New Zealand recalls squid boats

Sunday, May 8, 2005

In order to save the lives of seabirds, the government of New Zealand has ordered the recall from sub-Antarctic waters of the entire fleet of New Zealand’s 35 squid fishing boats. Once at port, the boats are to take on independent observers to ensure that they follow codes of practice. Violators of the new rules face a fine of up to NZ$100,000.

Fisheries Minister David Benson-Pope said that “blatant bad behaviour” on the part of the boats, flouting a voluntary code of practice set up a year ago, demanded immediate action.

An Air Force aeroplane was sent on a tour of inspection last month. Benson-Pope reported that observations from the inspection revealed that, contrary to the agreed code of practice:

  • 46% of the fishing fleet were not using equipment to scare sea birds away from vessels, with a further 8% only using it intermittently.
  • 30% of the fishing fleet were discharging offal (which attracts seabirds) while trawling or hauling nets, with a further 25% doing so intermittently.
  • Only 30% of the fishing fleet actually complied with both mitigation and offal management requirements.

Mr Benson-Pope referred to a voluntary code of practice adopted in the tuna fishing industry which he said had reduced death of seabirds by 95%.

Explosives stolen from California mine

Wednesday, May 10, 2006

According to the Alcohol Tobacco and Firearms Agency or ATF, at least 686 sticks of dynamite and at least 30 pounds of ammonium nitrate were stolen from Gold Mountain Mine Company in Big Bear City, California located in San Bernardino County. Fuel oil and mining equipment are also among the items stolen. When combined, the fuel oil and ammonium nitrate become combustible and authorities fear what could be done with the explosives.

“The obvious concern is someone stole it, and what are they going to do with it? This is a quantity of explosives that could do significant damage. We need to recover these items,” said John D’Angelo, spokesman for the ATF.

The thieves cut locks on the gate that leads to the facility and then cut the locks on a metal storage bin and stole its contents and everything inside the facility. The man responsible for mining operations in the area does so as a hobby. The robbery was reported on May 3.

“We urge anyone who has information about this theft to contact ATF and the San Bernardino Sheriff’s Department. Our job is to keep the public safe. We take the theft of explosives extremely seriously, and we will relentlessly follow up every lead until we solve the case,” said John A. Torres who is the special agent in charge of the ATF in Los Angeles.

Authorities have offered a $25,000 reward for information about the crime that leads to an arrest and conviction.

Sirius CEO visits congress

Friday, March 2, 2007

Sirius CEO Mel Karmazin appeared before a newly formed Antitrust Task Force, a sub-committee of the House Judiciary Committee, on Wednesday last week in Washington, D.C. to defend the proposed U.S. merger between XM and Sirius satellite radio services.

The hearing, carried live on C-SPAN, was attended by representatives from various competing broadcast companies. The representatives challenged the merger deal, and some speakers were openly hostile to Karmazin and to satellite radio in general, while other speakers were more civil.

Several times during the debate, the discussion centered on the failed merger deal between the two satellite television networks DirecTV and Echostar. The comparison between this proposed radio merger and the failed television merger was settled to some extent with an understanding that nearly all television viewers now use either cable or satellite to view available programming. Televised programming content is now delivered mainly in the form of a subscription, rather than airwave transmissions.

Unlike television programming, most radio listeners use over the air receivers to listen to free programming content supported advertisers.

“We come to this hearing with an open mind, but we recognize that the companies have the obligation to convince the Congress, the regulators, and most importantly, the American People that this combination will improve the competitive playing field and benefit consumers,” said John Conyers, the sub-committee chairman. To determine the legality of this merger, Congress first needs to decide whether a combined XM and Sirius would be a monopoly, as the only satellite radio provider in the United States, or whether the new company will actually be in competition with other forms of radio-like entertainment, according to Conyers. The hearing focused on alternatives such as Internet radio, terrestrial radio, portable audio devices, and emerging services, such as cell phone services and WiMax.

Somali piracy: Kenyan navy kills three, Chinese ship hijacked, British couple freed

Monday, November 15, 2010

Three pirates were killed late Friday during a presumed attack in error, while other pirates successfully hijacked the Yuan Xiang, a Panamanian-flagged vessel with an all-Chinese crew, and a media embargo was lifted regarding the release of a British couple whose yacht was seized more than a year ago over the weekend.

At 11 p.m. on Friday a Kenyan patrol vessel was near Kilifi in Kenyan coastal waters “when four suspected Somali pirates on board a speed boat climbed the vessel, mistaking it for a merchant vessel,” according to Kenyan Defence Department spokesman Bogita Ongeri. He said three were shot dead but the fourth “dived into the sea with bullet wounds during the scuffle,” and is thought to have died. The speed boat with more pirates on board fled, the three bodies were taken to Coast General Hospital, Mombassa.

Ongeri promised more details after discussions with the vessel’s captain adding, “[t]he government will not relent in its fight against piracy.” Kenya, along with the Seychelles, performs international prosecutions of pirates, but convictions are rarely secured; 26 suspects were freed last week by Kenya owing to lack of evidence or jurisdiction.

Andrew Mwangura of the Seafarers’ Assistance Program said Saturday, “I can confirm the pirates hijacked Yuan Xiang on Friday at midnight Kenyan time in the Arabian Sea near India. The vessel has 29 Chinese crew.” The Yuan Xiang was sailing outside the zone covered by a multinational task force combating piracy. Reports suggest its captors are heading to Somalia.

Retired British couple Paul and Rachel Chandler were released after their yacht Lynn Rival was captured near the Seychelles en-route to Tanzania 388 days ago, in October 2009. An injunction prevented reporting the release until 56-year-old Rachel and 60-year-old Paul, from Kent, were out of Somalia.

“Men with guns came aboard,” Paul told ITV News over the phone a week after their capture. “Then we were forced to sail … toward Somalia.” The seizure was witnessed by UK refueling ship RFA Wave Knight but they were not helped for fear their lives would be endangered. “This is not piracy and must not be reported as such,” Paul said in custody. “It is kidnapping and extortion and even torture.” It is unclear if money changed hands; US$7 million was originally demanded but UK government policy forbids ransom payments. “We’re fine,” said Paul. “We’re rather skinny and bony but we’re fine.”

New figures show 790 people have been kidnapped by Somali pirates this year, on course to beat last year’s record of 867. Of these, 435 remain hostage. Dr Alex Coutroubis and George Kiourktsoglou of London’s University of Greenwich say crews are repelling more attacks, and attackers have responded with increased violence. “As it gets harder for pirates to capture ships, the Somali gangs are more likely to fire at sailors with automatic weapons in order to force vessels to stop”. Some tankers have had rocket propelled grenades fired at them.

Last year saw 217 hijack attempts. This year, to date, 140, and 40 ships seized – versus 47 for the whole of 2009.

Errant monkeys draw the ire of Delhi court

Thursday, January 19, 2006

The Delhi High Court expressed its displeasure to the civic authorities on their continued failure to resolve the problem of marauding monkeys in the court premises. The court was in session when the public interest litigation filed by a Supreme Court lawyer was brought to its attention.

The petitioner Mr.Nirmal Chopra argued the case and explained how the simians showed up during work hours and attacked people and snatched food from them. The rhesus monkeys have also been blamed for damaging furniture belonging to the lawyers and courtroom fixtures such as electrical fittings. According to Mr.Chopra India‘s Wildlife Act of 1972 empowers civic authorities to kill or hunt animals when they endanger human life. He said that the lawyers from the Tis Hazari court had requested the state government and the municipality to tackle the situation but no action had resulted.

The lawyer for the civic authority was quoted by the Press Trust of India as saying that catching monkeys was no longer its responsibility. The court was informed that a monkey catcher hired by the municipality had required 72 stitches after being mauled during an operation. After this incident the work had to be halted because other monkey catchers refused to take up the job.

The court gave the civic authority four more weeks to catch the monkeys that are disrupting work at the Tis Hazari courts. “If you cannot perform your statutory duty, then close down your institution” the court is reported to have told the counsel.

Delhi is known to suffer from trouble brought on by monkeys. The animals are reported to invade homes, schools and government offices in the city. Scores of animals have moved in as the city expands into surrounding forests. In an effort to control the problem, the Delhi administration captured about 500 monkeys and took them to the outskirts of the city last year.

Peruvian necklace identified as oldest gold artifact in the Americas

Tuesday, April 1, 2008

The oldest known gold artifact in the Americas is a necklace from Peru, according to University of Arizona anthropology professor Mark Aldenderfer. The necklace comes from a village in the Jiskairumoko range near Lake Titicaca and consists of gold that had been hammered and rolled into nine cylindrical beads, then strung with turquoise on a wool string.

Radiocarbon dating places the manufacture of the necklace from 2155 to 1936 B.C., which makes this item about 600 years older than the next oldest gold artifact that has been discovered the Americas and the oldest example of metalworking of any kind in the Americas.

Gold metallurgy is almost always associated with agricultural societies. Since the materials used in the necklace are not found in the Titicaca basin, the existence of the necklace implies the region had trade routes and a hereditary elite.

Although this discovery was made in 2004, Professor Alenderfer and his team delayed publication in order to have the gold chemically analyzed and to minimize the risk of looters damaging the site before excavation was complete.

Designing Your Dental Clinic Interiors

Designing Your Dental Clinic Interiors

by

Daniel Todman

Things get very exciting when you’re about to start your dream career in the field of dentistry. Apparently, having their own dental clinic tops the list of things that aspiring dentists in Chicago want to have right after graduation. It’s simply because practicing your profession is a lot easier if you do it your own way, and this includes the perks of being the boss.

[youtube]http://www.youtube.com/watch?v=BoezyiHX0DA[/youtube]

Like them, you probably want to get your career going down the same path. Although putting up your own dental clinic is easy as long as you have the funds for it, you have to know that putting up your own clinic takes a lot of preparation and responsibility. This entails thorough planning and construction so that your dental clinic will be designed the way you want it to. Probably the most difficult decision you need to make concerns the interiors of your clinic. The overall interior look of your dental clinic is important since many interior designers believe that it can affect the way your patients perceive their visit. Dentists pay more attention to their clinic’s interiors to provide their patients a relaxed and fun experience. Here are some tips that you might want to consider when it comes to your clinic’s interiors. –The secret to making your patients feel good about your dental services is to provide them a comfortable environment. Know that most people, especially children, don’t really like dental visits. Many experts in dental construction Chicago

suggest that you make use of neutral colors when it comes to your walls. Neutral colors can make the room exude a calm ambience and help to calm the nerves of anxious patients.

–When it comes to aesthetic decorations, it helps a lot that you express your fondness for the profession. Display dental books, illustrations, or dentistry-inspired artwork. Ask your dental contractors Chicago

to help you choose the right ones but do remember to consider your personal preferences.

–It may sound a bit funny or unimportant, but know that aquariums are commonly suggested by Chicago medical construction companies

. You can even find a lot of healthcare establishments that have aquariums in it. This is because they believe that watching the fish swim calms the nerves of anxious people. If you have patients with dental phobias, this could certainly help.

Visit www.ACOADental.com for more details

Article Source:

ArticleRich.com

San Francisco Museum of Modern Art buys Edward Hopper valued at over $25 million

Monday, March 26, 2012

The San Francisco Museum of Modern Art (SFMOMA) has purchased the painting Intermission, by American artist Edward Hopper. The piece, created in 1963, is one of the last paintings created by Hopper.

Hopper’s realist style, which visually examined American urban and rural life in the first half of the 20th century, made him one of the most influential and important American artists of the modern era. The painting, which was sold by a private collector, is believed to be valued at over $25 million.

Intermission shows a woman sitting alone in the front row of a theater. The theater is empty, and is described, by San Francisco Chronicle art critic Kenneth Baker as expressing emotion and social isolation, a standard theme in Hopper’s works. The inspiration for the painting came to Hopper while he was watching a film.

Hopper’s wife, Josephine, had scheduled Hopper to create the painting in a theater, however Hopper would complete the painting at his studio in New York City. Original sketches of Intermission show a second person sitting in the third row — a figure that never made it into the final painting. Baker calls Intermission a “prime example of Hopper’s austere realist vision”.

[This is] a necessary practice in an art market where prices for historically important art continue to rise steeply.

SFMOMA will not disclose how much they paid for Intermission. When the painting Hotel Window, which is of similar size and from the same period, sold at auction in 2006, it sold for $26.9 million. It is believed that “Inspiration” is worth just as much, if not more. Intermission was purchased with the help of donor funds, and acquired through the San Francisco-based Fraenkel Gallery, which sold if on behalf of a private collector.

In exchange for the acquisition of Intermission, SFMOMA is selling another Hopper painting: Bridal Path, from 1939. A lesser known work of Hopper’s, Bridal Path shows a horseback riding path in Central Park. By selling Bridal Path, SFMOMA is able to help fund the acquisition of the more well known Intermission. This practice is slowly gaining popularity within a museum and art market that previously disapproved of the sale of lesser known works for more popular acquisitions. Baker acknowledges the past practices, but believes that this is “a necessary practice in an art market where prices for historically important art continue to rise steeply.”

Intermission goes on display for the public on Friday, at SFMOMA.

Strongest earthquake in 40 years hits Southeast Asia

Sunday, December 26, 2004

Indian Ocean – The death toll continues to grow and millions face a homeless life in the new year as coastal communities in south Asia struggle against continued aftershocks and flooding caused by the largest earthquake to strike the planet in more than a generation.

The magnitude 9.0 undersea megathrust earthquake struck off the western coast of Sumatra, Indonesia on December 26, 2004, at 00:58:50 UTC (or 07:58:50 local time in Jakarta and Bangkok).

The earthquake was the strongest in the world since the 9.2-magnitude Good Friday Earthquake which struck Alaska, USA in 1964, and the fourth largest since 1900. More than 140,000 deaths[1] were caused by resulting tsunami, which in Thailand were up to 10 meters (33 feet) tall, and struck within three hours of the initial event.

Multiple tsunamis struck and ravaged coastal regions all over the Indian Ocean, devastating regions including the Indonesian province of Aceh, the coast of Sri Lanka, coastal areas of the Indian state of Tamil Nadu, the resort island of Phuket, Thailand, and even as far away as Somalia, 4,100 km (2,500 mi) west of the epicenter.

While the earthquake and the tsunamis are no longer ongoing (other than aftershocks), the humanitarian and economic crisis generated by the disaster is still ongoing. This report will attempt to cover the crisis as it continues to develop.

Contents

  • 1 Damage and casualties
  • 2 Quake characteristics
  • 3 Post-tsunami humanitarian situation
    • 3.1 Humanitarian assistance
  • 4 Related news
  • 5 See also
  • 6 External links
    • 6.1 Aid efforts
    • 6.2 Video and Pictures of the devastation
  • 7 Video
  • 8 Pictures

British computer scientist’s new “nullity” idea provokes reaction from mathematicians

Monday, December 11, 2006

On December 7, BBC News reported a story about Dr James Anderson, a teacher in the Computer Science department at the University of Reading in the United Kingdom. In the report it was stated that Anderson had “solved a very important problem” that was 1200 years old, the problem of division by zero. According to the BBC, Anderson had created a new number, that he had named “nullity”, that lay outside of the real number line. Anderson terms this number a “transreal number”, and denotes it with the Greek letter ? {\displaystyle \Phi } . He had taught this number to pupils at Highdown School, in Emmer Green, Reading.

The BBC report provoked many reactions from mathematicians and others.

In reaction to the story, Mark C. Chu-Carroll, a computer scientist and researcher, posted a web log entry describing Anderson as an “idiot math teacher”, and describing the BBC’s story as “absolutely infuriating” and a story that “does an excellent job of demonstrating what total innumerate idiots reporters are”. Chu-Carroll stated that there was, in fact, no actual problem to be solved in the first place. “There is no number that meaningfully expresses the concept of what it means to divide by zero.”, he wrote, stating that all that Anderson had done was “assign a name to the concept of ‘not a number'”, something which was “not new” in that the IEEE floating-point standard, which describes how computers represent floating-point numbers, had included a concept of “not a number”, termed “NaN“, since 1985. Chu-Carroll further continued:

“Basically, he’s defined a non-solution to a non-problem. And by teaching it to his students, he’s doing them a great disservice. They’re going to leave his class believing that he’s a great genius who’s solved a supposed fundamental problem of math, and believing in this silly nullity thing as a valid mathematical concept.
“It’s not like there isn’t already enough stuff in basic math for kids to learn; there’s no excuse for taking advantage of a passive audience to shove this nonsense down their throats as an exercise in self-aggrandizement.
“To make matters worse, this idiot is a computer science professor! No one who’s studied CS should be able to get away with believing that re-inventing the concept of NaN is something noteworthy or profound; and no one who’s studied CS should think that defining meaningless values can somehow magically make invalid computations produce meaningful results. I’m ashamed for my field.”

There have been a wide range of other reactions from other people to the BBC news story. Comments range from the humorous and the ironic, such as the B1FF-style observation that “DIVIDION[sic] BY ZERO IS IMPOSSIBLE BECAUSE MY CALCULATOR SAYS SO AND IT IS THE TRUTH” and the Chuck Norris Fact that “Only Chuck Norris can divide by zero.” (to which another reader replied “Chuck Norris just looks at zero, and it divides itself.”); through vigourous defences of Dr Anderson, with several people quoting the lyrics to Ira Gershwin‘s song “They All Laughed (At Christopher Columbus)”; to detailed mathematical discussions of Anderson’s proposed axioms of transfinite numbers.

Several readers have commented that they consider this to have damaged the reputation of the Computer Science department, and even the reputation of the University of Reading as a whole. “By publishing his childish nonsense the BBC actively harms the reputation of Reading University.” wrote one reader. “Looking forward to seeing Reading University maths application plummit.” wrote another. “Ignore all research papers from the University of Reading.” wrote a third. “I’m not sure why you refer to Reading as a ‘university’. This is a place the BBC reports as closing down its physics department because it’s too hard. Lecturers at Reading should stick to folk dancing and knitting, leaving academic subjects to grown ups.” wrote a fourth. Steve Kramarsky lamented that Dr Anderson is not from the “University of ‘Rithmetic“.

Several readers criticised the journalists at the BBC who ran the story for not apparently contacting any mathematicians about Dr Anderson’s idea. “Journalists are meant to check facts, not just accept whatever they are told by a self-interested third party and publish it without question.” wrote one reader on the BBC’s web site. However, on Slashdot another reader countered “The report is from Berkshire local news. Berkshire! Do you really expect a local news team to have a maths specialist? Finding a newsworthy story in Berkshire probably isn’t that easy, so local journalists have to cover any piece of fluff that comes up. Your attitude to the journalist should be sympathy, not scorn.”

Ben Goldacre, author of the Bad Science column in The Guardian, wrote on his web log that “what is odd is a reporter, editor, producer, newsroom, team, cameraman, soundman, TV channel, web editor, web copy writer, and so on, all thinking it’s a good idea to cover a brilliant new scientific breakthrough whilst clearly knowing nothing about the context. Maths isn’t that hard, you could even make a call to a mathematician about it.”, continuing that “it’s all very well for the BBC to think they’re being balanced and clever getting Dr Anderson back in to answer queries about his theory on Tuesday, but that rather skips the issue, and shines the spotlight quite unfairly on him (he looks like a very alright bloke to me).”.

From reading comments on his own web log as well as elsewhere, Goldacre concluded that he thought that “a lot of people might feel it’s reporter Ben Moore, and the rest of his doubtless extensive team, the people who drove the story, who we’d want to see answering the questions from the mathematicians.”.

Andrej Bauer, a professional mathematician from Slovenia writing on the Bad Science web log, stated that “whoever reported on this failed to call a university professor to check whether it was really new. Any university professor would have told this reporter that there are many ways of dealing with division by zero, and that Mr. Anderson’s was just one of known ones.”

Ollie Williams, one of the BBC Radio Berkshire reporters who wrote the BBC story, initially stated that “It seems odd to me that his theory would get as far as television if it’s so easily blown out of the water by visitors to our site, so there must be something more to it.” and directly responded to criticisms of BBC journalism on several points on his web log.

He pointed out that people should remember that his target audience was local people in Berkshire with no mathematical knowledge, and that he was “not writing for a global audience of mathematicians”. “Some people have had a go at Dr Anderson for using simplified terminology too,” he continued, “but he knows we’re playing to a mainstream audience, and at the time we filmed him, he was showing his theory to a class of schoolchildren. Those circumstances were never going to breed an in-depth half-hour scientific discussion, and none of our regular readers would want that.”.

On the matter of fact checking, he replied that “if you only want us to report scientific news once it’s appeared, peer-reviewed, in a recognised journal, it’s going to be very dry, and it probably won’t be news.”, adding that “It’s not for the BBC to become a journal of mathematics — that’s the job of journals of mathematics. It’s for the BBC to provide lively science reporting that engages and involves people. And if you look at the original page, you’ll find a list as long as your arm of engaged and involved people.”.

Williams pointed out that “We did not present Dr Anderson’s theory as gospel, although with hindsight it could have been made clearer that this is very much a theory and by no means universally accepted. But we certainly weren’t shouting a mathematical revolution from the rooftops. Dr Anderson has, in one or two places, been chastised for coming to the media with his theory instead of his peers — a sure sign of a quack, boffin and/or crank according to one blogger. Actually, one of our reporters happened to meet him during a demonstration against the closure of the university’s physics department a couple of weeks ago, got chatting, and discovered Dr Anderson reckoned he was onto something. He certainly didn’t break the door down looking for media coverage.”.

Some commentators, at the BBC web page and at Slashdot, have attempted serious mathematical descriptions of what Anderson has done, and subjected it to analysis. One description was that Anderson has taken the field of real numbers and given it complete closure so that all six of the common arithmetic operators were surjective functions, resulting in “an object which is barely a commutative ring (with operators with tons of funky corner cases)” and no actual gain “in terms of new theorems or strong relation statements from the extra axioms he has to tack on”.

Jamie Sawyer, a mathematics undergraduate at the University of Warwick writing in the Warwick Maths Society discussion forum, describes what Anderson has done as deciding that R ? { ? ? , + ? } {\displaystyle \mathbb {R} \cup \lbrace -\infty ,+\infty \rbrace } , the so-called extended real number line, is “not good enough […] because of the wonderful issue of what 0 0 {\displaystyle {\frac {0}{0}}} is equal to” and therefore creating a number system R ? { ? ? , ? , + ? } {\displaystyle \mathbb {R} \cup \lbrace -\infty ,\Phi ,+\infty \rbrace } .

Andrej Bauer stated that Anderson’s axioms of transreal arithmetic “are far from being original. First, you can adjoin + ? {\displaystyle +\infty } and ? ? {\displaystyle -\infty } to obtain something called the extended real line. Then you can adjoin a bottom element to represent an undefined value. This is all standard and quite old. In fact, it is well known in domain theory, which deals with how to represent things we compute with, that adjoining just bottom to the reals is not a good idea. It is better to adjoin many so-called partial elements, which denote approximations to reals. Bottom is then just the trivial approximation which means something like ‘any real’ or ‘undefined real’.”

Commentators have pointed out that in the field of mathematical analysis, 0 0 {\displaystyle {\frac {0}{0}}} (which Anderson has defined axiomatically to be ? {\displaystyle \Phi } ) is the limit of several functions, each of which tends to a different value at its limit:

  • lim x ? 0 x 0 {\displaystyle \lim _{x\to 0}{\frac {x}{0}}} has two different limits, depending from whether x {\displaystyle x} approaches zero from a positive or from a negative direction.
  • lim x ? 0 0 x {\displaystyle \lim _{x\to 0}{\frac {0}{x}}} also has two different limits. (This is the argument that commentators gave. In fact, 0 x {\displaystyle {\frac {0}{x}}} has the value 0 {\displaystyle 0} for all x ? 0 {\displaystyle x\neq 0} , and thus only one limit. It is simply discontinuous for x = 0 {\displaystyle x=0} . However, that limit is different to the two limits for lim x ? 0 x 0 {\displaystyle \lim _{x\to 0}{\frac {x}{0}}} , supporting the commentators’ main point that the values of the various limits are all different.)
  • Whilst sin ? 0 = 0 {\displaystyle \sin 0=0} , the limit lim x ? 0 sin ? x x {\displaystyle \lim _{x\to 0}{\frac {\sin x}{x}}} can be shown to be 1, by expanding the sine function as an infinite Taylor series, dividing the series by x {\displaystyle x} , and then taking the limit of the result, which is 1.
  • Whilst 1 ? cos ? 0 = 0 {\displaystyle 1-\cos 0=0} , the limit lim x ? 0 1 ? cos ? x x {\displaystyle \lim _{x\to 0}{\frac {1-\cos x}{x}}} can be shown to be 0, by expanding the cosine function as an infinite Taylor series, dividing the series subtracted from 1 by x {\displaystyle x} , and then taking the limit of the result, which is 0.

Commentators have also noted l’Hôpital’s rule.

It has been pointed out that Anderson’s set of transreal numbers is not, unlike the set of real numbers, a mathematical field. Simon Tatham, author of PuTTY, stated that Anderson’s system “doesn’t even think about the field axioms: addition is no longer invertible, multiplication isn’t invertible on nullity or infinity (or zero, but that’s expected!). So if you’re working in the transreals or transrationals, you can’t do simple algebraic transformations such as cancelling x {\displaystyle x} and ? x {\displaystyle -x} when both occur in the same expression, because that transformation becomes invalid if x {\displaystyle x} is nullity or infinity. So even the simplest exercises of ordinary algebra spew off a constant stream of ‘unless x is nullity’ special cases which you have to deal with separately — in much the same way that the occasional division spews off an ‘unless x is zero’ special case, only much more often.”

Tatham stated that “It’s telling that this monstrosity has been dreamed up by a computer scientist: persistent error indicators and universal absorbing states can often be good computer science, but he’s stepped way outside his field of competence if he thinks that that also makes them good maths.”, continuing that Anderson has “also totally missed the point when he tries to compute things like 0 0 {\displaystyle 0^{0}} using his arithmetic. The reason why things like that are generally considered to be ill-defined is not because of a lack of facile ‘proofs’ showing them to have one value or another; it’s because of a surfeit of such ‘proofs’ all of which disagree! Adding another one does not (as he appears to believe) solve any problem at all.” (In other words: 0 0 {\displaystyle 0^{0}} is what is known in mathematical analysis as an indeterminate form.)

To many observers, it appears that Anderson has done nothing more than re-invent the idea of “NaN“, a special value that computers have been using in floating-point calculations to represent undefined results for over two decades. In the various international standards for computing, including the IEEE floating-point standard and IBM’s standard for decimal arithmetic, a division of any non-zero number by zero results in one of two special infinity values, “+Inf” or “-Inf”, the sign of the infinity determined by the signs of the two operands (Negative zero exists in floating-point representations.); and a division of zero by zero results in NaN.

Anderson himself denies that he has re-invented NaN, and in fact claims that there are problems with NaN that are not shared by nullity. According to Anderson, “mathematical arithmetic is sociologically invalid” and IEEE floating-point arithmetic, with NaN, is also faulty. In one of his papers on a “perspex machine” dealing with “The Axioms of Transreal Arithmetic” (Jamie Sawyer writes that he has “worries about something which appears to be named after a plastic” — “Perspex” being a trade name for polymethyl methacrylate in the U.K..) Anderson writes:

We cannot accept an arithmetic in which a number is not equal to itself (NaN != NaN), or in which there are three kinds of numbers: plain numbers, silent numbers, and signalling numbers; because, on writing such a number down, in daily discourse, we can not always distinguish which kind of number it is and, even if we adopt some notational convention to make the distinction clear, we cannot know how the signalling numbers are to be used in the absence of having the whole program and computer that computed them available. So whilst IEEE floating-point arithmetic is an improvement on real arithmetic, in so far as it is total, not partial, both arithmetics are invalid models of arithmetic.

In fact, the standard convention for distinguishing the two types of NaNs when writing them down can be seen in ISO/IEC 10967, another international standard for how computers deal with numbers, which uses “qNaN” for non-signalling (“quiet”) NaNs and “sNaN” for signalling NaNs. Anderson continues:

[NaN’s] semantics are not defined, except by a long list of special cases in the IEEE standard.

“In other words,” writes Scott Lamb, a BSc. in Computer Science from the University of Idaho, “they are defined, but he doesn’t like the definition.”.

The main difference between nullity and NaN, according to both Anderson and commentators, is that nullity compares equal to nullity, whereas NaN does not compare equal to NaN. Commentators have pointed out that in very short order this difference leads to contradictory results. They stated that it requires only a few lines of proof, for example, to demonstrate that in Anderson’s system of “transreal arithmetic” both 1 = 2 {\displaystyle 1=2} and 1 ? 2 {\displaystyle 1\neq 2} , after which, in one commentator’s words, one can “prove anything that you like”. In aiming to provide a complete system of arithmetic, by adding extra axioms defining the results of the division of zero by zero and of the consequent operations on that result, half as many again as the number of axioms of real-number arithmetic, Anderson has produced a self-contradictory system of arithmetic, in accordance with Gödel’s incompleteness theorems.

One reader-submitted comment appended to the BBC news article read “Step 1. Create solution 2. Create problem 3. PROFIT!”, an allusion to the business plan employed by the underpants gnomes of the comedy television series South Park. In fact, Anderson does plan to profit from nullity, having registered on the 27th of July, 2006 a private limited company named Transreal Computing Ltd, whose mission statement is “to develop hardware and software to bring you fast and safe computation that does not fail on division by zero” and to “promote education and training in transreal computing”. The company is currently “in the research and development phase prior to trading in hardware and software”.

In a presentation given to potential investors in his company at the ANGLE plc showcase on the 28th of November, 2006, held at the University of Reading, Anderson stated his aims for the company as being:

To investors, Anderson makes the following promises:

  • “I will help you develop a curriculum for transreal arithmetic if you want me to.”
  • “I will help you unify QED and gravitation if you want me to.”
  • “I will build a transreal supercomputer.”

He asks potential investors:

  • “How much would you pay to know that the engine in your ship, car, aeroplane, or heart pacemaker won’t just stop dead?”
  • “How much would you pay to know that your Government’s computer controlled military hardware won’t just stop or misfire?”

The current models of computer arithmetic are, in fact, already designed to allow programmers to write programs that will continue in the event of a division by zero. The IEEE’s Frequently Asked Questions document for the floating-point standard gives this reply to the question “Why doesn’t division by zero (or overflow, or underflow) stop the program or trigger an error?”:

“The [IEEE] 754 model encourages robust programs. It is intended not only for numerical analysts but also for spreadsheet users, database systems, or even coffee pots. The propagation rules for NaNs and infinities allow inconsequential exceptions to vanish. Similarly, gradual underflow maintains error properties over a precision’s range.
“When exceptional situations need attention, they can be examined immediately via traps or at a convenient time via status flags. Traps can be used to stop a program, but unrecoverable situations are extremely rare. Simply stopping a program is not an option for embedded systems or network agents. More often, traps log diagnostic information or substitute valid results.”

Simon Tatham stated that there is a basic problem with Anderson’s ideas, and thus with the idea of building a transreal supercomputer: “It’s a category error. The Anderson transrationals and transreals are theoretical algebraic structures, capable of representing arbitrarily big and arbitrarily precise numbers. So the question of their error-propagation semantics is totally meaningless: you don’t use them for down-and-dirty error-prone real computation, you use them for proving theorems. If you want to use this sort of thing in a computer, you have to think up some concrete representation of Anderson transfoos in bits and bytes, which will (if only by the limits of available memory) be unable to encompass the entire range of the structure. And the point at which you make this transition from theoretical abstract algebra to concrete bits and bytes is precisely where you should also be putting in error handling, because it’s where errors start to become possible. We define our theoretical algebraic structures to obey lots of axioms (like the field axioms, and total ordering) which make it possible to reason about them efficiently in the proving of theorems. We define our practical number representations in a computer to make it easy to detect errors. The Anderson transfoos are a consequence of fundamentally confusing the one with the other, and that by itself ought to be sufficient reason to hurl them aside with great force.”

Geomerics, a start-up company specializing in simulation software for physics and lighting and funded by ANGLE plc, had been asked to look into Anderson’s work by an unnamed client. Rich Wareham, a Senior Research and Development Engineer at Geomerics and a MEng. from the University of Cambridge, stated that Anderson’s system “might be a more interesting set of axioms for dealing with arithmetic exceptions but it isn’t the first attempt at just defining away the problem. Indeed it doesn’t fundamentally change anything. The reason computer programs crash when they divide by zero is not that the hardware can produce no result, merely that the programmer has not dealt with NaNs as they propagate through. Not dealing with nullities will similarly lead to program crashes.”

“Do the Anderson transrational semantics give any advantage over the IEEE ones?”, Wareham asked, answering “Well one assumes they have been thought out to be useful in themselves rather than to just propagate errors but I’m not sure that seeing a nullity pop out of your code would lead you to do anything other than what would happen if a NaN or Inf popped out, namely signal an error.”.