Showing posts with label science. Show all posts
Showing posts with label science. Show all posts

Wednesday, May 11, 2022

Australian Curriculum and Year 9 "Science"

 Last year I was writing questions for an Australian Years 9-10 Science textbook when I first came across the "gamma decay" problem.

The textbook authors stated that there are 3 types  of radioactive decay: alpha, beta and gamma (which is kind of OK for Year 9 or 10 science). They wanted to provide an isolated example of each type, that is, an example of alpha decay, an example of beta decay, and an example of gamma decay. Which is where the problem lies. Giving an example of alpha or beta decay is easy, just ignore any other possible radiations when you do it, which is the "traditional" method for teaching nuclear decay to Years 9 or 10, or indeed Year 11 chemistry (and yes, physics teachers are probably horrified, and rightly so, IMHO). But, you can't do this for gamma decay unless you want to talk about "excited states".

Which brings us to version 9 of the Australian Curriculum for Year 9 Science which states,

"describing in simple terms how different unstable isotopes decay such as radon-222 releasing an alpha particle, iodine-131 releasing a beta particle and cobalt-60 releasing gamma radiation to form stable atoms"

Alpha decay of radon-222 and beta decay of iodine-131 ... OK, can do.

Gamma decay of cobalt-60 ? Problem! Cobalt-60 decays by emitting a beta particle to produce an excited state nickel-60 atom. Excited state nickel-60 loses energy by emitting high energy gamma ray and relaxing back to a ground-state nickel-60 atom. But, we can't use this as an explanation because the introduction to excited states won't occur 'til, possibly, year 10 (when they do flame tests).

Has the Australian Curriculum been proof-read?

I think not. Further evidence of the writer's (or writers') slipshod approach to "science" is evidenced in this "interesting" extract (also for Year 9)

"investigating how radiocarbon and other dating methods have been used to establish that First Peoples of Australia have been present on the Australian continent for more than 60,000 years"

Problem 1: radiocarbon dating is pretty useless for anything older than about 40,000 years old, so it would be worse than useless for artifacts said to be 60,000 years old. 

Problem 2: where is the SCIENTIFIC evidence that Australia has been inhabited by humans for "more than 60,000 years"? Surely if you are going to make a statement like this, and force SCIENCE teachers to teach it, you need to support the statement, just a link a two, some references, to some SCIENTIFIC studies would be useful. 

So, here's what I think I know ... Mungo man/mungo woman are thought to be about 40,000 years old (give or take a few thousand). Blackened rocks at Moyjil are thought to be about 125,000 years old, but not linked to human habitation (that I'm aware of). The Pilbara petroglyphs have a wide range of dates depending on who provides them, but they also seem to be scientifically dated between 40,000 and 50,000 years. 

My problem is that I'm not an anthropologist, I know a little bit about chemistry (Chemical Sciences), a bit less about geology (sorry, Earth Sciences), even less about physics (AKA physical sciences), and practically nothing about biology (sometimes called a science), and hence I am NOT in a position to either a) know how long Australia has been inhabited for, or

b) to teach anything about this 

... and I suspect most SCIENCE teachers in Australia would fall into the same category.

AC: Australian Curriculum or Australian C_ _ p?



Tuesday, December 15, 2020

What's Wrong with Science Education?

 What's wrong with science education (in Australian high schools)?

Possibly the opinion of those teaching it if this comment by Margaret Shepherd, the president of the Science Teachers Association, is any indication of the thoughts of Australian Science Teachers in general. She said,

“Good scientists require persistence, resilience, being able to do something for a long time without results.”

Persistence ✌

Resilience ✌

 Being able to do something for a long time without results?

Really? You think that's what makes a good scientist?

Rather a dispiriting opinion of the work of scientists isn't it?  Hardly going to make students leap at the chance of a life dedicated to science if all they're going to achieve is a lifetime of waiting for something to happen.

Is it possible to do "something" in science, and achieve no results ... at all ... nothing .... neither supporting nor refuting a hypothesis?

Go read the article: https://www.smh.com.au/national/nsw/why-physics-and-chemistry-are-delivering-more-band-6-hsc-results-20201215-p56nkc.html 

Stay calm .... if you can!

Saturday, September 19, 2015

Science Knowledge Quiz

The Pew Research Centre in Washington DC has just released the results of its survey of what adults in the USA know (or think they know) about science. It appears that very few of those surveyed had any real understanding of waves, and almost no understanding of boiling. But the saddest result of all, I think, is that about one third of those surveyed could not correctly interpret a graph.

You can do the 12 question multiple-choice quiz yourself online at:

http://www.pewresearch.org/quiz/science-knowledge/

When you finish (it won't take long) you will then be taken to a page that gives you the results of your quiz, and puts this in relation to the official survey results.

Thursday, February 19, 2015

Why Study Science?

Listen to four of the world’s most eminent physicists discuss and deliberate on the biggest challenges facing the science community today.

  • Professor Steven Chu was the co-recipient of the 1997 Nobel Prize for Physics. He has devoted his recent scientific career to the search for new solutions to our energy and climate challenges. 
  • Professor Schmidt was jointly awarded the 2011 Nobel Prize in Physics for the discovery of the accelerating Universe.
  • Professor Lawrence Krauss is theoretical physicist and the author of several bestselling books, including The Physics of Star Trek and A Universe from Nothing. He is an advocate of scientific scepticism, science education and the science of morality.
  • Professor Lisa Randall studies theoretical particle physics and cosmology at Harvard University. Her research connects theoretical insights to puzzles in our current understanding of the properties and interactions of matter.
The podcast is about 1.5 hours, but you can select parts of it to listen to.
There is a very nice discussion of what is meant by "good science", there is also some very interesting discussion on "accidental discovery", "experiment to "prove" or "disprove" theory, and the importance of acknowledging that science is not an "absolute" but rather about belief in the "truth" of a scientific theory based on statistical probabilities.


Saturday, November 30, 2013

Drawing the Line of Best Fit

You've got a table of experimental data.
You've plotted the data on a graph.
Now, how do you draw a line of best fit?
Why should you draw a line of best?

AUS-e-TUTE has just added new resources that answers these questions and helps you draw the line of best for your data by giving you a tool to use which makes the whole process as easy as clicking a button!

Visit http://www.ausetute.com.au and click on the Line of Best Fit link.