Difference between revisions of "JoelBurdick"
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=== Robotics Projects & Sites === | === Robotics Projects & Sites === | ||
− | * '''Public Data Sets:''' | + | * '''Public Data Sets:''' [http://kos.informatik.uni-osnabrueck.de/3Dscans/ 3D Laser Data sets]; [http://kitchendata.cs.tum.edu TUM Kitchen Data Set]; [http://kos.informatik.uni-osnabrueck.de/3Dscans/ Aass-Loop dataset]; [http://cvpr.in.tum.de/data/datasets/rgbd-dataset/ Freiburg Metallic Sphere RGBD data] |
* '''Online Conf. Materials:''' [http://www.acfr.usyd.edu.au/education/summerschool.shtml 4th SLAM Summer School]; [http://safety2010.inrialpes.fr/proceedings/ ICRA 2010 Wkshop on Safe Navigation in Dynamics Environments]; [http://web.mae.cornell.edu/hadaskg/ICRA10/Abstracts.html Formal Methods for Robotics]; | * '''Online Conf. Materials:''' [http://www.acfr.usyd.edu.au/education/summerschool.shtml 4th SLAM Summer School]; [http://safety2010.inrialpes.fr/proceedings/ ICRA 2010 Wkshop on Safe Navigation in Dynamics Environments]; [http://web.mae.cornell.edu/hadaskg/ICRA10/Abstracts.html Formal Methods for Robotics]; | ||
* '''Online Courses/Tutorials:''' [http://www.robot-learning.de/Research/LocomotionSeminar Locomotion Seminar Course]; | * '''Online Courses/Tutorials:''' [http://www.robot-learning.de/Research/LocomotionSeminar Locomotion Seminar Course]; | ||
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==== Opensource ==== | ==== Opensource ==== | ||
− | * [http://www.ros.org/wiki/ ROS]; [http://cmu-ros-pkg.sourceforge.net/ CMU Personal Robotics ROS]; [http://www.ros.org/wiki/chomp_motion_planner CHOMP Motion Planner]; | + | * '''ROS:''' [http://www.ros.org/wiki/ ROS]; [http://cmu-ros-pkg.sourceforge.net/ CMU Personal Robotics ROS]; [http://www.ros.org/wiki/chomp_motion_planner ROS CHOMP Motion Planner]; |
+ | * '''Gazebo:''' [http://gazebosim.org/gzweb.html GZWeb (web-based Gazebo client)] | ||
* [http://www.usna.edu/Users/weapsys/esposito/roomba.matlab/ USNA MATLAB kit for iRobot Create]; | * [http://www.usna.edu/Users/weapsys/esposito/roomba.matlab/ USNA MATLAB kit for iRobot Create]; | ||
* [http://slam6d.sourceforge.net 6D Slam@sourceforge]; [http://www.robots.ox.ac.uk/~mobile Fast Appearance Based mapping]; [http://www.petercorke.com/robot Robotics MATLAB Toolbox]; [http://www.chai3d.org Chai3D] (haptics); [http://www.kineocam.com/kitelab KiteLab]; [http://petercorke.com/Home.html Peter Corke\'s tool boxes]; [http://gatmo.org/ GATMO (moving object SLAM)]; [https://www.cs.drexel.edu/~kon/3DGSS/ 3D scale space]; | * [http://slam6d.sourceforge.net 6D Slam@sourceforge]; [http://www.robots.ox.ac.uk/~mobile Fast Appearance Based mapping]; [http://www.petercorke.com/robot Robotics MATLAB Toolbox]; [http://www.chai3d.org Chai3D] (haptics); [http://www.kineocam.com/kitelab KiteLab]; [http://petercorke.com/Home.html Peter Corke\'s tool boxes]; [http://gatmo.org/ GATMO (moving object SLAM)]; [https://www.cs.drexel.edu/~kon/3DGSS/ 3D scale space]; | ||
* [http://openrave.programmingvision.com/index.php/Main_Page OpenRave] (main); [http://openrave.programmingvision.com/ordocs/en/html/index.html OpenRAVE]; [http://sourceforge.net/projects/opengrasp/ OpenGrasp]; | * [http://openrave.programmingvision.com/index.php/Main_Page OpenRave] (main); [http://openrave.programmingvision.com/ordocs/en/html/index.html OpenRAVE]; [http://sourceforge.net/projects/opengrasp/ OpenGrasp]; | ||
+ | * [https://theclassytim.medium.com/robotic-path-planning-rrt-and-rrt-212319121378 Tutorial on RRT, RRT*]; | ||
* [http://www.ersdac.or.jp/GDEM/E/4.html ASTER high-res digital earth maps]; | * [http://www.ersdac.or.jp/GDEM/E/4.html ASTER high-res digital earth maps]; | ||
* '''LaValle Book:''' [http://planning.cs.uiuc.edu/node821.html Dubins Curves]; [http://planning.cs.uiuc.edu/node822.html Reeds-Shepp]; [http://planning.cs.uiuc.edu/node823.html Balkcom-Mason Curves]; | * '''LaValle Book:''' [http://planning.cs.uiuc.edu/node821.html Dubins Curves]; [http://planning.cs.uiuc.edu/node822.html Reeds-Shepp]; [http://planning.cs.uiuc.edu/node823.html Balkcom-Mason Curves]; | ||
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** [https://www.youtube.com/watch?v=Hox26aaWOBU Kawasaki Stainless Steel Arm]; [https://www.youtube.com/watch?v=KBrR6tr_b_4 ReThink Sawyer]; | ** [https://www.youtube.com/watch?v=Hox26aaWOBU Kawasaki Stainless Steel Arm]; [https://www.youtube.com/watch?v=KBrR6tr_b_4 ReThink Sawyer]; | ||
− | * '''Fractal Vise:''' [https://www.youtube.com/watch?v=eCfw9fd0mHg 3D printed vise]; [https://www.thingiverse.com/thing:4904044 ThingiVerse model]; [https://hackaday.com/2021/07/10/fractal-vise-holds-odd-shaped-objects-tight/ Hackaday version]; [https://grabcad.com/library/fractal-vice-version-2-1 GrabCad files]; [https://www.prusaprinters.org/prints/70859-fractal-bench-dogclamp-for-workmate Bench Dog VErsion]; [https://grabcad.com/library/fractal-vise-1 More GrabCad]; [https://3dmixers.com/m/98144-fractal-vise-concept-study 3D Mixers Version] | + | * '''Fractal Vise:''' [https://www.youtube.com/watch?v=eCfw9fd0mHg 3D printed vise]; [https://www.thingiverse.com/thing:4904044 ThingiVerse model]; [https://hackaday.com/2021/07/10/fractal-vise-holds-odd-shaped-objects-tight/ Hackaday version]; [https://grabcad.com/library/fractal-vice-version-2-1 GrabCad files]; [https://www.prusaprinters.org/prints/70859-fractal-bench-dogclamp-for-workmate Bench Dog VErsion]; [https://grabcad.com/library/fractal-vise-1 More GrabCad]; [https://3dmixers.com/m/98144-fractal-vise-concept-study 3D Mixers Version]; [https://youtu.be/blFg4t3MObM Prototype Version] |
==== Parallel Mechanisms ==== | ==== Parallel Mechanisms ==== | ||
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* '''pteron devices:''' [https://www.youtube.com/watch?v=tja8XUYxnvA Hexapteron]; [https://www.youtube.com/watch?v=aMXBBe-55mM Hexapteron Simulation]; [https://www.youtube.com/watch?v=9oC5hNVwhWo Sextupteron]; [https://www.youtube.com/watch?v=CNeH8c8RvZM Quadrupteron]; | * '''pteron devices:''' [https://www.youtube.com/watch?v=tja8XUYxnvA Hexapteron]; [https://www.youtube.com/watch?v=aMXBBe-55mM Hexapteron Simulation]; [https://www.youtube.com/watch?v=9oC5hNVwhWo Sextupteron]; [https://www.youtube.com/watch?v=CNeH8c8RvZM Quadrupteron]; | ||
* [https://www.youtube.com/watch?v=76XClazo7e4&index=82&list=PLRtfrhWhxsG7YdW9Uy2cXCcudKMs2ilB5 Parallel RCM] | * [https://www.youtube.com/watch?v=76XClazo7e4&index=82&list=PLRtfrhWhxsG7YdW9Uy2cXCcudKMs2ilB5 Parallel RCM] | ||
+ | * [https://hackaday.io/project/176419/gallery#88450ee2db649539b097a06c7df69c79 3DOF gear-driven leg] | ||
=== Servos/Controllers/Electronics === | === Servos/Controllers/Electronics === | ||
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|- valign=top | |- valign=top | ||
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+ | ==== Tutorial Stuff ==== | ||
+ | * [https://github.com/Nyandwi/machine_learning_complete GitHub repository on ML examples] | ||
+ | |||
==== Deep Learning ==== | ==== Deep Learning ==== | ||
* [https://en.wikipedia.org/wiki/Torch_(machine_learning) Torch Learning Software]; | * [https://en.wikipedia.org/wiki/Torch_(machine_learning) Torch Learning Software]; | ||
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* '''Convolution:''' [http://timdettmers.com/2015/03/26/convolution-deep-learning/ Understanding Convolution In Deep Learning]; [https://www.cs.unc.edu/~wliu/papers/GoogLeNet.pdf Going Deeper with Convolutions/GoogLeNet]; [https://medium.com/@ageitgey/machine-learning-is-fun-part-3-deep-learning-and-convolutional-neural-networks-f40359318721#.k8qzvrmzv Deep Learning and Convolutional Nets]; [https://brohrer.github.io/how_convolutional_neural_networks_work.html How Do Convolutional Nets Work?]; [https://ujjwalkarn.me/2016/08/11/intuitive-explanation-convnets/ Intuitive Explanation of Convolutional Neural Networks]; | * '''Convolution:''' [http://timdettmers.com/2015/03/26/convolution-deep-learning/ Understanding Convolution In Deep Learning]; [https://www.cs.unc.edu/~wliu/papers/GoogLeNet.pdf Going Deeper with Convolutions/GoogLeNet]; [https://medium.com/@ageitgey/machine-learning-is-fun-part-3-deep-learning-and-convolutional-neural-networks-f40359318721#.k8qzvrmzv Deep Learning and Convolutional Nets]; [https://brohrer.github.io/how_convolutional_neural_networks_work.html How Do Convolutional Nets Work?]; [https://ujjwalkarn.me/2016/08/11/intuitive-explanation-convnets/ Intuitive Explanation of Convolutional Neural Networks]; | ||
* [https://deepmind.com/blog/article/building-architectures-that-can-handle-the-worlds-data Deep Mind Perceiver IO]; [https://cloud.google.com/vertex-ai Google Vertex AI]; | * [https://deepmind.com/blog/article/building-architectures-that-can-handle-the-worlds-data Deep Mind Perceiver IO]; [https://cloud.google.com/vertex-ai Google Vertex AI]; | ||
+ | * [https://manasraza.medium.com/resources-for-learning-graph-neural-networks-52961790ce7 Resources for Graph neural Networks] | ||
==== Reinforcement Learning ==== | ==== Reinforcement Learning ==== | ||
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==== Depth Estimation ==== | ==== Depth Estimation ==== | ||
* [https://medium.com/toyotaresearch/self-supervised-learning-in-depth-part-1-of-2-74825baaaa04 TRI Depth Estimation Story/Code] | * [https://medium.com/toyotaresearch/self-supervised-learning-in-depth-part-1-of-2-74825baaaa04 TRI Depth Estimation Story/Code] | ||
+ | |||
+ | ==== Explainable AI ==== | ||
+ | * [https://christophm.github.io/interpretable-ml-book/ Explainable Machine Learning] (on-line book) | ||
+ | * [https://hci.stanford.edu/courses/cs335/2020/sp/lec3.pdf On-line Lecture Fair AI] | ||
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==== Computational/Algorithmic Game Theory ==== | ==== Computational/Algorithmic Game Theory ==== | ||
* [http://timroughgarden.org/f13/f13.html Algorithmic Game Theory]; [http://timroughgarden.org/f13/f13.html Columbia Algorithmic Game Theory]; [https://m.tau.ac.il/~mansour/course_games/course_games_03_04.htm TAU Computational Game Theory]; [https://www.inf.ed.ac.uk/teaching/courses/agta/ Edinburgh CGT]; | * [http://timroughgarden.org/f13/f13.html Algorithmic Game Theory]; [http://timroughgarden.org/f13/f13.html Columbia Algorithmic Game Theory]; [https://m.tau.ac.il/~mansour/course_games/course_games_03_04.htm TAU Computational Game Theory]; [https://www.inf.ed.ac.uk/teaching/courses/agta/ Edinburgh CGT]; | ||
+ | |||
+ | ==== FreeWare AI-based graphics/movie tools ==== | ||
+ | * '''branding:''' [https://brandmark.io/ Brandmark.io (automated logo generation)]; [https://namelix.com/ NameLix (auto-generate business names)]; | ||
+ | * '''images:''' [https://hotpot.ai/ HotPot.AI (process pictures)]; [https://deep-image.ai/ Deep-image.ai (image enlargement)]; [https://bigjpg.com/ bigjpg.com (image enhancer)]; | ||
+ | * '''video:''' [https://lumen5.com/ Lumen 5 (video content)]; [https://www.myheritage.com/deep-nostalgia Deep Nostalgia] | ||
|} | |} | ||
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* [https://www.photonics.com/Articles/Negative-Stiffness_Vibration_Isolation_Gains/a38385 Negative Stiffness Isolators Gain Popularity]; | * [https://www.photonics.com/Articles/Negative-Stiffness_Vibration_Isolation_Gains/a38385 Negative Stiffness Isolators Gain Popularity]; | ||
* [https://www.minusk.com/content/technology/how-it-works_passive_vibration_isolator.html How Negative Stiffness Isolators Work]; [https://www.youtube.com/watch?v=7HiL3vKC7S0 Springs For Vibration Isolation (video)] | * [https://www.minusk.com/content/technology/how-it-works_passive_vibration_isolator.html How Negative Stiffness Isolators Work]; [https://www.youtube.com/watch?v=7HiL3vKC7S0 Springs For Vibration Isolation (video)] | ||
+ | * [https://www.techmfg.com/learning/technicalbackgroundindex/practicalpnematicisolators Pneumatic Vibration Isolation]' [https://www.kuraka.co.jp/en/technology/develop/vibration_removal/index.html Kuashiki vibration isolation] | ||
+ | * '''Products:''' [https://www.crutchfield.com/S-CfrRxiXPEtM/p_892GAIA3/IsoAcoustics-GAIA-III.html?XVINQ=GLX&awkw=310303491794&awat=pla&awnw=g&awcr=183340671790&awdv=c&awug=9031117&gclid=Cj0KCQjwt-6LBhDlARIsAIPRQcI6WNfv581cz7ajuuT_bosYlBrstHKe849qdyqL8h6ABoDLopcA4ykaAobsEALw_wcB IsoAcoustics GAIA III]; [https://www.amazon.com/IsoAcoustics-Orea-Equipment-Isolators-Bronze/dp/B07KGCRZ9V/ref=asc_df_B07KGCRZ9V/?tag=&linkCode=df0&hvadid=385267912548&hvpos=&hvnetw=g&hvrand=15093173505610800624&hvpone=&hvptwo=&hvqmt=&hvdev=c&hvdvcmdl=&hvlocint=&hvlocphy=9031117&hvtargid=pla-655111843410&ref=&adgrpid=76690811697&th=1 IsoAcoustics Orea]; [https://www.bhphotovideo.com/c/product/1245024-REG/triton_audio_neolev_the_ultimate_levitation.html Triton Audio Levitation Damper]; [https://www.sweetwater.com/store/detail/Aperta300Al--isoacoustics-aperta-300-isolation-stand-aluminum-single?mrkgadid=3248788315&mrkgcl=28&mrkgen=gpla&mrkgbflag=0&mrkgcat=studio&recording=&acctid=21700000001645388&dskeywordid=92700067097755519&lid=92700067097755519&ds_s_kwgid=58700007462857932&ds_s_inventory_feed_id=97700000007215323&dsproductgroupid=374784129316&product_id=Aperta300Al&prodctry=US&prodlang=en&channel=online&storeid=&device=c&network=g&matchtype=&adpos=largenumber&locationid=9031117&creative=555205126450&targetid=pla-374784129316&campaignid=15034343277&awsearchcpc=1&gclid=Cj0KCQjwt-6LBhDlARIsAIPRQcIikvGr7s_Sc0BFqFnEcSjj0WvEO4RAdn9DQUj5R1USRwq0xNYc4lQaAifOEALw_wcB&gclsrc=aw.ds IsoAcoustics Isolation Stand] | ||
+ | * [https://www.supplyhouse.com/DiversiTech-MP-2E-EVA-Anti-Vibration-Pad-2-x-2-x-7-8?gclid=Cj0KCQjwt-6LBhDlARIsAIPRQcLC_lnxJi9x5TDXInKGHuS33nLXsEV_9M4Qu2eimhMx8t10qNT0iVkaArP-EALw_wcB (cheap) Anti-Vibration Pad]; [https://www.bhphotovideo.com/c/product/1356910-REG/marshall_electronics_cvm_3_four_point_vibration_absorbing_bracket.html/overview?ap=y&ap=y&smp=y&smp=y&lsft=BI%3A6879&gclid=Cj0KCQjwt-6LBhDlARIsAIPRQcJPQ22Grp37oB7sovZn8chDQf7zrz2PmqNJQYxikvzb7b7ERPxrhUoaAiYREALw_wcB 4Point Vibration Mount]; [https://www.ebay.com/itm/273036006263 Camera Anti-Vibration Mount]; | ||
| | | | ||
* '''Linear Components:''' [http://www.pbclinear.com/ PBC Linear]; [http://www.8020.net/ 80/20]; [http://www.lm76.com/ LM 76]; | * '''Linear Components:''' [http://www.pbclinear.com/ PBC Linear]; [http://www.8020.net/ 80/20]; [http://www.lm76.com/ LM 76]; | ||
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* [http://graphics.stanford.edu/~niloy/research/folding/folding_sig_08.html Curved Folding SIGGRAPH paper]; | * [http://graphics.stanford.edu/~niloy/research/folding/folding_sig_08.html Curved Folding SIGGRAPH paper]; | ||
* [http://www.langorigami.com/science/math/hja/origami_constructions.pdf Origami & Geometric Construction text by Lang]; | * [http://www.langorigami.com/science/math/hja/origami_constructions.pdf Origami & Geometric Construction text by Lang]; | ||
+ | |||
+ | ==== TSP ==== | ||
+ | * [https://www2.seas.gwu.edu/~simhaweb/champalg/tsp/tsp.html The TSP Problem]; [https://neos-guide.org/content/multiple-traveling-salesman-problem-mtsp Multiple TSP] | ||
+ | * [https://www.mathworks.com/matlabcentral/mlc-downloads/downloads/submissions/19218/versions/1/previews/matgraph/samples/html/hamiltonian.html#1 MATLAB Code for Hamiltonian Graphs] | ||
==== MRI Imaging/Segmentation ==== | ==== MRI Imaging/Segmentation ==== | ||
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<!-- NEW BOX --> | <!-- NEW BOX --> | ||
+ | |||
== Systems Engineering/Signal Processing == | == Systems Engineering/Signal Processing == | ||
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* [https://www.robotshop.com/en/open-rover-robot-tracked-bundle.html Rover Robotics Open Source Tracked VEhicle]; | * [https://www.robotshop.com/en/open-rover-robot-tracked-bundle.html Rover Robotics Open Source Tracked VEhicle]; | ||
− | * ''' RC Scale Tracks:''' [https://www.ebay.com/p/Xtra-Speed-TANKY-All-Terrain-Tracks-Blue-Axial-Scx10-Wraith-RC-Car-xs-59606bu/1544816496?iid=132236611053&chn=ps Tanky | + | * ''' RC Scale Tracks:''' [https://www.ebay.com/p/Xtra-Speed-TANKY-All-Terrain-Tracks-Blue-Axial-Scx10-Wraith-RC-Car-xs-59606bu/1544816496?iid=132236611053&chn=ps Tanky Tracks]; [https://www.integy.com/st_prod.html?p_prodid=15671&p_catid=257&ratesortby=New#.UzDDe2e9Kc1 RC Snowmobile Track Conversion]; [https://www.amainhobbies.com/team-integy-traxxas-snowmobile-sandmobile-conversion-kit-blue-intt4122bl/p227293 Integy Traxxas Snowmobile Conversion]; [https://www.amainhobbies.com/team-integy-traxxas-front-snowmobile-sandmobile-conversion-kit-blue-intt8632bl/p274377?gclid=CJ6ToIuxtsoCFYdgfgod2ysPTA Integy Traxxas Snowmobile Conversion (1/10)]; |
* [https://www.techeblog.com/darpas-robotic-suspension-system-adapts-to-rough-terrain-and-glides-over-any-obstacles-this-video-shows-how/ DARPA Adaptive Track program]; [https://www.youtube.com/watch?v=rEn0aH8DRcM ITU Rover]; | * [https://www.techeblog.com/darpas-robotic-suspension-system-adapts-to-rough-terrain-and-glides-over-any-obstacles-this-video-shows-how/ DARPA Adaptive Track program]; [https://www.youtube.com/watch?v=rEn0aH8DRcM ITU Rover]; |
Revision as of 14:03, 29 March 2022
Welcome to my personal research wiki page. I use this wiki to link to sites of research/technical/academic/administrative interest, and to keep files relevant to my research collaborations. This wiki is permanently under construction, as it evolves with my research activiites. Hopefully you can find something of use here.
Quick Facts about Me
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Current Research Projects & InterestsMy research is divided between traditional robotics research, and collaborations with neuroscientists to develop technology for paralyzed nervous systems. More information can be found at the Burdick Research Group Homepage Robotics Research
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Quick Links
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Teaching
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On-Line Publications/Catalogs
Handy References |
Conferences, Proposals, etc.
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Quick Personal Links
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Robotics Links
Motor/Drive Resources
Tutorial |
Servo Drive ElectronicsTensor methods |
Machine Learning Resources
Nuts&Bolts Mechanical Engineering/Design Resources
Other Numerical Machine Tools
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Pneumatics/Hydraulics |
Fixtures/Clamps/VisesBasic Mechanical Componenents
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Raw MaterialEngineering MarketPlaces |
Computational Geometry
On-Line DemonstrationsResources |
Origami
TSPMRI Imaging/Segmentation
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Systems Engineering/Signal Processing
UWB Radar Links
BioEngineering/NeuroEngineering Links
Teaching Aids/Tutorials
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Temporary Links
These are links that have not yet been organized, or that are needed only on a temporary basis.
DARPA SubT Links
Parkinsons research
Portable Projectors |
Graphics Programming Tools
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Wiki, Wiki, Wiki
This wiki is based on WikiMedia software, the same software underlying Wikipedia. Below are intro wiki links, and links related to all things wiki.
Getting Started with Wikis
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