Saturday, November 22, 2014

Lunar Bases and Space Activities of the 21st Century

Lunar Bases and Space Activities of the 21st Century
W. W. Mendell, Editor ©1985, Lunar and Planetary Institute

I am perplexed, moody, and a bit down in spirit. My arm and hand still tingle and hurt from the shingles we experience several years ago and so it is easier to read than type. 

These posts have been few and far between and yet you folks continue to make suggestions that are interesting and show a continued interest in going back to the Moon with humans. I will be 77 New Years Eve and at the rate we are going I will need to live at least as long as my 104 year old mom. (will visit this week for Thanksgiving)

I grew up with Buck Rogers, enjoyed 2001: A Space Odyssey, and watched sliding doors open on Star Trek.  I watched Apollo 11 land on the Moon with a Black and White TV and snapped a picture on time exposure with an early roll type Polaroid.  

Today we think nothing of doors that open as we approach and smart phones are so common that my 7 year old granddaughter just tells me to "ask your phone" when I don't have the answer to her questions.  :-)  She politely asks to use my tablet to play games and helps grandma learn how to swipe on her tablet to play Candy Crush. :-)

With all this in mind I thought I should try and find things that might be interesting about setting up camp on the Moon.  Too, too, too, many things.  It would be so challenging to engineer  and develop the ability to live on such a hostile environment.  What fun.

As it turns out, it is also interesting to continue to live on mother Earth.  More and more people and machines that need to be fed in many ways.   

Let me mention just one for a taste.  Hydrogen.  You need Hydrogen and Oxygen for rocket fuel.  You use Hydrogen with Oxygen for fuel cells to make electricity.  Some say we should burn Hydrogen in cars.  Plastics have hydrogen in them as do we.  Water is 2 parts Hydrogen and 1 part Oxygen.

Many ways to get Hydrogen. http://en.wikipedia.org/wiki/Hydrogen 

If I mention a way to get Hydrogen on the Moon some will say what about here on Earth.  Spend your money here first.  Okay.  How about using Biology?
- LRK -

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Biohydrogen is defined as hydrogen produced biologically, most commonly by algaebacteria and archaea. Biohydrogen is a potential biofuel obtainable from both cultivation and from waste organic materials.[1]

Currently, there is a huge demand of the chemical hydrogen. There is no log of the production volume and use of hydrogen world-wide, however consumption of hydrogen was estimated to have reached 900 billion cubic meters in 2011.[2]
..
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It would appear that there is an interest in producing Hydrogen with the small and living.
- LRK -

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Crit Rev Microbiol. 1998;24(1):61-84.

Microbial production of hydrogen: an overview.

Abstract

Production of hydrogen by anaerobes, facultative anaerobes, aerobes, methylotrophs, and photosynthetic bacteria is possible. Anaerobic Clostridia are potential producers and immobilized C. butyricum produces 2 mol H2/mol glucose at 50% efficiency. Spontaneous production of H2 from formate and glucose by immobilized Escherichia coli showed 100% and 60% efficiencies, respectively. Enterobactericiae produces H2 at similar efficiency from different monosaccharides during growth. Among methylotrophs, methanogenes, rumen bacteria, and thermophilic archae, Ruminococcus albus, is promising (2.37 mol/mol glucose). Immobilized aerobic Bacillus licheniformis optimally produces 0.7 mol H2/mol glucose. Photosynthetic Rhodospirillum rubrum produces 4, 7, and 6 mol of H2 from acetate, succinate, and malate, respectively. Excellent productivity (6.2 mol H2/mol glucose) by co-cultures of Cellulomonas with a hydrogenase uptake (Hup) mutant of R. capsulata on cellulose was found. Cyanobacteria, viz., Anabaena, Synechococcus, and Oscillatoria sp., have been studied for photoproduction of H2. Immobilized A. cylindrica produces H2 (20 ml/g dry wt/h) continually for 1 year. Increased H2 productivity was found for Hup mutant of A. variabilis. Synechococcus sp. has a high potential for H2 production in fermentors and outdoor cultures. Simultaneous productions of oxychemicals and H2 by Klebseilla sp. and by enzymatic methods were also attempted. The fate of H2 biotechnology is presumed to be dictated by the stock of fossil fuel and state of pollution in future.
PMID:
 
9561824
 
[PubMed - indexed for MEDLINE]
...
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Waste is something we try and get rid of and we produce a lot of organic waste here on Earth and I am sure we will generate a lot of organic waste on the Moon should we go back with humans.  
- LRK -

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Microbial hydrogen production by bioconversion of crude glycerol: A review

  • Saurabh Jyoti Sarmaa
  • Satinder Kaur Brara
  • Eduardo Bittencourt Sydneyb
  • Yann Le Bihanc,
  • Gerardo Buelnac
  • Carlos Ricardo Soccolb
    • Abstract

      Hydrogen is a clean source of energy with no harmful byproducts produced during its combustion. Bioconversion of different organic waste materials to hydrogen is a sustainable technology for hydrogen production and it has been investigated by several researchers. Crude glycerol generated during biodiesel manufacturing process can also be used as a feedstock for hydrogen production using microbial processes. The possibility of using crude glycerol as a feedstock for biohydrogen production has been reviewed in this article. A review of recent global biodiesel and crude glycerol production and their future market potential has also been carried out. Similarly, different technical constraints of crude glycerol bioconversion have been elaborately discussed and some strategies for improved hydrogen yield have also been proposed. It has been underlined that use of crude glycerol from biodiesel processing plants for hydrogen production has many advantages over the use of other organic wastes as substrate. Most importantly, it will give direct economic benefit to biodiesel manufacturing industries, which in turn will help in increasing biofuel production and it will partially replace harmful fossil fuels with biofuels. However, different impurities present in crude glycerol are known to inhibit microbial growth. Hence, suitable pretreatment of crude glycerol is recommended for maximum hydrogen yield. Similarly, by using suitable bioreactor system and adopting continuous mode of operation, further investigation of hydrogen production using crude glycerol as a substrate should be undertaken. Furthermore, isolation of more productive strains as well as development of engineered microorganism with enhanced hydrogen production potential is recommended. Strategies for application of co-culture of suitable microorganisms as inoculum for crude glycerol bioconversion and improved hydrogen production have also been proposed.
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Bacteria that live without Oxygen.  Hmmm, sounds interesting.  Where might I go that seems to be lacking in Oxygen.
Sorry, we are still here on Earth.
- LRK -

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Hydrogen production by Cyanobacteria

Debajyoti Dutta1Debojyoti De1Surabhi Chaudhuri1 and Sanjoy K Bhattacharya2*
Abstract
The limited fossil fuel prompts the prospecting of various unconventional energy sources to take over the traditional fossil fuel energy source. In this respect the use of hydrogen gas is an attractive alternate source. Attributed by its numerous advantages including those of environmentally clean, efficiency and renew ability, hydrogen gas is considered to be one of the most desired alternate. Cyanobacteria are highly promising microorganism for hydrogen production. In comparison to the traditional ways of hydrogen production (chemical, photoelectrical), Cyanobacterial hydrogen production is commercially viable. This review highlights the basic biology of cynobacterial hydrogen production, strains involved, large-scale hydrogen production and its future prospects. While integrating the existing knowledge and technology, much future improvement and progress is to be done before hydrogen is accepted as a commercial primary energy source.
...
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So much to learn, so little time, but wait, folks have already been studying how we might set up camp on the Moon and I am sure we can find something about how to get some Hydrogen for use there. 
- LRK -

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Lunar Bases
and Space Activities of the 21st Century

W. W. Mendell, Editor
©1985, Lunar and Planetary Institute


Prologue

Lunar Bases and Space Activities of the 2 1st Century is a collection of short
papers dealing with various aspects of a manned lunar base and the concomitant
expansion of humanity into near-Earth space. Most of these papers were delivered at
a symposium on the subject, sponsored by NASA and hosted by the National
Academy of Sciences in Washington,Dc October 29-3 1, 1984. The program of the
symposium reflected the structure of the Report of the Lunar Base Working Group,
the output of a workshop sponsored by NASA and hosted by the Institute of
Geophysics and Planetary Physics of the University of California.The Lunar Base
Working Group, consisting of approximately 50 scientists, engineers, industrialists,
and scholars, met during the week of April 23-27, 1984, at the Los Alamos National
Laboratory to discuss the scientfic, technological, and social issues associated with a
permanently craved facility on the lunar surface. 
...

MICROBIAL EXTRACTION OF HYDROGEN FROM
LUNAR DUST
David C. White
Department of Biological Sdence, 310 Nudem Research Building, Florida State University,
Tallahassee,FL 32306-3043
Peter Hirsch
InsdtutftfrAllgemeine Mikrobiologie, Unhrersit&tKfel,Biozentrum, Olshausenscrasse40/60,
0-2300 KZEL, West Germany

If molecular hydrogen in lunar dust can be made available to the hydrogenases of bacteria, then several
microbial pathways exist for the potential liberation of hydrogen, carbon dioxide, and methane using relatively
simple apparatus. Intermediate products include microbial biomass and short chain organic acids such as
acetate. The hydrogen could be harvested, and carbon dioxide, phosphate, nitrogen, and trade nutrients could
be recycled. All reactions suggested in this paper, or similar ones, have been demonstrated on Earth, with
the exception of the initial utilization of hydrogen from lunar fines by bacterial hydrogenases. However, it is
possible to test these reactions on extant samples of lunar fines. If potentially toxic elements in lunar soils
present problems for such processes, bacterial tolerance can be induced by plasmid transfer or by selection
among cells subjected to increasing levels of these elements. 
...
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Hmmm, again, it seems what we are working on here could be used there, should that be of further interest.
Should that be of interest. Should that be of interest. Should that be of interest. Oooops, needle got suck.
- LRK -

http://www.nss.org/resources/library/index.htm
Welcome to the NSS Library
 
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WHAT THE MIND CAN CONCEIVE, AND BELIEVE, IT WILL ACHIEVE - LRK -

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Wednesday, November 19, 2014

LUNAR MISSION ONE: A new lunar mission for everyone.

David asked if I had seen this link that refers to a new Kickstarter crowdfunding goal for a lunar mission?

I had not. Interesting read.  Not sure I would want to wait 10 years to put a strand of my hair on the Moon. (not much left right now)

Also posted on New Scientist.

The Kickstarter link.
- LRK -

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Lunar Mission One is the most inspirational lunar project since the Apollo landings and your chance to reserve your place in space.

Don’t just follow space exploration – be a part of it!

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If you read the Guardian post, check out the comments as well.
The question of "WHY" is raised.

I remember that when Lunar Prospector went to the Moon and crashed with cremates of Eugene Shoemaker aboard the Native Americans protested.
- LRK -

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@marillo Globe-News: News: NASA apologizes for sending scientist's ashes to moon 1/14/98

Posted: Wednesday, January 14, 1998

Web posted Wednesday, January 14, 1998

NASA apologizes for sending scientist's ashes to moon

The Associated Press

A NASA official promises the U.S. space agency will never be so insensitive again as to place cremated human remains on the moon without wide consultation.

"I give my commitment that if we ever discuss doing something like this again, we will consult more widely and we will consult with Native Americans," Peggy Wilhide, the agency's director of public affairs, said Monday night.

Navajo Nation President Albert Hale on Sunday protested placement of an ounce of the ashes of planetary scientist Eugene Shoemaker aboard the unmanned Lunar Prospector.

Shoemaker, of Flagstaff, Ariz., trained the Apollo astronauts in lunar geology in the 1960s and early 1970s and always yearned to fly to the moon. He died in a car crash last summer.
...
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Drilling a 5cm-wide borehole between 20 and 100 metres deep and collect samples of moon material that has never been studied before won't be easy.
This project will only be funded if at least £600,000 is pledged by Wed, Dec 17 2014 3:59 PM PST.

How many will be interested?  
 
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WHAT THE MIND CAN CONCEIVE, AND BELIEVE, IT WILL ACHIEVE - LRK -

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Sunday, November 2, 2014

Two recent posts by denniswingo that pertain to the recent Space Ship 2 Disaster.

Two recent posts by denniswingo that pertain to the recent Space Ship 2 Disaster.
If you are not already following his blog then you might find the information informative.

I found most interesting. The 'WHYs' are not always easy to explain.
- LRK -

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A Rebuttal to The Wired Article: Space Tourism Isn’t Worth Dying For

by denniswingo
The Space Ship 2 Disaster is bringing out the worst in journalism.  In this latest article in Wired magazine an attempt is made to separate exploration in space from what the writer considers to be the crass commercial aspect of the Virgin Galactic Space Ship 2 and from what he considers legitimate space exploration.  It […]
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One person’s want is another person’s need.
- LRK -

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Want Versus Need; Space Tourism Vs “Proper” Space Exploration

by denniswingo
There is another emerging complaint about the activities of Virgin Galactic that I am seeing that I feel I must address.  This is illustrated in a comment in my rebuttal to the Wired article, but is in the same vein as the Wired article, related to "tourism" and whether or not that is worth risking […]
denniswingo | November 2, 2014 at 1:24 pm | Tags: aeronauticsaerospaceaviationballooning,freedomNASApancho barnesRichard BransonspaceSpaceship 2SS2Virgin Galactic | Categories: Space | URL: http://wp.me/p1dtEX-fm
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I trust you took time to read as the news just gives a few sound bytes.


WHAT THE MIND CAN CONCEIVE, AND BELIEVE, IT WILL ACHIEVE - LRK -

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Tuesday, October 21, 2014

THE EARTH, MAY WE VIEW FROM ....

Geoff in New Zealand sent me several links which I will pass for your consideration.
As you will note, our astronauts are getting better at communicating with the general population and hopefully they will generate an interest in not only looking up, but in looking back down at us on mother Earth.

Maybe today's social media will spread the word and generate an interest in space, as a new frontier.
I know I enjoyed my small part in letting us see what Lunar Prospector was doing as it went around the Moon.

Today we have even more robotic craft at the Moon, Mars, and Beyond, and it sounds like real time tweets from the ISS are generating a following as well.
Hope we have the money to add more to what has already been done.
- LRK -

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Subject: 'Forget Mars, we should live on the MOON': Chris Hadfield says the red planet is too big a leap for Nasa at the moment | Daily Mail Online
Canadian Chris Hadfield tells MailOnline we should go back to the moon
The former astronaut says current plans to go to Mars are too ambitious
Instead we should be looking to live on the moon for 'generations'
He also responds to comments from Nasa chief Charles Bolden last week who said he had 'raised the bar for astronaut'
Hadfield does not think he put pressure on astronauts to engage more
And he wants to see more cooperation in space in the future
Hadfield was speaking after the launch of his new book 'You Are Here: Around the World in 92 Minutes'
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I tend to agree that at least at first we should learn how to live is on the Moon.
Either place will be extremely hard to accomplish and expensive so we will need to find some way to make the risk worthwhile. 

Cost - Benefit 

Probably a lot easier to send Tweets from the Moon with only a one and a half second OWLT to the Moon vs 4 to 24 minutes to Mars. :-)
- LRK -

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Subject: The real space oddity, Chris Hadfield, is down-to-Earth | Ars Technica 
by  - Oct 19 2014, 11:00am PDT
The real space oddity, Chris Hadfield, is down-to-Earth

Ex-NASA man wants to give everyone the chance to know what it’s like in space.
NEW YORK—What do you do after you’ve achieved the ultimate goal of your avocation—not once, butthree times? That’s the question facing Chris Hadfield, who capped 25 years of NASA service by commanding both the International Space Station and an audience of millions on YouTube and Twitter. Hadfield gave a partial answer recently during a public talk at the American Museum of Natural History: get as many people as possible to understand the experience and try to use that to keep the public supporting a program of space exploration.
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Hope he continues to excite people with his tweets and books. Sounds like he took a LOT of pictures. 
- LRK -

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Subject: The View From The Best Office In The Solar System
The View From The Best Office In The Solar System - http://huff.to/1rWM0kK
Incredible Photos Taken From ISS By Alex Gerst Are Quite Simply, Breathtaking
The Huffington Post UK
Posted: 20/10/2014 12:00 BST 
Updated: 20/10/2014 12:59 BST


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I guess if we can't look back at the Earth from the Moon, we will have to settle for pictures like these from closer up on the ISS..
 
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WHAT THE MIND CAN CONCEIVE, AND BELIEVE, IT WILL ACHIEVE - LRK -

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Monday, October 6, 2014

LUNAR BASES and Space Activities of the 21st Century

LUNAR BASES and Space Activities of the 21st Century

W.W. MENDELL is the editor of a 1985 book with the above title.  So much information.  Papers dealing with various aspects of a manned lunar base and more. Many of the papers were delivered at a symposium on the subject hosted by the National Academy of Sciences in Washington CC, October 29-31, 1984. The program of the symposium reflected the  structure of the Report of the Lunar Base Working Group, that was held during the week of April 23-27, 1984, at the Los Alamos National Laboratory to discuss the scientific, technological, and social issues associated with a permanently crewed facility on the lunar surface.

You can read here or buy the book. http://www.lpi.usra.edu/publications/books/lunar_bases/ 

If you found the topics covered of interest you might want to down load the whole book. We could look more at what is covered.
Along the same line, you can read the papers from The Second Conference on Lunar Bases and Space Activities of the 21st Century held on April 5 - 7, 1988.

- LRK -

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Scientists reveal design plans for future lunar base

Scientists at the Global Lunar Conference in Beijing unveiled a preliminary plan Wednesday of what a future lunar base on the moon would like when it is built in the year 2050.

The first lunar base will be constructed underground and will include a biological experiment module, research module and straining center module, said Bernard H. Foing, executive director of International Lunar Exploration Working Group.

At least 26 nations were represented at the international gathering.

He said that it would adopt the streamline design similar to the undulating lines on the moon’s surface.

“There will be a round dome inside, from which we could see that the blue earth is running in the universe with a great view of the midnight sun,” he said.

The base will also be equipped with an emergency underground shelter and workers would have individual working and sleeping units.

With technological improvements, the biological experiment module should contain a greenhouse to provide fresh vegetables, fruits and crops for people and to feed mice living inside.

Moreover, scientists could conduct experiments to look for iron ore or water in the research module.

“The material for the wall can maintain the temperature inside and prevent oxygen leakage. Every worker will be equipped with an isolation mask and a spacesuit to protect them from cosmic rays,” Foing said.

Since the time on the moon and the earth is different, participants would need to undergo some unique training.

In the preliminary phase, fuel will be sent to the lunar base from the earth, together with four to five groups of people to establish life there.

“While later, we will sent about 20 to 40, or even more ordinary people to be involved in it and extract zinc from the ores for raw material of the fuel supplied to the aircraft,” he added.

People will gradually realize a self-supporting life on the moon.

“We hope in the year 2050, we will witness the birth of the first lunar base for human beings,” Foing said.

Even as Americans watch the country’s aspirations to revisit the moon fade, other nations are willing to pick up the slack.

Chinese experts were asked to look into caves in Yan’an of Northwest China’s Shaanxi Province to get inspiration for what the moon’s base would be like.

“The cave can be seen as a shield against radiation from the universe, so that we can simulate the atmosphere environment and establish a life maintenance system inside,” Ouyang Ziyuan, chief scientist of China’s Moon Exploration Project, said at a news conference Tuesday.

According to Ouyang, China has finished mapping the moon with data obtained by the Chang’e-1 satellite.

“Now the task is to combine the data with images taken by high-resolution cameras, so as to create a more accurate 3D map of the moon,” he said.

Posted by: Soderman/NLSI Staff
Source: Deng Jingyin; http://www.globaltimes.cn/www/english/sci-edu/china/2010-06/538080.html (broken link) 
So from the Wayback Machine -
and then not. ???

395_0
Thumbnail image: Artist rendering of a lunar base. Credit: Richard Kurbis

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So even though we are not going back to the Moon with humans, well it seems there are those that feel differently.
- LRK -

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It’s time to return to the moon, former NASA division chief says

Special Series: Return to the moon

It would be truly amazing, and a huge milestone in human history.
Why shouldn’t the U.S. continue to lead in space exploration?
What if I told you there was an easy way to get Americans back on the moon?
China can choose either to compete or join us.
The U.S. must lead the world in allowing humans to break the bonds that hold us to our Earth.
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Up, up and away, soon I hope.  Getting too old for this.
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WHAT THE MIND CAN CONCEIVE, AND BELIEVE, IT WILL ACHIEVE - LRK -

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Friday, August 1, 2014

12 reasons why 2020 will be an awesome year

Predictions from POPSCI*COM at NBCNews back in 2012.
Take a look and see what you think / they think, now 2 years closer to 2020.

Then I will again give you some from P.W. SINGER at a TED Talk.

If you have looked at one of his longer presentations (this only 18 min) you will hear the same ideas presented.
Don't let that stop you because the pictures he shows are more and different and like what you might want to use.
You can contemplate whether you think DARPA is good or bad, (we have the Internet because of DARPA)
Or what would you or others do with your creations they help fund.
- LRK -

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http://www.nbcnews.com/id/43015182/ns/technology_and_science-innovation/t/reasons-will-be-awesome-year/#.U9sdcPldWa8
Innovation on NBCNews.com
12 reasons why 2020 will be an awesome year
An experts look ahead at synthetic brains, moon mining and more

By Clay Dillow
POPSCI*COM

Get ready for the first complete synthetic human brain, moon mining, and much more. Maybe robotic moon bases, chips implanted in our brains, self-driving cars and high-speed rail linking London to Beijing. According to a dazzling number of technology predictions that single out the year 2020, it's going to be to be one heck of a year. Here, we take a look at some of the wonders it has in store.
...
Japan will build a robotic moon base
China will connect Beijing to London via high-speed rail
Cars will drive themselves
Biofuels will be cost-competitive with fossil fuels
The 'flying car' will be airborne
We'll control devices via microchips implanted in our brains
All new screens will be ultra-thin OLEDs
Commercial space will take us to the moon and asteroids (and we'll be mining them)
A $1,000 computer will have the processing power of the human brain
Universal translation will be commonplace in mobile devices
We'll finally see some decent AR glasses
We'll create a synthetic brain that functions like the real deal

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The TED talk.
- LRK -

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P.W. Singer: Military robots and the future of war
Filmed February 2009 at TED2009

In this powerful talk, P.W. Singer shows how the widespread use of robots in war is changing the realities of combat. He shows us scenarios straight out of science fiction — that now may not be so fictitious.

This talk was presented at an official TED conference, and was featured by our editors on the home page.

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For inspirations and contemplation
- LRK -

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SPACECRAFT TYPES IN SCIENCE FICTION
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More silly, but wait.....
- LRK -

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cyberneticzoo.com

a history of cybernetic animals and early robots

http://cyberneticzoo.com/about/


http://cyberneticzoo.com/walking-machines/1923-walking-lunar-rover-science-fiction-homer-eon-flint-american/

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And Robotics on NASA
- LRK -.

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http://www.nasa.gov/education/robotics/#.U9r-LfldWa8

ROBOTICS


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Thanks for looking up with me.
DARPA’S ATLAS ROBOT UNVEILED
July 11, 2013

Seven Track B/C Teams to Train on the ATLAS Robot; Six Track A Teams Pass Critical Design Review of Robots to Advance to DRC Trials at the Homestead-Miami Speedway this December

On Monday, July 8, 2013, the seven teams that progressed from DARPA’s Virtual Robotics Challenge (VRC) arrived at the headquarters of Boston Dynamics in Waltham, Mass. to meet and learn about their new teammate, the ATLAS robot. Like coaches starting with a novice player, the teams now have until late December 2013 to teach ATLAS the moves it will need to succeed in the DARPA Robotics Challenge (DRC) Trials where each robot will have to perform a series of tasks similar to what might be required in a disaster response scenario.
...
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http://www.darpa.mil/Initiatives.aspx
DARPA FRAMEWORK

DARPA’s investment strategy begins with a portfolio approach. Reaching for outsized impact means taking on risk, and high risk in pursuit of high payoff is a hallmark of DARPA’s programs. We pursue our objectives through hundreds of programs. By design, programs are finite while creating lasting revolutionary change. They address a wide range of technology opportunities and national security challenges. This assures that while individual efforts might fail—a natural consequence of taking on risk—the total portfolio delivers.

How do we create this portfolio of programs? One major part of the answer is bottom up: DARPA program managers define and propose new programs they believe promise revo-lutionary change. This is important for several reasons. An effective DARPA program manager is the person closest to the critical challenges and possible technology opportunities in his or her arena, and the personal inspiration and drive behind a novel idea is the spark needed to start a big fire. More fundamentally, surprise rarely comes from groupthink.
...
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WHAT THE MIND CAN CONCEIVE, AND BELIEVE, IT WILL ACHIEVE - LRK -

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