plasmid conjugation No edit summary current
- 23:1023:10, 10 December 2018 diff hist +2,562 SURF 2019: Engineering a synthetic high-bandwidth intercellular communication system through plasmid conjugation No edit summary
- 22:5722:57, 10 December 2018 diff hist +1,629 SURF 2019: Engineering a synthetic high-bandwidth intercellular communication system through plasmid conjugation No edit summary
- 22:2122:21, 10 December 2018 diff hist +1,063 SURF 2019: Engineering a synthetic high-bandwidth intercellular communication system through plasmid conjugation No edit summary
- 19:0419:04, 10 December 2018 diff hist +158 SURF 2019: Engineering a synthetic high-bandwidth intercellular communication system through plasmid conjugation No edit summary
- 18:5918:59, 10 December 2018 diff hist −18 SURF 2019: Engineering a synthetic high-bandwidth intercellular communication system through plasmid conjugation No edit summary
- 18:5818:58, 10 December 2018 diff hist +498 N File:Message Routing Schematic.png Fig. 1: (a) A 3-node linear signal path built with two guide RNAs and one integrase. The signal plasmid originally starts in Cell A, and cannot be sent to Cell C as the address contains the C gRNA binding site. However, once the signal plasmid enters C... current
- 18:5718:57, 10 December 2018 diff hist +2,060 SURF 2019: Engineering a synthetic high-bandwidth intercellular communication system through plasmid conjugation No edit summary
- 18:3318:33, 10 December 2018 diff hist +24 SURF 2019: Engineering a synthetic high-bandwidth intercellular communication system through plasmid conjugation No edit summary
- 18:3318:33, 10 December 2018 diff hist +83 N File:3-node Message Routing figure.png Schematic figure for John Marken's message routing circuit. For the 2019 SURF page. current
- 18:2918:29, 10 December 2018 diff hist +3,195 N SURF 2019: Engineering a synthetic high-bandwidth intercellular communication system through plasmid conjugation Created page with "'''2019 SURF project description''' * Mentor: Richard Murray * Co-mentor: John Marken '''Background''' In order to realize many of synthetic biology's long-ter..."