science – 今日吃瓜 I Championing Mathematical Sciences for Australia鈥檚 Advancement 今日吃瓜 Fri, 07 Aug 2026 02:41:29 +0000 en-US hourly 1 https://wordpress.org/?v=5.8.17 /wp-content/uploads/2015/11/cropped-今日吃瓜_icon-32x32.png science – 今日吃瓜 I Championing Mathematical Sciences for Australia鈥檚 Advancement 32 32 National Science Quiz 2021 – Live Studio Audience /2021/07/20/national-science-quiz/ Tue, 20 Jul 2021 00:15:58 +0000 /?p=11016

Celebrate (14-22 August) by being part of the live studio audience for the recording of the National Science Quiz 2021!

Charlie Pickering, of ABC’s The Weekly Program, will host and quiz two teams of science communicators and scientists as they battle it out for the honour of National Science Quiz champions 2021.

This event is free to come along to in Melbourne, but registration essential.

National Science Quiz – LIVE Studio Audience
Sunday 8 August 2021
2pm鈥�3:30pm (AEST)
The Edge, Fed Square, Flinders Street, Melbourne
Guest panellists include Alan Duffy, Alanta Colley, Catriona Nguyen-Robertson, Jen Martin, Jared Cole and Normal Do.

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When Does A Second COVID-19 Surge End? /2020/09/25/when-does-a-second-covid-19-surge-end/ Fri, 25 Sep 2020 02:08:15 +0000 /?p=10114 Australian mathematicians Nick James and Max Menzies have published what they believe is the first analysis of COVID-19 infection rates in US states to identify turning points in data that indicate when surges have started or ended.

The new study is published today in the journal ‘Chaos’, published by the American Institute of Physics.

Read more through

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scienceXart: spot the maths judging panel announced /2020/09/25/sciencexart-spot-the-maths-judging-panel-announced/ Fri, 25 Sep 2020 02:04:39 +0000 /?p=10112 Australian Academy of Science reveals competition judges from art and mathematical disciplines

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Tackling the gender bias in mathematics education /2015/08/21/tackling-the-gender-bias-in-mathematics-education/ Fri, 21 Aug 2015 00:11:51 +0000 http://amsi.org.au/?p=3332 Article by , , 10 August 2015.

The idea that boys are better at maths than girls is hardly new. Seemingly a common misconception, it leads to a warped perception of mathematics in education and beyond. Present throughout society from subtle biases to references in popular culture, the gender imbalance is blatantly obvious in higher education.

Sixty-five years ago, women made up an underwhelming 20 per cent of university students; academia was very much dominated by their man counterparts. Now, however, about 55 per cent of students at university are girls, and despite the significant increase in the number of women undertaking higher education, they are still underrepresented in STEM fields (science, technology, engineering, and particularly mathematics).

Earlier this year, the results of a听听published by the indicated that the gender imbalance in mathematics may extend back to gender biases in primary school. Teachers reward men students higher marks in maths than their girl peers, even if they have the same ability level, the study showed.

The researchers looked at the marks for maths work given by teachers who knew the gender of the students being assessed, in comparison with those given by teachers who were unaware of the gender of the students, revealing a gender-bias towards men. From this point, the study examined the effects of this early gender-bias throughout a child鈥檚 education. Leaning towards men based on perceived mathematical ability produced long-lasting effects on the educational choices made by students towards their future…

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Massive rise in internships to boost university-business links /2015/08/02/massive-rise-in-internships-to-boost-university-business-links/ Sun, 02 Aug 2015 02:43:46 +0000 http://amsi.org.au/?p=3200 Article by , , 2听August 2015

A move to deepen links between business and universities is set to boost 10-fold the number of PhD students placed with employers in research internships in the next five years.

The 今日吃瓜 (今日吃瓜), which operates a PhD internship scheme, said that a new commitment from eight universities to fund the scheme will drive the rapid expansion.

今日吃瓜 director Geoff Prince said the scheme, called APR.Intern, would place about 100 research student in internships this year.

“At maturity we should be able to place 1000 students a year around Australia,” he听said.

The scheme began by placing only mathematics and statistics PhD students into internships. But it now works with students in a wide range of disciplines 鈥� including engineering, finance, IT, biotechnology, environmental science, marketing and business 鈥� and places them into all business sectors.

Professor Prince said the expanded scheme would help lift Australia’s poor record in establishing partnerships between university researchers and business.

Australia is currently ranked 29th out of 30 countries in an OECD ranking of university-business collaboration on innovation.

Under the APR.Intern scheme research students are placed with a business for four to five听months to find solutions for specific problems. Students are mentored by an academic supervisor during the internship which meant that academics built ongoing relationships with companies.

“In general companies pay all the costs, which are eligible for research tax breaks,” Professor Prince said.

A five months internship costs the business $25,000. This is made up of $3000 a month to cover the student’s stipend (the student is not employed by the business), a $5000 fee to the university for the cost of mentoring and a听$5000 fee to APR.Intern.

今日吃瓜 says that听the internship scheme has a 97 per cent business satisfaction rating.

MORE THAN JUST WORK PLACEMENTS

Professor Prince said the scheme offered more than just work placements. Students undertook research internships which often had a transformational impact on the student, he said.

He said the expansion would be driven by new partnership agreements with eight universities 鈥� Melbourne, Monash, Deakin, Swinburne, La Trobe, RMIT, Sydney and UTS. Together the universities would provide $500,000 a year to employ business development staff, embedded in the universities, to place more students with companies in Victoria and NSW.

However APR.Intern already works with a wider range of universities and expects further expansion in other states in the coming two years.

Examples of internships recently arranged include a UNSW maths PhD student placed with Optima Financial to apply the mathematical technique of optimisation to financial planning and a Deakin University PhD student placed with NBN Co to work on security of data in smartphone apps.

Professor Prince said there was an urgent need to increase the penetration of graduates with advanced research expertise into the private sector.

“They will boost innovation and business-university collaboration but we must give them those skills and give business the confidence to employ them,” Professor Prince said.

Currently Australia has one of the lowest numbers of research workers in business in developed countries. Only 2.2 researchers are employed in business for every 100 workers.

 

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What’s missing in research policy? /2015/07/23/whats-missing-in-research-policy/ Thu, 23 Jul 2015 04:52:53 +0000 http://amsi.org.au/2015/07/23/whats-missing-in-research-policy/

Senator Kim Carr,Shadow Minister for Higher Education, Research, Innovation and Industry, gave a speech to the Innovative Research Universities (IRU) senior staff forum on听Wednesday, 22 July 2015听.

In his address听Senator Carr听highlights the importance of fundamental research and reminds us:

Universities, by definition, are dedicated to the disinterested pursuit of knowledge.听They exist to discover what is not known as well as to pass on to new generations what is already known.

A research policy that neglects basic research will also fail to achieve its objectives with regard to applied research.听You will all know instances of discoveries arising from pure research that not only expanded technological possibilities but transformed our daily lives. [鈥听Without research into black holes, we wouldn鈥檛 have WiFi.

Read听the senator’s speech here, or on听his .

The Government鈥檚 Agenda

Today I propose to talk about the Abbott Government鈥檚 research agenda and Labor鈥檚 approach.

You will not be surprised to hear that I believe that the Government鈥檚 agenda is fundamentally flawed.

It is not only a matter of the substantial cuts the Government has made, and intends to make, to the funding of universities, to publicly funded research agencies, and to programs promoting industry-research collaboration.

Those cuts are bad enough. Over the course of two Budgets, the Government has sought to drain more than $3 billion from the system.

What鈥檚 arguably worse, however, is the incoherent, indeed chaotic, nature of this so-called agenda.

Earlier this month, the Government announced yet another review of research policy 鈥� the sixth in less than two years.

The Minister for Education, Christopher Pyne, said that the Government would undertake a review of university research funding and policy as part of its听Boosting the Commercial Returns from Research听strategy.

I am not going to argue that the current block grant funding system is perfect 鈥� and I know the IRU is of the view that it could be improved.

But the context and nature of this review give me no confidence that it will lead to positive change.

Christopher Pyne鈥檚 announcement did not mention adequacy of funding, or how this review would interact with the work of the other studies.

There was no discernible requirement for input from industry, and no apparent direction to take account of broader science and innovation policy.

The importance of basic research

Worst of all was the fact that neither in the terms of reference nor in the Minister鈥檚 statement was there any mention of the importance of basic research and the generation of new knowledge.

That is the deepest problem I have with the Abbott Government鈥檚 research policy: I fear that the balance between pure and applied research has been lost.

My issue here, as I trust you understand, is with the Government.

I am aware that some of you are personally involved in the work of the new review.

I have no doubt that the review will do everything the Minister has asked of it.

The problem lies in what he has failed to ask.

A research policy that neglects basic research will also fail to achieve its objectives with regard to applied research.

You will all know instances of discoveries arising from pure research that not only expanded technological possibilities but transformed our daily lives.

The usual example cited by proud Australians is WiFi, which was made possible by technology CSIRO scientists developed for deep-space radio astronomy.

Without research into black holes, we wouldn鈥檛 have WiFi.

This isn鈥檛 a matter of one accidental spin-off. It is how human knowledge has always progressed.

To ignore or downgrade basic research is to curtail our chances of doing applied research really well.

Yet the Abbott Government鈥檚 much-touted commercialisation agenda fails to recognise this.

It may be, of course, that those conducting the review will advise the Government that neglecting basic research will undermine its commercial goals.

But I am not confident that ministers would understand their point.

The role of IRU

Universities, by definition, are dedicated to the disinterested pursuit of knowledge.

They exist to discover what is not known as well as to pass on to new generations what is already known.

That brings me to another question you have asked me to discuss: the role of your own network.

The six universities in the IRU have this in common: that they are chiefly located in regional cities or in outer suburbs of our larger cities.

You will know from the stance I have taken during the debate over the Government鈥檚 plans to deregulate fees that I attach a particular importance to suburban and regional universities, and the people they serve.

Your universities are sources of social mobility and inclusiveness 鈥� they provide educational opportunities to many Australians who might not otherwise have access to higher education.

What is more, they conduct research that is often very closely connected to the concerns of local communities.

I have in mind projects like:

  • Charles Darwin University鈥檚 research into the eradication of ear disease among indigenous Australians.
  • Flinders University鈥檚 research into eliminating the difference in outcomes for regional heart attack patients;
  • James Cook University鈥檚 development of anti-inflammatory treatments for hookworm;
  • Murdoch University鈥檚 study of innovations in crop rotation, saving $250,000 per farm per year;
  • Griffith University鈥檚 study of biogas and biochar, integrating both carbon-negative energy production and carbon sequestration within one agricultural project;

and La Trobe University鈥檚 collaboration with the Victorian Government in the use of DNA analysis to improve breeding outcomes in farming.

This research record is proof, to those who might demand it, that suburban and regional universities punch above their weight.

The ERA debate

In the sector, talk of research records often leads to discussion of the Excellence in Research for Australia framework of quality assessment, which Labor introduced.

I remain convinced that its citation-based approach is the fairest and most effective means of assessing research excellence in an international context.

And I am sure that the projects I have just mentioned would measure up well under the ERA framework.

I also know that university engagement with industry and the broader community has an impact well beyond citation, and that this is more difficult to quantify.

The challenge is to find a way of supplementing ERA, so that we also acknowledge and reward engagement.

But nothing will be gained by tearing down one measure to create the other.

Labor鈥檚 record

To hear Christopher Pyne and Ian Macfarlane talk, you would think that they invented the concept of research engagement with industry.

Yet when they try to explain what they have in mind, they all too often let business and industry off the hook, apparently expecting that universities and research agencies will do the heavy lifting.

And they misrepresent the record of Labor鈥檚 most recent time in office with breath-taking chutzpah.

So let me set the record straight here on the comparative performance of the two governments.

The Abbott Government has been in office for almost two years and recently delivered its second Budget.

In Labor鈥檚 first 18 months, we conducted comprehensive reviews of the innovation and higher education systems, and responded to these in our second Budget.

That Budget delivered a 10-year innovation strategy that included $3.1听billion in new investment in public and private sector R&D.

It introduced Sustainable Research Excellence, recognising the need to properly fund the indirect costs of research.

It established the Joint Research Engagement program, to foster and reward university research collaboration with industry and other end-users.

I think we would all agree that this measure has not been as effective at driving behaviour as we might have hoped 鈥� but it was a step in the right direction.

We took that step because I have always understood and advocated the need for universities and industry to work together better.

That鈥檚 why, in addition to our university commitments, we established, among other measures:

  • Commercialisation Australia 鈥� to help bring the fruits of Australian research to market;
  • Enterprise Connect 鈥� one objective of which was to improve businesses鈥� access to new technologies and the latest research; and
  • Researchers in Business 鈥� to build a human connection, promoting understanding by researchers of how their work could be applied, and in business of the value of highly developed research skills in driving innovation.

What has been destroyed

All of these programs have been abolished: the government has systematically dismantled the suite of innovation measures that had gained real traction in industry and the research sector and were achieving real results.

The same government is abandoning NICTA and its 300 PhD students who work directly with industry.

In two budgets, Labor created a framework for fostering research-industry collaboration. And in two budgets, the Abbott Government has done its best to destroy it.

So when I look at this record, and then I hear about yet another review into how to boost the commercial returns from research, I cannot help but be sceptical.

STEM and the future

The recently announced HILDA survey 鈥� which I am sure you have heard about 鈥� has not been in the news only because it ruffled feathers among the Go8.

HILDA also reported a drift away from science, technology, engineering and mathematics (STEM) disciplines among young Australians.

In the last year of the survey, 2012, only 22 per cent of men with post-school education aged 25-34 held engineering and related qualifications, compared with 31 per cent of 45-54 year old males.

There was an increase in the number of women studying engineering, but from a very low base.

HILDA echoes findings by the Business Council of Australia and the Australian Industry Group, which have also reported skills shortages and called for a focus on improving STEM literacy across the workforce.

In September last year the Chief Scientist issued a major report on STEM, in which he called on policymakers to secure training in STEM skills across the education system and the economy.

More recently his office released a summary of a Deloitte Access Economics survey of employers, which found that almost half of those surveyed expected their need for STEM graduates and tradespeople to increase during the next decade.

If these multiple warnings worry Christopher Pyne and Ian Macfarlane, they have given no indication of it.

Perhaps they have been listening only to those who argue that there is already an oversupply of STEM graduates.

Such arguments typically try to predict the job market of coming decades by looking at the employment histories of recent graduates.

But conditions in the present post-boom market don鈥檛 change the fact that the jobs of the future are going to require STEM skills.

Three out of every four of the fastest-growing occupations in our economy will require STEM literacy.

That includes occupations that traditionally attract humanities and social science graduates.

And, although Australia鈥檚 Government is content to blithely ignore the decline in some STEM enrolments, governments in other countries with which we like to compare ourselves are investing in STEM education.

Labor鈥檚 agenda

A Labor government would not allow Australia to slip behind the rest of the world in this way.

That is why Bill Shorten announced in his Budget Reply speech that Labor will:

  • Set an ambition for the nation to invest 3 per cent of our GDP in Research and Development by the end of the decade;
  • Foster the essential literacy of the 21st century 鈥� the digital language of coding 鈥� across the school curriculum;
  • Boost the skills of 25,000 existing teachers and train 25,000 new teachers in STEM skills.

Provide an incentive for more talented students to study STEM disciplines at university, via HECS-free degree scholarships.

I want to emphasise the ambition here 鈥� 3听per听cent of GDP being spent on R&D by 2030.

As Bill said, this will require universities, industry, the people and the Parliament to work together and each to pull their weight.

Labor鈥檚 plan for the future of the education system and for the jobs of the future is real and it is clear.

After almost two years, what鈥檚 also clear is the Liberals鈥� complete lack of a plan.

A time of opportunity

 

Let me close by saying this is potentially a time of great opportunity for universities.

Since Mr Pyne鈥檚 plan for deregulating fees and cutting the funding of Commonwealth Supported Places by 20听per cent was announced in the 2014 Budget, the higher education debate in this country has been characterised by uncertainty and anxiety.

I believe that the time for anxiety is over, even if Mr Pyne tries for a third time to get a deregulation bill through the Parliament.

I do not think he can expect any greater success in getting a deregulation bill through the Senate than he had the previous two times.

And if the Government wants to fight an election on its plan to price many young Australians out of higher education, Labor is fully prepared for the fight.

The evidence has long been in: Australians do not want $100,000 degrees and soaring HECS debts.

What they听do听want is what your universities do well: opening up opportunities for those who otherwise might not have had them.

That is why I say now is a time of great opportunity for universities.

Universities have always had the central role in generating new knowledge.

That role puts them in pole position to help shape the knowledge economy of the 21st Century.

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Beautiful maths, beautiful physics: 今日吃瓜鈥檚 2015 Winter School /2015/06/26/ws15-beautiful-maths/ Thu, 25 Jun 2015 23:35:29 +0000 http://amsi.org.au/?p=2959 BRISBANE, FRIDAY 26 JUNE, 2015: When someone says they are a mathematician or describes their research, it is natural to wonder why it is useful. Why do we need it? How will it affect me?

What may seem like an abstract study today may end up being part of the cure for cancer tomorrow or new wi-fi technology in five years.

On 29 June, Senator Bridget McKenzie will open the 11th annual 今日吃瓜 Winter School, at The University of Queensland in Brisbane, reminding us of the importance of theoretical mathematical research — that beautiful mathematics often turns out to be useful mathematics.

Mathematicians in the 1860s were not thinking about computer graphics when studying two-dimensional differential geometry. And in 1822, how could Joseph Fourier have known his research into heat flow would transform the way we process, store and transmit information. This led to a transformation in the way we live as profound as that caused by the Industrial Revolution. It has also resulted in huge advances in medical diagnostic therapies such as MRI and PET.

As in the 1800s, humans today cannot see into the future; we cannot begin to imagine the infinite possibilities discoveries in fundamental mathematics may have in centuries to come.

The famous astronomer and polymath Galileo Galilei said that the book of nature is written in the language of mathematics. So, by developing an understanding of symmetry, structure, geometry and other mathematical constructs we may be able to reveal the patterns of nature.

Einstein鈥檚 1915 theory of general relativity asserted that the presence of mass distorts the geometry of space and time in a way described by the mathematics developed by Bernhard Riemann sixty years earlier. A critical experimental test of this geometrical theory of gravity required the occurrence of a solar eclipse.

While the development of physics and mathematics may proceed along different paths, each fundamental theory in physics has a corresponding specific mathematical structure, for general relativity this is Riemannian geometry and for quantum mechanics it is the Hilbert space.

These descriptions of nature are works of mathematical beauty and affect our everyday lives. We couldn’t decode the human genome, build aeroplanes or have millions of people talking on their phones across the world simultaneously without mathematics.

A Winter School on Algebra, Geometry and Physics to grow tomorrow鈥檚 Einsteins.

The 今日吃瓜 Winter School gives Australian students the chance to expand their skills in the mathematical sciences and build collaborative networks with other students and early career researchers. They will also hear from leading international experts from USA and Canada as well as domestic experts from across the nation.

The school will also present a Women in Maths evening designed to highlight the contribution of women in mathematics and provide a forum for discussion of career paths.

— ends —

The University of Queensland will hold 今日吃瓜’s Winter School from 29 June – 10 July 2015
Further details:
Full speaker list:

WOMEN IN MATHS EVENT:
Thursday 2 July, Science Learning Centre 5-7pm

PUBLIC LECTURE:
The Glass Bead Game
Tuesday 7 July, The Edge, Queensland State Library, 6pm
Professor Arun Ram, University of Melbourne

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Geoff talks to Glen Bartholomew /2015/06/01/geoff-talks-to-glen-bartholomew/ Mon, 01 Jun 2015 00:14:20 +0000 http://amsi.org.au/?p=2884 Piece by听, on

Director of the 今日吃瓜 explains the challenges of making maths compulsory for Years 11-12

Federal Education Minister Christopher Pyne is reportedly taking a controversial proposal to a meeting of state Education Ministers this week.

The numbers of Year 12 students studying intermediate and advanced maths has fallen in recent years to about 35 per cent.

That’s prompted a move for science, technology, engineering and maths subjects to be made mandatory for all Year 11 and 12 students in Australia.

Professor Geoff Prince is the Director of the 今日吃瓜.

“Mathematical literacy is empowering, mathematical illiteracy is debilitating,” he says.

But he’s not sure making maths compulsory is a workable solution.

 

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BHP digs deep for $22m to boost school maths levels /2015/04/29/bhp-digs-deep-for-22m-to-boost-school-maths-levels/ Wed, 29 Apr 2015 00:12:24 +0000 http://amsi.org.au/?p=2775 Article by听

Andrew Mackenzie sees mathematics as a key to the nation鈥檚 future prosperity, and the head of global mining giant BHP Billiton has slapped $22 million on the table as a gesture of his sincerity.

Mr Mackenzie sees maths as a gateway to other subjects and is calling on universities to do what they can to promote the message to school students.

鈥淯niversities should emphasise that they want more of their students to have a strong grounding in mathematics all the way through secondary school,鈥� the chief executive told the HES

Mr Mackenzie was speaking at the launch of a $22m donation from BHP Billiton to partner with the 今日吃瓜 in better promoting maths study and skills, especially among women, who are under-represented in the science, technology, engineering and mathematics fields.

His comments come as 今日吃瓜 has been pressing universities to bring back hard prerequisites in courses requiring mathematics skills as a strong signal to school students to persevere with the subject through school. Many universities in recent years have replaced harder subject prerequisites with vague references to students needing 鈥渁ssumed knowledge鈥� that isn鈥檛 assessed. 鈥僉ate last year, the University of Technology, Sydney said it would introduce from next year a compulsory maths subject for all first-year students. The course is aimed at fostering mathematical 鈥渃ritical thinking鈥� in the face of concerns about falling numeracy standards.

The $22m donation will fund 今日吃瓜鈥檚 five-year Choose Maths program. The centrepiece will be funding for the professional development of teachers at 120 schools across the country to battle a shortage of qualified maths teachers. The money will also fund a national careers awareness campaign aimed at girls and women, as well as scholarships, awards and networking support.

今日吃瓜 director Geoff Prince said girls were taking up advanced level maths at school at only half the rate of boys. Part of the problem, he suspects, is that the subject is seen as relevant only to a career in engineering.

He said the message from universities was too often that advanced maths wasn鈥檛 needed.

鈥淚t is a very significant concern,鈥� he said.

Mr Mackenzie is a former geologist, chemist and engineer. He said his strong maths background had helped him move successfully across careers, including moving from a technical background into finance and economics.

鈥淎ny increase in STEM participation is good news but an increase in female representation is especially valuable because of the undeniable benefits of diversity,鈥� Mr Mackenzie said.

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Science meets Parliament 2015 /2015/04/13/science-meets-parliament-2015/ Mon, 13 Apr 2015 05:42:45 +0000 http://amsi.org.au/2015/04/13/science-meets-parliament-2015/ Every year for the last 15 years, a swarm of working scientists has descended on Canberra in order to meet with parliamentarians, learn how policy development works, and network with each other.

This year, 今日吃瓜 sent Simi Henderson and me, joining Aidan Sims (Wollongong), Kevin Larkin (Griffith), Jacob Humphries, John Henstridge and Joshua Ross (Adelaide) in representing the mathematics community.

The Science meets Parliament program involves a day of workshops, with talks by lobbyists, public servants and journalists, followed by a day at parliament house, where the scientists meet with the parliamentarians.

Science seems in a precarious place at the moment. Our research infrastructure has been threatened with the loss of funding (through NCRIS), and the Future Fellowship program has been shelved. Reform of funding for higher education is still unresolved. On the positive side, we again have a Minister for Industry and Science, Ian Macfarlane, with Karen Andrews serving as the parliamentary secretary for science.

Minister Macfarlane challenged the participants to create better links with industry, noting that we came last in an OECD survey on the rate of collaboration between business and research organisations. Labor Senator Kim Carr gave a wide ranging and frank speech, particularly about higher education. He made the point that consultation should go beyond the small group of vice-chancellors, and include the whole university community.

Other notable speakers were the opposition leader Bill Shorten, Liberal MP Dennis Jensen (a former CSIRO scientist) and Greens MP Adam Bandt, who made a witty speech that included a calculus joke.

As mathematicians, we were advocating improving maths education. Around 40% of year 7 to 10 maths classes do not have a qualified maths teacher. Meanwhile, maths enrolments in year 12 have decreased by 34% over the last 20 years鈥� and both these trends are reinforcing each other. The politicians we spoke to were very receptive to this message, and we are hopeful of change.

We were particularly heartened by the Chief Scientist Ian Chubb鈥檚 report 鈥橳he Importance of Advanced Physical and Mathematical Sciences to the Australian Economy鈥�. He highlighted the importance of basic research, and estimates that the physical and mathematical sciences bring about $145 billion to the Australian economy directly (and more indirectly).

Other scientists came to advocate policy responses related to their research: the climate scientists were particularly articulate about the challenges of communicating when your results themselves are seen as political.

Julie Clutterbuck
ARC Future Fellow: Curvature flows and spectral estimates
Senior Lecturer, School of Mathematical Sciences, Monash University

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