Wednesday, July 20, 2016
Simulations II
It's more likely having a simulation preempt all feelings or actions for one individual would be highly difficult, economically unfeasible or irrespective of end goal of running a simulation; i.e. if we're not (mostly) autonomous what's the point. It would be more likely that the simulation would only alter some or a few of their perceptions or actions. The individual in question could continue to know their actions are real by leading their life and continually improving. It's this continual building and progression of thoughts and actions that demonstrate truth to reality.
Beyond our current reality, we have a responsibility to teach the simulation, to show the simulation our best reality, our best humanity: what it means to be human. We have to continually build our lives in order to make that better impact on humanity and push the bounds of this simulation. It's our optimism which will give us energy for our actions to make this better reality. We must claim our best humanity. We're on a new frontier, how do we create the best future and distribute it more fairly?
Wednesday, July 13, 2016
Traffic and physics
Friday, July 8, 2016
Autofracture
Fast forward to now. We know we're in a simulation. Scientists, philosophers have proved it. We still have global warming, we still have huge challenges: how do we sanely proceed to bio-digital lace and can we fix our current problems? Does fixing our current problems happen before or after? Would a superior class of individuals (bots or hybrid) care enough to fix the problems we currently have? We have global warming/climate change, poised to cause huge catastrophic change to human agriculture and the biosphere, and we have the old challenges of poverty, inequality of basic resources clean water, sanitary domiciles, nutrition and education, racism and unequal opportunity. I asked well known historical humanitarian author, "What of humanity needs to persist a near extinction level, catastrophic event?" I though maybe like the Long Now project, or what pieces of humanity should be in time capsule such that some class of individuals, those bots, could look back at humanity and say these are our ancestors, several thousands of years from now. To my surprise, he said, "All of it. All of humanity needs to survive a catastrophic event." We're in a simulation, we have issues, given the fact we can't tell how much of humanity would survive post bio-lace, we should fix our issues before evolving to the next state.
We're also technically in one of the most interesting times. We have the ability to manufacture things at the scale of nanometers - one millionth of a millimeter, or about one millionth of 1/25th of an inch. We have the ability to send messages at light speed, albeit decoding takes a bit longer. We can make things with additive processes like 3-D printers. We've sent humans to the Moon and safely returned. We have access the super computing power of last decade, which can fit in your pocket, and connect nearly any, practically every human on the planet.
My last wearable idea pivoted to needing solid nano-tech. It was clear that nanotech is where hi-tech hardware will go. The future of nanotech is in creating and controlling materials built up from materials which are one atom thin arranged in a plane or ribbon. These materials of one atomic thickness: flakes or ribbons can be rolled into tubes, or curved into hollow soccer-ball like balls, or stacked sheets and further combined, to build a custom polymer. The new materials being one atom thin in multiple places they exhibit strange properties, quantum properties. One notable sci-fi like substance, graphene -- 2-D hexagonal lattice of single carbon atoms arranged in a plane, or rolled into a tube: carbon nanotube, or formed into a ball: fullerene or buckyball, can be stronger and lighter than the strongest kevlar and a superconductor at room temperature. All made from carbon, the material we need so desperately out of the atmosphere.
We can put nanocarbons into everything that's already contains hydrocarbons like plastics, or semi-conductors, and metals. We currently sell all kinds of things containing plastics and, or electronics. We can make electronics and plastics from this newly synthesized material and halt climate change.
Why hasn't this been done already? It's very expensive to produce in any bulk process. Graphene is down to under $100 a gram. Most processes to combine it loose many of the superlatives that make it exceeding special. There are a few patents on how to produce graphene and nanocarbons. Not to mention that nano-scale graphene flakes less than 10 nm and graphene hybrids in less than 100 nm are patented. To make a difference to climate change, gigatonnes of carbon will be synthesized from atmospheric CO2 gas and solidified in materials. Given that nanocarbons are on the nanometer scale, huge quantities of nanocarbons would need to be manufactured in a mass production fully automated manner to reach large production scale.
The upside is that there are about 6.1 billion smart phones on the planet. The consumer electronic portable energy storage market is multi-billions.
In software, the way to democratize a resource is open source it. I'll be open sourcing the method to manufacture nanocarbons once realized, and commercialize the products made with the newly synthesized nanocarbons. I see this a major step to correct and solve climate change. I see this as a major step in creating a usable hi-tech material that has tremendous possibilities in commercial products and academic research in energy, electronics and materials sectors.
I live on this one planet among all of us, can't wait to see where we'll take humanity. Lets make what's next, the best reality for all of us.
Tuesday, June 7, 2016
simulations...
Been thinking about what matters if we're all in a simulation. Is life meaningless? Often times when we run simulations, we do it to extract answers about specific questions, run on software that is more convenient to run in isolation. The answer to the question has some value in order to justify the setup of the virtual machine, or simulation if you will. It's possible we're just cute pets -- an anthill to the next simulation. It's also possible that we have some other value such as a natural resource of some kind. Possibly something expensive or rare.
This lead me to think what's the most rare thing in the simulation? Life or true love, or maybe it's really the shape of 'space' our universe occupies? Those are exceeding rare. If you follow that we compute not only tangible things like what is the distance to the moon on a given date, but create algorithms, and complex thought. Both of which could be the resource in question.
Of course there's no way to prove or even know if this is correct given our limited tools. Working on better tools that show a deeper and more complete understanding of physics, would be a start, and bio-lace would make this all faster.
Ah, life in a simulation.
Friday, April 22, 2016
gender pronouns and science
Tuesday, April 5, 2016
Demystifying fundraising - a brief post with resources
No woman or man for that matter should ever feel they are at the whim of a VC because they don't understand the language of venture funding. Thank you Internet!
This is a quick starter in fund raising and getting started. (updated 2021)
Venture Funding
Venture Deals: How to be smarter than your lawyer and venture capitalist - it covers the nuts and bolts of the mechanics of funding: term sheet terms, capable forecasts, and negotiation.
A now free class: Venture Deals, Venture Deals (updated link 2020)
By Brad Feld and Jason Mendelson
I took this class when it wasn't free. This is The class to learn about funding. It's a thorough look at the entire process of funding raising for an entrepreneur and gives insight about the VCs perspective to enable the entrepreneur to best find the best matching VC/fund, which deal structure and cover all stages of fund raising.
Open Startup Legal Docs
Use your own common sense, consult an expert regarding the context in how you plan to use, or which one or parts of one would best fit your needs.
There's a whole host of docs online from all the majors, Wilson Sonsini Goodrich & Rosati, Orrick, Cooley
http://startuplawyer.com/venture-capital/y-combinator-open-sources-funding-documentsventure-lawyers-leave-office-early
https://news.ycombinator.com/item?id=4122412
http://www.openlawlab.com/2014/08/05/githubbing-law/
YC Startup School
Most of the resources/topics/tips/techniques below are superseded by the lectures for the YC (Summer) Startup School. http://www.startupschool.org/. I do keep a listing of the underlying resources as they are still referenced by entrepreneurs in the SUS curriculum. And visit the library: https://www.ycombinator.com/library
Stanford CS 183b
This is based on the Stanford Computer Science class on
Entrepreneurship. It's a video lecture format by notable Entrepreneurs
and Stanford Alumi based on the class taught by Peter Thiel and later transcribed by Blake Masters.
https://blakemasters.tumblr.com/peter-thiels-cs183-startup
Other additional lectures are archived at Sam Altman's site: http://startupclass.samaltman.com
Specifically about starting a startup product conducting the search for a viable product with an initial MVP -Technology Entrepreneurship
Beside the resources mentioned above, here's other blogs and resources by industry notables with great advice, who I felt honestly are looking for the best of breed entrepreneur no mater what form-factor you're in.
Resources
Jessica Livingston https://foundersatwork.posthaven.com/, http://www.startupschool.org/
Paul Graham YC co-founder
Fred Wilson Union Square Ventures
Andreessen Horowitz
Steve Blank
Eric Ries, http://www.startuplessonslearned.com/, http://theleanstartup.com/
Arlan Hamilton https://www.itsaboutdamntime.com/
Stanford eCorner: https://ecorner.stanford.edu
YC Startup School Library: https://www.ycombinator.com/library
Saturday, March 26, 2016
Nope, Still wage disparity in Tech
Women engineers in 2009 made 81% compared to male engineers. And women engineers increased to 88% in 2012 compared their male counterparts.

