263 resultados para maths educaiton
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This article discusses some of the issues relating to the promotion of Core Maths to students, parents, schools and colleges and their senior leadership teams, and also to employers and higher education (HE). Some challenges are highlighted, and addressed, with suggestions for ways forward to secure the future of Core Maths and widespread adoption by all stakeholders. A summary of the background reports that led to the introduction of Core Maths, and the related educational landscape prior to its introduction, is included.
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Multidisciplinary training is widely appreciated in industry and business, and nevertheless usually is not addressed in the early stages of most undergraduate programs. We outline here a multidisciplinary course for undergraduates studying engineering in which mathematics would be the common language, the transverse tool. The goal is motivating students to learn more mathematics and as a result, improve the quality of engineering education. The course would be structured around projects in four branches in engineering: mechanical, electrical, civil and bio-tech. The projects would be chosen among a wide variety of topics in engineering practice selected with the guidance of professional engineers. In these projects mathematics should interact with at least two other basic areas of knowledge in engineering: chemistry, computers science, economics, design or physics.
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Mathematics expresses itself everywhere, in almost every facet of life - in nature all around us, and in the technologies in our hands. Mathematics is the language of science and engineering - describing our understanding of all that we observe. In fact, Galileo said that Mathematics is the language with which God has written the universe. Aristotle defined mathematics as "the science of quantity", i.e., “the science of the things that can be counted”. Now you can think that counting has a vital role in our daily life; just imagine that there were no mathematics at all, how would it be possible for us to count days, months and years? Unfortunately, people usually ignore the connection between mathematics and the daily life. Most of university degrees require mathematics. Students who choose not to take seriously mathematics or to ignore it in high school, find several difficulties when they come up against them at the university. This study explores the perceptions of how mathematics influences our daily life among our students and how teachers can use this information in order to improve the academic performance. The used research instrument was a questionnaire that was designed to identify their understanding on learning mathematics.
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Policy-makers often fret about the low number of university graduates in the fields of science, technology, engineering and mathematics (STEM). Proposed solutions often focus on providing better information for students and parents about the employability or average wages of different fields to emphasise that STEM professions pay. This paper argues that, from a personal point of view, students are actually making rational decisions, if all benefits and costs are factored into the equation. The authors conclude, therefore, that public policy needs to change the incentives to induce students to enter these fields and not just provide information about them.
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Assuming no prior mathematical knowledge, this approachable and straightforward text covers the essential mathematical skills needed by business and management students at undergraduate and MBA level. Clare Morris uses a clear and informal narrative style with examples, painlessly leading the reader through fundamental mathematical principles. "Essential Maths" spans basic arithmetic and algebra, and introduces readers to calculus and simple statistics, employing exercises and activities throughout to enable students to check their learning and reflect on their progress and understanding. Also available is a companion website with extra features to accompany the text, please take a look on http://www.palgrave.com/business/morris/index.html
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A gazdálkodási és közgazdasági alap- és mesterszakok tanterveiben számos matematikai tárgy szerepel. A kétciklusú bolognai képzésre történő áttérés Európa-szerte igényelte a matematikaoktatás szerkezetének, mennyiségének és mélységének újragondolását a gazdálkodási és közgazdasági képzési területeken. Mivel az átállás országonként és intézményenként párhuzamosan és jelentős mértékben egymástól függetlenül ment végbe, egyetemenként számos eltérő megoldással találkozhatunk. Az egyetemek operatív tanterveit és tantárgyi adatlapjait felhasználva, utólagosan már összehasonlítható az egyes egyetemek matematikaoktatása. A tanulmány a matematika közgazdaságtanban betöltött szerepének áttekintése után a vezető európai egyetemek és négy magyar egyetem gazdálkodási és közgazdasági képzésén folyó matematikaoktatásának összehasonlító elemzése alapján arra az alapvető következtetésre jut, hogy Magyarországon a vizsgált képzési területen a matematikaoktatás mennyiségileg és minőségileg kritikus szintre süllyedt. / === / The basic and master's curricula for business and economics include plenty of mathematics subjects. Business and economics courses had to be rethought when the change was made across Europe to the two-cycle Bologna system. This change took place simultaneously but independently in each country and institution, so that notably different solutions can be found in each university. A retrospective comparison of maths instruction in various universities can be made by examining their operative syllabuses and subject data-sheets. The study reviews the part mathematics plays in economics, then uses comparative analysis of the maths teaching in business and economics courses at leading European and four Hungarian universities to reach a general conclusion: maths teaching in Hungary, in the field examined, has sunk to a critical level, in terms of quality and quantity.