Archive for the Politics Category

Equal Marriage Bingo!

Posted in Politics with tags , , on June 3, 2013 by telescoper

If you’re following the debate in the House of Lords on the Second Reading of the Equal Marriage Bill, why not play Equal Marriage Bingo? Just cross off the predictable stock phrases as and when they occur, and you might win yourself a full House (of Lords). Although why you would want one is a mystery…

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courtesy of Stonewall

Tuition Fee Caps

Posted in Education, Finance, Politics with tags , , , , , , , on May 27, 2013 by telescoper

I know it’s a Bank Holiday, but I’ve been thinking…

About a week ago I posted an item arguing that the current system of higher education funding is detrimental to the health of STEM disciplines (i.e. Science, Technology, Engineering and Mathematics). The main reason for this is that present funding arrangements fail to address the real difference in cost of degree courses in various disciplines: the income to a University for a student doing Physics is about £10.5K whereas for a student doing, say, English it is £9K. I would  estimate the extra cost for the former corresponds to at least a factor two and probably more. That’s partly because Physics requires laboratory space and equipment (and related technical support) that English does not, but also because Physics students receive many more contact hours with academic staff.  The issue is just as much about arts students being ripped off (as they undoubtedly are being) as it is a strategic failure to protect the sciences.

The problem is that the Council responsible for distributing funding (HEFCE) is strapped for cash, so is unable to fund STEM disciplines at the higher level of resource that it used to.  Since the government has decided, in its  (finite) wisdom, to transfer most of the cost of higher education to the students, HEFCE can now exert very little influence on how universities plan their portfolio of courses. Since it is a lot cheaper and easier to expand capacity in Arts & Social Sciences faculties than in the more expensive STEM disciplines, this is an incentive for Universities to turn away from the Sciences. Given our economic predicament this policy is simply perverse. We need more scientists and engineers, not fewer.

This morning I read an article in the Times Higher about the present £9K tuition fee cap. Not surprisingly the Russell Group of self-styled “elite” Universities wants it lifted, presumably so its Vice-Chancellors can receive even bigger pay rises. But that’s not the point. The article made me think of a cunning (or perhaps daft) plan, which I’m floating here with the prediction that people will shoot it down through the comments box.

Now before I go on, I just want to make it clear that I’m not – and never have been – in favour of the present funding system. I don’t object to the principle that students who can afford to should contribute to the cost of higher education, but the arrangements we’re stuck with are indefensible and I don’t think they will last long into the next Parliament. It’s telling that, only a decade after introducing tuition fees, Germany is now scrapping them. I’d prefer a hybdrid system in which the taxpayer funds scholarships for STEM disciplines and other strategically important areas, while leaving universities to charge fees for other disciplines.

However, since we’ve been lumbered with a silly system, it’s worth exploring what might be achieved by working within it. There doesn’t seem to be much creative thinking going on in the coalition, and the Labour Party just says it would reduce the fee cap to £6K which would squeeze all academic disciplines equally, without doing anything about the anomalies mentioned above.

My  idea is quite simple. I propose that universities be entitled to lift their fee levels for STEM subjects by an amount X, provide that they reduce the fees for Arts and Social Sciences students by the same amount. The current fee level is £9K for all disciplines, so an example might be for STEM subjects to charge £12K while A&SS (if you pardon the abbreviation) get £6K. That would achieve the factor of two differential I mentioned above.

The advantages of this proposal are that it gives an incentive for universities to promote STEM disciplines and more properly reflects the difference in cost of the different subjects, without increasing the cost to the Treasury. In fact only about 25% of students study in STEM disciplines, at least for the moment, so the cost of fee loans will actually go down

The biggest potential flaw is  that increasing the cost to STEM students would put them off. There’s simply no data on which to base an argument as to whether this would be the case or not. I suspect however that a difference in price would be perceived by many as a difference in value.

Anyway, it’s just an idea. That’s what blogs are for. Thinking out loud as it were. Feel free to object..

Proletarian Democracy Eurovision Song Contest Preview (Part 1)

Posted in Politics with tags , , , on May 16, 2013 by telescoper

As we approach the evening of interminable tedium that is the Eurovision Song Contest, it’s refreshing to stumble across a Blog post that reveals the competitions true political and cultural significance…

The Bravery of Being out of Range

Posted in Poetry, Politics with tags , , , , , on April 16, 2013 by telescoper

I’ve been planning for some time to post the lyrics of the song The Bravery of being out of Range by Roger Waters (ex Pink Floyd) as a response to the  ongoing covert war being waged by the United States, which has claimed thousands of innocent lives in Pakistan and elsewhere. The terrible events at the Boston Marathon yesterday reminded me of this intention.  Violence always  begets violence, but the circle becomes all the more vicious when the agressor doesn’t have to display a jot of personal courage. And that goes just as much to those who planted the bombs in Boston as those who aim the drones in Pakistan. Regardless of whether the Boston bombs had anything to do with American policy, when violence is made easy there’s bound to be more of it.

You have a natural tendency
To squeeze off a shot
You’re good fun at parties
You wear the right masks
You’re old but you still
Like a laugh in the locker room
You can’t abide change
And you’re home on the range
You opened the suitcase
Behind the old workings
To show off the magnum
You deafened the canyon
A comfort a friend
Only upstaged in the end
By the Uzi machine gun
Does the recoil remind you
Remind you of sex
Old man what the hell you gonna kill next
Old timer, who you gonna kill next

I looked over Jordan and what did I see
Saw a U.S. Marine in a pile of debris
I swam in your pools
And lay under your palm trees
I looked in the eyes of the Indian
Who lay on the Federal Building steps
And through the range finder over the hill
I saw the front line boys popping their pills
Sick of the mess they find on their desert stage
And the bravery of being out of range
Yeah the question is vexed
Old man what the hell you gonna kill next
Old timer who you gonna kill next

Hey bartender, over here
Two more shots
And two more beers
Sir, turn up the TV sound
The war has started on the ground
Just love those laser guided bombs
They’re really great for righting wrongs
You hit the target, win the game
From bars 3,000 miles away
3,000 miles away
We play the game
With the bravery of being out of range
We zap and maim
With the bravery of being out of range
We strafe the train
With the bravery of being out of range
We gain terrain
With the bravery of being out of range
We play the game
With the bravery of being out of range

Thatcher: A Nation Mourns

Posted in Politics on April 8, 2013 by telescoper

Changing Times

Posted in History, Politics with tags , , on February 5, 2013 by telescoper

I couldn’t resist a quick comment about the news that today the House of Commons began a debate on the second reading of the Marriage (Same Sex Couples) Bill. The timing of this when I’ve just moved back to Brighton after an absence of 23 years or so made me think back to what things were like when I was previously here as a DPhil student.

In those days the dominant concern facing LBGT staff and students was the notorious Section 28, part of the Local Government Act of 1988, which, among other things, attacked promotion of “the acceptability of homosexuality as a pretended family relationship”. I remember very well the numerous demonstrations and other protests I went on as part of the campaign against that repugnant and obviously discriminatory piece of legislation, but it passed into law anyway. I know 25 years is a long time, 1988 was before today’s generation of undergraduates was even born, but it’s still amazing to me that attitudes have changed so much that there’s even a remote possibility that same sex marriage might be legalized. And from what I hear, the possibility isn’t remote at all…

Science and Politics

Posted in Politics, Science Politics with tags , , , , on December 22, 2012 by telescoper

It’s a dark dreary December day with a downright deluge descending outside to add to the alliteration.  Fortunately, it being almost Christmas, this weekend is offering a glut of crosswords with which I’ve been occupying myself while waiting for a break in the rain.

Among the puzzles I’ve done was a moderately challenging one in the New Statesman.  I have a subscription to the New Statesman, which means that I get it delivered in the post approximately two days after everyone else has had a chance to read it. After finishing the crossword, which contain a number of hidden (unclued) famous pseudonyms, I had a look at the rest of the magazine and discovered that this issue, the Christmas one, was edited by Brian Cox (who needs no introduction) and Robin Ince (who I believe is a comedian of some sort). It’s nice to see science featured so strongly in a political magazine, of course, but I did raise an eyebrow when I read this (about the LHC) in a piece written by Professor Cox:

The machine itself is 27 kilometres in circumference and is constructed from 9,300 superconducting electromagnets operating at -271.3°C. There is no known place in the universe that cold outside laboratories on earth…

Not so. The cryogenic systems on ESA’s Planck mission achieved a stable operating temperature at the 0.1 K level. This experiment has now reached the end of its lifetime and is warming up, but  the Herschel Space Observatory with a temperature of 1.4 K is still cooler than the Large Hadron Collider. Moreover, there are natural phenomena involving very low temperatures. The Boomerang Nebula has a measured temperature of −272.15°C, also lower than the LHC.  How does this system manage to cool itself down below the temperature of the cosmic microwave background, I hear you asking.  A detailed model is presented here; it’s “supercooled” because it is expanding so quickly compared to the rate at which it is absorbing CMB photons.

Anyway, if this all seems a bit pedantic then I suppose it is, but if prominent science advocates can’t be bothered to check their facts on things they claim to be authorities about, one wonders why the public show pay them any attention in the broader sphere. Fame and influence bring with them difficult responsibilities.

That brings me to another piece in the same issue, this one co-authored by Cox and Ince, about Science and Society entitled Politicians must not elevate mere opinion over science. I’d realised that there was a bit of a Twitter storm brewing about this item, but had to wait until the horse and cart arrived with my snail mail copy before I could try figure out what it was about. I still haven’t because although it’s not a particularly focussed piece it doesn’t seem to say anything all that controversial. In fact it just struck me that it seems to be a bit self-contradictory, on the one hand arguing that politicians should understand science better and on the other calling for a separation of science and politics.   There are two more detailed rejoinders here and here.

For my part I’ll just say that I think it is neither possible nor desirable to separate science from politics.  That’s because, whether we like it or not, we need them both. Science may help us understand the world around us, and (to a greater or lesser degree of reliability) predict its behaviour, but it does not make decisions for us. Cox and Ince argue that

Science is the framework within which we reach conclusions about the natural world. These conclusions are always preliminary, always open to revision, but they are the best we can do.

I’d put it differently, in terms of probabilities and evidence rather than “conclusions”, but I basically agree. The problem is that at some point we have to make decision which may not depend solely on the interpretation of evidence but on a host of other factors that science can say nothing about. Definite choices have to be made, even when the evidence is ambiguous. In other words we have to bring closure, much as we do when a jury delivers a verdict in a court of law, which is something that science on its own can rarely do. Mere opinion certainly counts in that context, and so it should. The point is that science is done by people, not machines. People decide what questions to ask, and what assumptions to proceed from. Choices of starting point are political (in the widest sense of the word) and sometimes what you get out of a scientific investigation  is little more than what you put in.

It’s always going to a problem in a democratic society that scientific knowledge is confined to a relatively small number of experts. We can do our best to educate as many as possible about what we do, but we’re always going to struggle to explain ourselves adequately. There will always be conspiracy theories and crackpots of various kinds. The way to proceed is not to retreat into a bunker and say “Trust me, I’m a scientist” but to be more open about the doubts and uncertainties and to present a more realistic picture of the strengths and limitations of science. That means to engage with public debate, not by preaching the gospel of science as if it held all the answers, but by acknowledging that science is a people thing and that as such it belongs in politics as much as politics belongs in it.

Generational Guilt

Posted in Biographical, Education, Politics with tags , , , , , , on November 23, 2012 by telescoper

Exhausted near the end of an exceptionally busy week, I found myself taking a short break after a two-hour lecturing session when a student knocked at my door to ask for some advice about applying for PhDs. I was happy to oblige, of course, but after he’d gone it struck me how much tougher things are for today’s generation, compared with how easy it was for me.

I got a scholarship to the local grammar school (The Royal Grammar School in Newcastle upon Tyne) by passing the 11+ examination back in 1974. I got a good education that most pupils at the School had to pay for (or at least their parents did). I got good 0 and A levels, and then passed the post A-level examination to get me into Cambridge. Through contacts at school I got a job for nine months working for a British Gas research station in Cramlington, during which time I earned a nice wage. I went to Cambridge with a healthy bank balance on top of which I received a full maintenance grant. There were no tuition fees then either. When I graduated I was solvent and debt-free.

When I applied for PhDs I did so with no real idea about what research I might do. I wasn’t an outstanding undergraduate student and my personal statement was vagueness personified, but I got a place nonetheless. The stipend was modest, but one could live on it. I never had money worries as a PhD. Nor have I since. It all seems so simple, looking back.

Today’s students have no such luck. The Direct Grant system that paid my school fees was discontinued shortly after I benefited from it. I’m sure I wouldn’t have got into University had I gone to the local comprehensive. Then maintenance grants were discontinued and fees introduced (then rapidly increased from £1000 to first £3000 and then £9000). Graduates now are usually burdened with huge debts. Moreover, when students apply for postgraduate study are nowadays often expected to not only to know precisely what they’re going to do but also be outstandingly good

The pressure we put on graduates now is out of all proportion to what I experienced. The reason? There are more of them overall, so there are more with first-class degrees chasing PhD funding. Many students who are much better than I was at the same stage of my career won’t make it just because of the arithmetic. Many will be discouraged by the finances too. It’s tragic that talented young people should be denied the chance to fulfil their ambitions by not having wealthy parents.

I’m often impressed (and even inspired) by those students who show a determination to pursue academic ambitions despite all the difficulties, but at the same time I feel guilty that it was so much easier in my day. Mine is the generation that decided to transfer the cost of higher education onto students and their families. Mine is also the generation that wrecked the economy by living beyond our means for too long.

To all those young people whose ambitions are thwarted by circumstances beyond their control all I can say is I’m sorry we oldies stole your future.

Flying Visit

Posted in Biographical, Education, Politics, The Universe and Stuff with tags , , on November 15, 2012 by telescoper

I’m still at home at 10am on a weekday, which is unusual, but that’s because I’m soon going to be doing the familiar schlepp to Heathrow airport in order to get a flight to Copenhagen. The purpose of this little trip is to participate in a PhD examination at the Niels Bohr Institute. I’ve never taken part in a Thesis Defence in the Danish system before, although I’ve done many equivalent examinations elsewhere, so I’m quite looking forward to finding out how it works. Will it be much different from the system we have in the UK? Probably, as it is a much more public occasion. Will that necessarily make it better? I don’t know. I was reading the thesis last night, actually, and it’s very interesting which is another reason to look forward to the occasion. I might even get time for some shopping too.

Anyway, before going to the airport I am going to pop along to the local polling station. Today is the day for the Election of the Police and Crime Commissioner for the South Wales Police Area. I’m going to the polling station not because I have a burning desire to vote – the list of candidates is extremely uninspiring – but because I feel I should register a protest at this farcical waste of public money at what is supposed to be a time of austerity. The political class in this country has never been held in lower esteem than at present and the last thing we need is more politicians, helping themselves to six-figure salaries at taxpayers’ expense.  More politicians does not mean more democracy. We already have local council elections, Welsh Assembly elections, General (Parliamentary) Elections and European Parliament Elections. We don’t need any more! This Election is a complete waste of time and money.

I intend, therefore, to visit the polling station and, instead of putting a cross in a box, write a strongly (but politely) worded message voicing my opinion on the matter thus spoiling my ballot paper. It will be the first time I’ve ever done such a thing, but this is the first time we’ve had such a stupid election.

Skepsis Revived

Posted in Politics, The Universe and Stuff with tags , , , , , , , , on November 14, 2012 by telescoper

I appear to be in recycling mode this week, so I thought I’d carry on with a rehash of an old post about skepticism.  The excuse for this was an item in one of the Guardian science blogs about the distinction between Skeptic and sceptic. I must say I always thought they were simply alternative spellings, the “k” being closer to the original Greek and “c” being Latinised (via French). The Oxford English dictionary merely states that “sceptic” is more widespread in the UK and Commonwealth whereas “skeptic” prevails in North America. Somehow, however, this distinction has morphed into one variant meaning a person who has a questioning attitude to or is simply unconvinced by what claims to be knowledge in a particular area, and another meaning a “denier”, the latter being an “anti-sceptic” who believes wholeheartedly and often without evidence in whatever is contrary to received wisdom. A scientists should, I think, be the former, but the latter represents a distinctly unscientific attitude.

Anyway, yesterday I blogged a little bit about dark energy as, according to the standard model, this accounts for about 75% of the energy budget of the Universe. It’s also something we don’t understand very well at all. To make a point, take a look at the following picture (credit to the High-z supernova search team).

 What is plotted is the redshift of each supernova (along the x-axis), which relates to the factor by which the universe has expanded since light set out from it. A redshift of 0.5 means the universe was compressed by a factor 1.5 in all dimensions at the time when that particular supernova went bang. The y-axis shows the really hard bit to get right. It’s the estimated distance (in terms of distance modulus) of the supernovae. In effect, this is a measure of how faint the sources are. The theoretical curves show the faintness expected of a standard source observed at a given redshift in various cosmological models. The bottom panel shows these plotted with a reference curve taken out so the trend is easier to see. Actually, this is quite an old plot and there are many more points now but this is the version that convinced most cosmologists when it came out about a decade ago, which is why I show it here.

The argument drawn from these data is that the high redshift supernovae are fainter than one would expect in models without dark energy (represented by the \Omega_{\Lambda}  in the diagram. If this is true then it means the luminosity distance of these sources is greater than it would be in a decelerating universe. Their observed properties can be accounted for, however, if the universe’s expansion rate has been accelerating since light set out from the supernovae. In the bog standard cosmological models we all like to work with, acceleration requires that \rho + 3p/c^2 be negative. The “vacuum” equation of state p=-\rho c^2 provides a simple way of achieving this but there are many other forms of energy that could do it also, and we don’t know which one is present or why…

This plot contains the principal evidence that has led to most cosmologists accepting that the Universe is accelerating.  However, when I show it to first-year undergraduates (or even to members of the public at popular talks), they tend to stare in disbelief. The errors are huge, they say, and there are so  few data points. It just doesn’t look all that convincing. Moreover, there are other possible explanations. Maybe supernovae were different beasties back when the universe was young. Maybe something has absorbed their light making them look fainter rather than being further away. Maybe we’ve got the cosmological models wrong.

The reason I have shown this diagram is precisely because it isn’t superficially convincing. When they see it, students probably form the opinion that all cosmologists are gullible idiots. I’m actually pleased by that.  In fact, it’s the responsibility of scientists to be skeptical about new discoveries. However, it’s not good enough just to say “it’s not convincing so I think it’s rubbish”. What you have to do is test it, combine it with other evidence, seek alternative explanations and test those. In short you subject it to rigorous scrutiny and debate. It’s called the scientific method.

Some of my colleagues express doubts about me talking as I do about dark energy in first-year lectures when the students haven’t learned general relativity. But I stick to my guns. Too many people think science has to be taught as great stacks of received wisdom, of theories that are unquestionably “right”. Frontier sciences such as cosmology give us the chance to demonstrate the process by which we find out about the answers to big questions, not by believing everything we’re told but by questioning it.

My attitude to dark energy is that, given our limited understanding of the constituents of the universe and the laws of matter, it’s the best explanation we have of what’s going on. There is corroborating evidence of missing energy, from the cosmic microwave background and measurements of galaxy clustering, so it does have explanatory power. I’d say it was quite reasonable to believe in dark energy on the basis of what we know (or think we know) about the Universe.  In other words, as a good Bayesian, I’d say it was the most probable explanation. However, just because it’s the best explanation we have now doesn’t mean it’s a fact. It’s a credible hypothesis that deserves further work, but I wouldn’t bet much against it turning out to be wrong when we learn more.

I have to say that too many cosmologists seem to accept the reality of dark energy  with the unquestioning fervour of a religious zealot.  Influential gurus have turned the dark energy business into an industrial-sized bandwagon that sometimes makes it difficult, especially for younger scientists, to develop independent theories. On the other hand, it is clearly a question of fundamental importance to physics, so I’m not arguing that such projects should be axed. I just wish the culture of skepticism ran a little deeper.

Another context in which the word “skeptic” crops up frequently nowadays is  in connection with climate change although it has come to mean “denier” rather than “doubter”. I’m not an expert on climate change, so I’m not going to pretend that I understand all the details. However, there is an interesting point to be made in comparing climate change with cosmology. To make the point, here’s another figure.

There’s obviously a lot of noise and it’s only the relatively few points at the far right that show a clear increase (just as in the first Figure, in fact). However, looking at the graph I’d say that, assuming the historical data points are accurate,  it looks very convincing that the global mean temperature is rising with alarming rapidity. Modelling the Earth’s climate is very difficult and we have to leave it to the experts to assess the effects of human activity on this curve. There is a strong consensus from scientific experts, as monitored by the Intergovernmental Panel on Climate Change, that it is “very likely” that the increasing temperatures are due to increased atmospheric concentrations of greenhouse gas emissions.

There is, of course, a bandwagon effect going on in the field of climatology, just as there is in cosmology. This tends to stifle debate, make things difficult for dissenting views to be heard and evaluated rationally,  and generally hinders the proper progress of science. It also leads to accusations of – and no doubt temptations leading to – fiddling of the data to fit the prevailing paradigm. In both fields, though, the general consensus has been established by an honest and rational evaluation of data and theory.

I would say that any scientist worthy of the name should be skeptical about the human-based interpretation of these data and that, as in cosmology (or any scientific discipline), alternative theories should be developed and additional measurements made. However, this situation in climatology is very different to cosmology in one important respect. The Universe will still be here in 100 years time. We might not.

The big issue relating to climate change is not just whether we understand what’s going on in the Earth’s atmosphere, it’s the risk to our civilisation of not doing anything about it. This is a great example where the probability of being right isn’t the sole factor in making a decision. Sure, there’s a chance that humans aren’t responsible for global warming. But if we carry on as we are for decades until we prove conclusively that we are, then it will be too late. The penalty for being wrong will be unbearable. On the other hand, if we tackle climate change by adopting greener technologies, burning less fossil fuels, wasting less energy and so on, these changes may cost us a bit of money in the short term but  frankly we’ll be better off anyway whether we did it for the right reasons or not. Of course those whose personal livelihoods depend on the status quo are the ones who challenge the scientific consensus most vociferously. They would, wouldn’t they?

This is a good example of a decision that can be made on the basis of a  judgement of the probability of being right. In that respect , the issue of how likely it is that the scientists are correct on this one is almost irrelevant. Even if you’re a complete disbeliever in science you should know  how to respond to this issue, following the logic of Blaise Pascal. He argued that there’s no rational argument for the existence or non-existence of God but that the consequences of not believing if God does exist (eternal damnation) were much worse than those of behaving as if you believe in God when he doesn’t. For “God” read “climate change” and let Pascal’s wager be your guide….