成人国产欧美大片一区_成人国产精品免费视频_成人国产片女人爽到高潮 https://www.成人国产片女人爽到高潮.org/blog/tag/maths/ Teach, learn and make with 成人国内精品久久久久影院vr Pi Tue, 25 Oct 2022 08:44:30 +0000 en-GB hourly 1 https://wordpress.org/?v=6.9.4 https://www.成人国产片女人爽到高潮.org/app/uploads/2020/06/cropped-raspberrry_pi_logo-100x100.png https://www.成人国产片女人爽到高潮.org/blog/tag/maths/ 32 32 https://www.成人国产片女人爽到高潮.org/blog/maths-成人国产一区二区三区精品-conrad-wolfram-成人国内精品久久久久影院vr-ai-成人国内精品久久久久影院vr-seminar/ Tue, 25 Oct 2022 08:17:08 +0000 https://www.成人国产片女人爽到高潮.org/?p=81603 In the penultimate seminar in our series on cross-disciplinary 成人国内精品久久久久影院vr, we were delighted to host Conrad Wolfram (European co-founder/CEO of Wolfram 成人国内精品久久久久影院vr). Conrad has been an influential figure in the areas of AI, data science, and computation for over 30 years. The company he co-founded, Wolfram 成人国内精品久久久久影院vr, develops computational technologies including the Wolfram programming language,…

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In the penultimate seminar in our series on cross-disciplinary 成人国内精品久久久久影院vr, we were delighted to host Conrad Wolfram (European co-founder/CEO of Wolfram 成人国内精品久久久久影院vr).

Conrad Wolfram.
Conrad Wolfram

Conrad has been an influential figure in the areas of AI, data science, and computation for over 30 years. The company he co-founded, Wolfram 成人国内精品久久久久影院vr, develops computational technologies including the Wolfram programming language, which is used by the Mathematica and WolframAlpha programs. In the seminar, Conrad spoke about his work on developing a mathematics 成人国产一区二区三区精品 “for the AI age”.

In a 成人国内精品久久久久影院vr classroom, a girl laughs at what she sees on the screen.

Computation is everywhere

In his talk, Conrad began by talking about the ubiquity of computation. He explained how computation (i.e. an operation that follows conditions to give a defined output) has transformed our everyday lives and led to the development of entire new sub-disciplines, such as computational medicine, computational marketing, and even computational agriculture. He then used the WolframAlpha tool to give several practical examples of applying high-level computation to problem-solving in different areas.

A line graph comparing the population of the UK with the number of sheep in New Zealand.
Yes, there are more people in the UK than sheep in New Zealand.

The power of computation for mathematics

Conrad then turned his attention to the main question of his talk: if computation has also changed real-world mathematics, how should school-based mathematics teaching respond? He suggested that, as computation has impacted all aspects of our daily lives, school subjects should be reformed to better prepare students for the careers of the future.

A diagram indicating that hand calculating takes up a lot of time in current maths classes.
Hand calculation methods are time-consuming.

His biggest criticism was the use of hand calculation methods in mathematics teaching. He proposed that a mathematics 成人国产一区二区三区精品 that “assumes computers exist” and uses computers (rather than humans) to compute answers would better support students to develop a deep understanding of mathematical concepts and principles. In other words, if students spent less time doing hand-calculation methods, they could devote more time to more complex problems.

What does computational problem-solving look like?

One interesting aspect of Conrad’s talk was how he modelled the process of solving problems using computation. In all of the example problems, he outlined that computational problem-solving follows the same four-step process:

  1. Define the question: Students think about the scope and details of the problem and define answerable questions to tackle.
  2. Abstract to computable form: Using the information provided, students translate the question into a precise abstract form, such as a diagram or algorithm, so that it can be solved by a computer-based agent.
  3. Computer answers: Using the power of computation, students solve the abstract question and resolve any issues during the computation process.
  4. Interpret results: Students reinterpret and recontextualise the abstract answer to derive useful results. If problems emerge, students refine or fix their work.

Depending on the problem, the process can be repeated multiple times until the desired solution is reached. Rather than being proposed as a static list of outcomes, the process was presented by Conrad as an iterative cycle than resembles an “ascending helix”:

A helix representing the iterative cycle of computational problem-solving.
The problem-solving ‘helix’ model.

A 成人国产一区二区三区精品 for a world with AI

In the later stages of his talk, Conrad talked about the development of a new computational 成人国产一区二区三区精品 to better define what a modern mathematics 成人国产一区二区三区精品 might look like. The platform that hosts the 成人国产一区二区三区精品, named Computer-Based Math (or CBM), outlines the need to integrate computational thinking into mathematics in schools. For instance, one of the modules, How Fast Could I Cycle Stage 7 Of The An Post Rás?, asks students to develop a computational solution to a real-world problem. Following the four-step problem-solving process, students apply mathematical models, computational tools, and real-world data to generate a valid solution:

A module from Wolfram 成人国内精品久久久久影院vr’s Computer-Based Maths 成人国产一区二区三区精品.
Sample module from Computer-Based Math. Click to enlarge.

Some future challenges he remarked on included how a computer-based mathematics 成人国产一区二区三区精品 could be integrated with existing curricula or qualifications, at what ages computational mathematics should be taught, and what assessment, training, and hardware would be needed to support teachers to deliver such a 成人国产一区二区三区精品. 

Conrad concluded the talk by arguing that the current need for computational literacy is similar to the need for mass literacy and pondering whether the UK could lead the push towards a new computational 成人国产一区二区三区精品 suitable for learners who grow up with AI technologies. This point provided food for thought during our discussion section, especially for teachers interested in embedding computation into their lessons, and for 成人国内精品久久久久影院vrers thinking about the impact of AI in different fields. We’re grateful to Conrad for speaking about his work and mission — long may it continue!

You can catch up on Conrad’s talk with his slides and the talk’s recording:

More to explore

Conrad’s book, The Math(s) Fix: An Education Blueprint for the AI Age, gives more details on how he thinks data science, AI, and computation could be embedded into the modern maths 成人国产一区二区三区精品.

You can also explore Wolfram 成人国内精品久久久久影院vr’s Computer-Based Maths 成人国产一区二区三区精品, which offers learning materials to help teachers embed computation in their maths lessons. 

Finally, try out Wolfram’s tools to solve everyday problems using computation. For example, you might ask WolframAlpha data-rich questions, which the tool converts from text input into a computable problem using natural language processing. (Two of my favourite example questions are: “How old was Leonardo when the Mona Lisa was painted?” and “What was the weather like when I was born?”)

Join our next seminar

In the final seminar of our series on cross-curricular 成人国内精品久久久久影院vr, we welcome Dr Tracy Gardner and Rebecca Franks (成人国产欧美大片一区) to present their ongoing work on 成人国内精品久久久久影院vr education in non-formal settings. Sign up now to join us for this session on Tues 8 November:

I want to join the next seminar

We will shortly be announcing the theme of a brand-new series of 成人国内精品久久久久影院vr seminars starting in January 2023. The seminars will take place online on the first Tuesday of the month at 17:00–18:30 UK time.

The post Building a maths 成人国产一区二区三区精品 for a world shaped by 成人国内精品久久久久影院vr appeared first on 成人国产欧美大片一区.

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