Wikinews interviews Rocky De La Fuente, U.S. Democratic Party presidential candidate

Thursday, March 31, 2016

Businessman Rocky De La Fuente took some time to speak with Wikinews about his campaign for the U.S. Democratic Party’s 2016 presidential nomination.

The 61-year-old De La Fuente resides in San Diego, California, grew up in Tijuana, and owns multiple businesses and properties throughout the world. Since getting his start in the automobile industry, De La Fuente has branched out into the banking and real estate markets. Despite not having held or sought political office previously, he has been involved in politics, serving as the first-ever Hispanic superdelegate to the 1992 Democratic National Convention.

De La Fuente entered the 2016 presidential race last October largely due to his dissatisfaction with Republican front-runner Donald Trump. He argues he is a more accomplished businessman than Trump, and attacks Trump as “a clown,” “a joke,” “dangerous,” and “in the same category as Hitler.” Nevertheless, De La Fuente’s business background begets comparisons with Trump. The Alaskan Midnight Sun blog described him as the Democrats’ “own Donald Trump.”

While receiving only minimal media coverage, he has campaigned actively, and according to the latest Federal Election Commission filing, loaned almost US$ 4 million of his own money to the campaign. He has qualified for 48 primary and caucus ballots, but has not yet obtained any delegates to the 2016 Democratic National Convention. Thus far, according to the count at The Green Papers, De La Fuente has received 35,406 votes, or 0.23% of the total votes cast. He leads among the many lesser-known candidates but trails both Senator Bernie Sanders who has received nearly 6.5 million votes and front-runner Hillary Clinton who has just shy of 9 million votes.

With Wikinews reporter William S. Saturn?, De La Fuente discusses his personal background, his positions on political issues, his current campaign for president, and his political future.

Contents

  • 1 Interview
    • 1.1 Background
    • 1.2 Campaign
    • 1.3 Issues
    • 1.4 Future
  • 2 Related news
  • 3 Sources
  • 4 External link
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27 July

Keep your eyes peeled for cosmic debris: Andrew Westphal about Stardust@home

Sunday, May 28, 2006

Stardust is a NASA space capsule that collected samples from comet 81P/Wild (also known as “Wild 2) in deep space and landed back on Earth on January 15, 2006. It was decided that a collaborative online review process would be used to “discover” the microscopically small samples the capsule collected. The project is called Stardust@home. Unlike distributed computing projects like SETI@home, Stardust@home relies entirely on human intelligence.

Andrew Westphal is the director of Stardust@home. Wikinews interviewed him for May’s Interview of the Month (IOTM) on May 18, 2006. As always, the interview was conducted on IRC, with multiple people asking questions.

Some may not know exactly what Stardust or Stardust@home is. Can you explain more about it for us?

Stardust is a NASA Discovery mission that was launched in 1999. It is really two missions in one. The primary science goal of the mission was to collect a sample from a known primitive solar-system body, a comet called Wild 2 (pronounced “Vilt-two” — the discoverer was German, I believe). This is the first US “sample return” mission since Apollo, and the first ever from beyond the moon. This gives a little context. By “sample return” of course I mean a mission that brings back extraterrestrial material. I should have said above that this is the first “solid” sample return mission — Genesis brought back a sample from the Sun almost two years ago, but Stardust is also bringing back the first solid samples from the local interstellar medium — basically this is a sample of the Galaxy. This is absolutely unprecedented, and we’re obviously incredibly excited. I should mention parenthetically that there is a fantastic launch video — taken from the POV of the rocket on the JPL Stardust website — highly recommended — best I’ve ever seen — all the way from the launch pad, too. Basically interplanetary trajectory. Absolutely great.

Is the video available to the public?

Yes [see below]. OK, I digress. The first challenge that we have before can do any kind of analysis of these interstellar dust particles is simply to find them. This is a big challenge because they are very small (order of micron in size) and are somewhere (we don’t know where) on a HUGE collector— at least on the scale of the particle size — about a tenth of a square meter. So

We’re right now using an automated microscope that we developed several years ago for nuclear astrophysics work to scan the collector in the Cosmic Dust Lab in Building 31 at Johnson Space Center. This is the ARES group that handles returned samples (Moon Rocks, Genesis chips, Meteorites, and Interplanetary Dust Particles collected by U2 in the stratosphere). The microscope collects stacks of digital images of the aerogel collectors in the array. These images are sent to us — we compress them and convert them into a format appropriate for Stardust@home.

Stardust@home is a highly distributed project using a “Virtual Microscope” that is written in html and javascript and runs on most browsers — no downloads are required. Using the Virtual Microscope volunteers can search over the collector for the tracks of the interstellar dust particles.

How many samples do you anticipate being found during the course of the project?

Great question. The short answer is that we don’t know. The long answer is a bit more complicated. Here’s what we know. The Galileo and Ulysses spacecraft carried dust detectors onboard that Eberhard Gruen and his colleagues used to first detect and them measure the flux of interstellar dust particles streaming into the solar system. (This is a kind of “wind” of interstellar dust, caused by the fact that our solar system is moving with respect to the local interstellar medium.) Markus Landgraf has estimated the number of interstellar dust particles that should have been captured by Stardust during two periods of the “cruise” phase of the interplanetary orbit in which the spacecraft was moving with this wind. He estimated that there should be around 45 particles, but this number is very uncertain — I wouldn’t be surprised if it is quite different from that. That was the long answer! One thing that I should say…is that like all research, the outcome of what we are doing is highly uncertain. There is a wonderful quote attributed to Einstein — “If we knew what we were doing, it wouldn’t be called “research”, would it?”

How big would the samples be?

We expect that the particles will be of order a micron in size. (A millionth of a meter.) When people are searching using the virtual microscope, they will be looking not for the particles, but for the tracks that the particles make, which are much larger — several microns in diameter. Just yesterday we switched over to a new site which has a demo of the VM (virtual microscope) I invite you to check it out. The tracks in the demo are from submicron carbonyl iron particles that were shot into aerogel using a particle accelerator modified to accelerate dust particles to very high speeds, to simulate the interstellar dust impacts that we’re looking for.

And that’s on the main Stardust@home website [see below]?

Yes.

How long will the project take to complete?

Partly the answer depends on what you mean by “the project”. The search will take several months. The bottleneck, we expect (but don’t really know yet) is in the scanning — we can only scan about one tile per day and there are 130 tiles in the collector…. These particles will be quite diverse, so we’re hoping that we’ll continue to have lots of volunteers collaborating with us on this after the initial discoveries. It may be that the 50th particle that we find will be the real Rosetta stone that turns out to be critical to our understanding of interstellar dust. So we really want to find them all! Enlarging the idea of the project a little, beyond the search, though is to actually analyze these particles. That’s the whole point, obviously!

And this is the huge advantage with this kind of a mission — a “sample return” mission.

Most missions rather do things quite differently… you have to build an instrument to make a measurement and that instrument design gets locked in several years before launch practically guaranteeing that it will be obsolete by the time you launch. Here exactly the opposite is true. Several of the instruments that are now being used to analyze the cometary dust did not exist when the mission was launched. Further, some instruments (e.g., synchrotrons) are the size of shopping malls — you don’t have a hope of flying these in space. So we can and will study these samples for many years. AND we have to preserve some of these dust particles for our grandchildren to analyze with their hyper-quark-gluon plasma microscopes (or whatever)!

When do you anticipate the project to start?

We’re really frustrated with the delays that we’ve been having. Some of it has to do with learning how to deal with the aerogel collectors, which are rougher and more fractured than we expected. The good news is that they are pretty clean — there is very little of the dust that you see on our training images — these were deliberately left out in the lab to collect dust so that we could give people experience with the worst case we could think of. In learning how to do the scanning of the actual flight aerogel, we uncovered a couple of bugs in our scanning software — which forced us to go back and rescan. Part of the other reason for the delay was that we had to learn how to handle the collector — it would cost $200M to replace it if something happened to it, so we had to develop procedures to deal with it, and add several new safety features to the Cosmic Dust Lab. This all took time. Finally, we’re distracted because we also have many responsibilities for the cometary analysis, which has a deadline of August 15 for finishing analysis. The IS project has no such deadline, so at times we had to delay the IS (interstellar, sorry) in order to focus on the cometary work. We are very grateful to everyone for their patience on this — I mean that very sincerely.

And rest assured that we’re just as frustrated!

I know there will be a “test” that participants will have to take before they can examine the “real thing”. What will that test consist of?

The test will look very similar to the training images that you can look at now. But.. there will of course be no annotation to tell you where the tracks are!

Why did NASA decide to take the route of distributed computing? Will they do this again?

I wouldn’t say that NASA decided to do this — the idea for Stardust@home originated here at U. C. Berkeley. Part of the idea of course came…

If I understand correctly it isn’t distributed computing, but distributed eyeballing?

…from the SETI@home people who are just down the hall from us. But as Brian just pointed out. this is not really distributed computing like SETI@home the computers are just platforms for the VM and it is human eyes and brains who are doing the real work which makes it fun (IMHO).

That said… There have been quite a few people who have expressed interested in developing automated algorithms for searching. Just because WE don’t know how to write such an algorithm doesn’t mean nobody does. We’re delighted at this and are happy to help make it happen

Isn’t there a catch 22 that the data you’re going to collect would be a prerequisite to automating the process?

That was the conclusion that we came to early on — that we would need some sort of training set to be able to train an algorithm. Of course you have to train people too, but we’re hoping (we’ll see!) that people are more flexible in recognizing things that they’ve never seen before and pointing them out. Our experience is that people who have never seen a track in aerogel can learn to recognize them very quickly, even against a big background of cracks, dust and other sources of confusion… Coming back to the original question — although NASA didn’t originate the idea, they are very generously supporting this project. It wouldn’t have happened without NASA’s financial support (and of course access to the Stardust collector). Did that answer the question?

Will a project like this be done again?

I don’t know… There are only a few projects for which this approach makes sense… In fact, I frankly haven’t run across another at least in Space Science. But I am totally open to the idea of it. I am not in favor of just doing it as “make-work” — that is just artificially taking this approach when another approach would make more sense.

How did the idea come up to do this kind of project?

Really desperation. When we first thought about this we assumed that we would use some sort of automated image recognition technique. We asked some experts around here in CS and the conclusion was that the problem was somewhere between trivial and impossible, and we wouldn’t know until we had some real examples to work with. So we talked with Dan Wertheimer and Dave Anderson (literally down the hall from us) about the idea of a distributed project, and they were quite encouraging. Dave proposed the VM machinery, and Josh Von Korff, a physics grad student, implemented it. (Beautifully, I think. I take no credit!)

I got to meet one of the stardust directors in March during the Texas Aerospace Scholars program at JSC. She talked about searching for meteors in Antarctica, one that were unblemished by Earth conditions. Is that our best chance of finding new information on comets and asteroids? Or will more Stardust programs be our best solution?

That’s a really good question. Much will depend on what we learn during this official “Preliminary Examination” period for the cometary analysis. Aerogel capture is pretty darn good, but it’s not perfect and things are altered during capture in ways that we’re still understanding. I think that much also depends on what question you’re asking. For example, some of the most important science is done by measuring the relative abundances of isotopes in samples, and these are not affected (at least not much) by capture into aerogel.

Also, she talked about how some of the agencies that they gave samples to had lost or destroyed 2-3 samples while trying to analyze them. That one, in fact, had been statically charged, and stuck to the side of the microscope lens and they spent over an hour looking for it. Is that really our biggest danger? Giving out samples as a show of good faith, and not letting NASA example all samples collected?

These will be the first measurements, probably, that we’ll make on the interstellar dust There is always a risk of loss. Fortunately for the cometary samples there is quite a lot there, so it’s not a disaster. NASA has some analytical capabilities, particularly at JSC, but the vast majority of the analytical capability in the community is not at NASA but is at universities, government labs and other institutions all over the world. I should also point out that practically every analytical technique is destructive at some level. (There are a few exceptions, but not many.) The problem with meteorites is that except in a very few cases, we don’t know where they specifically came from. So having a sample that we know for sure is from the comet is golden!

I am currently working on my Bachelor’s in computer science, with a minor in astronomy. Do you see successes of programs like Stardust to open up more private space exploration positions for people such as myself. Even though I’m not in the typical “space” fields of education?

Can you elaborate on your question a little — I’m not sure that I understand…

Well, while at JSC I learned that they mostly want Engineers, and a few science grads, and I worry that my computer science degree with not be very valuable, as the NASA rep told me only 1% of the applicants for their work study program are CS majors. I’m just curious as to your thoughts on if CS majors will be more in demand now that projects like Stardust and the Mars missions have been great successes? Have you seen a trend towards more private businesses moving in that direction, especially with President Bush’s statement of Man on the Moon in 2015?

That’s a good question. I am personally not very optimistic about the direction that NASA is going. Despite recent successes, including but not limited to Stardust, science at NASA is being decimated.

I made a joke with some people at the TAS event that one day SpaceShipOne will be sent up to save stranded ISS astronauts. It makes me wonder what kind of private redundancy the US government is taking for future missions.

I guess one thing to be a little cautious about is that despite SpaceShipOne’s success, we haven’t had an orbital project that has been successful in that style of private enterprise It would be nice to see that happen. I know that there’s a lot of interest…!

Now I know the answer to this question… but a lot do not… When samples are found, How will they be analyzed? Who gets the credit for finding the samples?

The first person who identifies an interstellar dust particle will be acknowledged on the website (and probably will be much in demand for interviews from the media!), will have the privilege of naming the particle, and will be a co-author on any papers that WE (at UCB) publish on the analysis of the particle. Also, although we are precluded from paying for travel expenses, we will invite those who discover particles AND the top performers to our lab for a hands-on tour.

We have some fun things, including micromachines.

How many people/participants do you expect to have?

About 113,000 have preregistered on our website. Frankly, I don’t have a clue how many will actually volunteer and do a substantial amount of searching. We’ve never done this before, after all!

One last thing I want to say … well, two. First, we are going to special efforts not to do any searching ourselves before we go “live”. It would not be fair to all the volunteers for us to get a jumpstart on the search. All we are doing is looking at a few random views to make sure that the focus and illumination are good. (And we haven’t seen anything — no surprise at all!) Also, the attitude for this should be “Have Fun”. If you’re not having fun doing it, stop and do something else! A good maxim for life in general!

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27 July

University of Chicago’s Mansueto Library suffers power outage

Monday, May 30, 2011

The University of Chicago’s Joe and Rika Mansueto Library was shut down by a power outage for a short time on Saturday, preventing library personnel from providing full services to its patrons.

The US$81 million library, which opened May 16, includes a 180-seat reading room under a 691-panel glass dome. Five stories underground, a system of five cranes retrieves books sorted into bins, carrying a maximum of about 3.5 million volumes. As of 3:50 p.m. CDT, the automated storage and retrieval system, along with staff computers at the circulation desk, were shut down, preventing patrons from retrieving materials stored underground.

The glass ceiling normally allows enough natural light to pass, but rain clouds in the area darkened the room. Patrons began to flip light switches in front of their seats, but to no avail, and a circulation clerk announced that there had been a power outage. Some patrons then moved to the adjacent Regenstein Library, which still had power. Power was still running along the corridor linking Mansueto and Regenstein Libraries, along with the nearby restrooms and Special Collections Research Center.

An electrician arrived at the building at around 3:50 p.m., and power had been restored by 5:45 p.m.

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27 July

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27 July

Oral Roberts calls ’emergency meeting’

Saturday, November 17, 2007

Oral Roberts, founder and former faith healer, called an “emergency meeting” to reinstate Richard Roberts as president of Oral Roberts University. Richard stepped down last month when he was accused of illegal political contributions, financial wrong-doing, and wrongful firings in a lawsuit.

On Wednesday Oral called an ’emergency meeting’ for the faculty following the previous “no confidence” vote. At the recent meeting Oral asked for the faculty who were willing to forgive and start fresh to “stand up.” Donald Vance, a professor of Bible studies, said that when no one person at the meeting stood, Oral Roberts asked one of them, “‘Are you not ready to start over?'”

Vance reported, “The faculty member said, “I don’t know what that means, to start over.”

“‘I would think that would be obvious,'” Oral Roberts responded.

After that, Vance stated “No, Chancellor Roberts, it’s not clear, are you asking us to rescind our three motions?” Then Oral Roberts said that the faculty should drop it.

Following the meeting Provost Mark Lewandoswki wrote a letter to ORU Board of Regents promising to step down if Richard Roberts returns as president. Tulsa World reported that the atompshere at ORU is “divise” noting that when Regent chairman George Pearsons, took his position in May he said in an address to the board: “I am standing here today because the Lord clearly spoke to me and said, ‘Do whatever Richard Roberts asks you to do.'”

The school declined to comment on the meetings.

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27 July

Category:April 23, 2010

? April 22, 2010
April 24, 2010 ?
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27 July

British haulage managing director Edward Stobart dies at age 56

Thursday, March 31, 2011

Edward Stobart, famed for his construction of the Eddie Stobart truck empire and being its chief executive officer for over thirty years, has died at the age of 56. In a statement, the Stobart Group commented: “It is with great sadness and regret that Stobart Group shares the news that Edward Stobart, son of Eddie Stobart, passed away at 8:10 AM this morning at University Hospital Coventry, after heart problems yesterday.”

When Eddie Stobart — Edward’s father, who is aged over eighty — created the company during the 1950s in Cumbria in northern England, it originally involved itself in the business of agriculture. In the 1970s, the business was given the name Eddie Stobart Limited and became a haulage service. Eddie Stobart then handed over the company to his son. The enterprise subsequently became the most popular of that industry within the United Kingdom, according to BBC News Online; it extended to include transportation by air and railways, as well as warehousing and management of logistics.

Due to the cult following that they had achieved via a fanbase of ‘Stobart spotters’, which involves the observation of their company’s uniquely named vehicles, the Stobart Group decided to create an official followers’ group, which now has in excess of twenty-five thousand members. Eddie Stobart-branded merchandise has also been released.

William Stobert — the brother of Edward Stobart — and Andrew Tinkler purchased the business from Edward in 2004. Edward subsequently relocated to the Midlands and took over what was to become an unsuccessful truck trailer building firm in 2009.

Edward Stobart experienced his death in Coventry, England at 0810 BST (0710 UTC) on Thursday. The Stobart Group have expressed their condolences to “Edward’s wife Mandy, his children and family at this difficult time.”

Haulage firm Preston’s of Potto’s chairwoman Ann Preston described Edward as “the most iconic figure that has ever been in this industry” and that the death of a man who “was very passionate about road transport” and “didn’t want to do anything else” since he was a child was “a massive loss”. The Stobart Members’ Club have stated: “The club’s members will certainly have fond memories of the man who started the phenomenon off, created the iconic Eddie Stobart brand and made it cool to spot lorries. Stobart Spotting will continue and the legacy of Edward Stobart will live on.”

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27 July

Concern about sovereign debt of some EU members roils markets

Friday, February 5, 2010

Global stock markets fell steeply on Thursday on investor concerns about the growing sovereign debts of European Union member states Greece, Portugal, and Spain. A report of a rise in weekly jobless claims in the United States contributed to the market gloom. The MSCI World index fell the most in over nine months. Currency and commodities markets also posted major moves.

If other European countries are having trouble like Greece, then it’s a big problem for banks, and the banks are the foundation for everything.

The euro fell more than one percent against the US dollar to an eight-month low; against the yen it fell 2.2%, approaching a one-year low. The price of crude oil fell 5% to US$73.14 per barrel and gold slid 4.4% to US$1,063 per ounce.

Greece’s Prime Minister, George Papandreou, announced an austerity program, but that is now threatened by plans by the largest trade union for a national strike. In 2009, Greece’s budget deficit was 12.7% of the nation’s gross domestic product (GDP). Papandreou’s plan called for that to drop to 3% by 2012.

Gary Jenkins of Evolution Securities told the Financial Times, “[t]he risk aversion trade is back on as the debt problems of Europe are for the first time bringing down global markets. Corporate earnings may come in strongly [in the US], but investors are more concerned about the possible default of a sovereign European nation.”

“This is a sovereign problem, and it’s hitting everything,” said Keith Springer of Capital Financial Advisory Services to Reuters. “If other European countries are having trouble like Greece, then it’s a big problem for banks, and the banks are the foundation for everything. European banks will be in trouble and that will carry over to all stocks.”

“The focus is shifting toward Spain and Portugal, where the deficit-reduction plans have been far less ambitious than Greece,” said Kornelius Purps of UniCredit Markets & Investment Banking to Bloomberg.

Concerns in Portugal centered on political tension surrounding a regional spending bill. In Spain, the source of worry was reportedly because the government backed down from promised pension reform.

European Central Bank President Jean-Claude Trichet sought to ease investor fears, in part by noting that the deficit in the US is expected to hit 10% of GDP in 2010, compared with about 6% in the eurozone. He said that he was “confident” that Greece is moving in the right direction.

Trichet did admit that it is of “paramount importance” for Greece, Portugal and Spain to get their public finances under control.

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27 July

Airbus Beluga XL makes maiden flight

Friday, July 20, 2018

On Thursday, after five years of development, the Airbus Beluga XL, painted with eyes and a smile to match its cetacean namesake, made its maiden flight, taking off from and landing at Toulouse, France, in front of a crowd of 10,000. The craft is expected to enter service next year.

Airbus plans to use the Beluga XL to shuttle airplane parts among its facilities in France and Germany. The XL has roughly 30% more cargo space than existing Beluga planes, and it can carry over 50 tons 2500 miles (4000 km) without refueling. It can carry two wings for the Airbus 350 plane in one trip, while the standard Beluga, which entered service in 1995, can carry only one. The Beluga XL is propelled by two Rolls-Royce Trent 700 Turbofan engines.

The plane is named for its resemblance to a Beluga whale. The front of the fuselage hinges upward to allow front-loading into the cargo space, creating the illusion of a round forehead. This feature was added by slinging the cockpit lower in the plane’s body, so cargo is passed over the pilots’ perch.

The Beluga joins such cargo planes as the Antonov An-225 Mriya was designed by the Soviet space program to carry spacecraft parts, and has a lifting capacity over five times that of the Beluga, but only one was ever built. Other massive planes include NASA’s Super Guppy, which is also used to carry spacecraft parts, and the United States military’s Lockheed C-5 Galaxy.

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27 July

“Junk” foods may affect aggressive behaviour and school performance

Tuesday, October 4, 2005

Dr. Stephen Schoenthaler, a Professor of Criminal Justice at the California State University in Stanislaus, has long argued that there is a link between a healthy diet and decreased aggressive behaviour, as well as with increased IQ and school performance.

Dr. Schoenthaler is well-known for a youth detention center study where violations of house rules fell by 37% when vending machines were removed and the cafeteria replaced canned food by fresh alternatives. He summarizes his findings by saying that “Having a bad diet right now is a better predictor of future violence than past violent behaviour.” In a very large test, Schoenthaler directed a study in meals at 803 New York City schools, in low-income neighbourhoods, finding that the number of students passing final exams increased by 16%.

Critics have questioned some of Dr. Schoenthaler findings, due to the lack of placebo control groups. However, more recent work by Dr. Bernard Gesch, a physiologist at the University of Oxford, has placed some of the work on a more scientific footing. Dr. Gesch found that nutrition supplements produced a 26% drop in violations of prison rules over a placebo, and a 37% decrease in violent offences. The Netherlands has embarked on a wider scale dietary research program in 14 prisons.

The short term behaviour consequences of ingesting sugar are well understood: an initial burst on energy, followed a sugar low in which your body produces adrenalin, which makes you irritable and explosive. However, Schoenthaler and Gesch suggest that there are long term impacts over and above the short term consequences of blood sugar variations.

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26 July