Skip to main content

Home/ Diigo In Education/ Group items tagged technology mathematics

Rss Feed Group items tagged

Melissa Middleton

http://www.iste.org/Content/NavigationMenu/Advocacy/Top_Ten_in_10.htm - 87 views

  • Establish technology in education as the backbone of school improvement
  • Leverage education technology as a gateway for college and career readiness
  • Ensure technology expertise is infused throughout our schools and classrooms.
  • ...2 more annotations...
  • Continuously upgrade educators' classroom technology skills as a pre-requisite of "highly effective" teaching
  • Home Advocacy Top Ten in '10: ISTE's Education Technology Priorities for 2010 Through a common focus on boosting student achievement and closing the achievement gap, policymakers and educators alike are now reiterating their commitment to the sorts of programs and instructional efforts that can have maximum effect on instruction and student outcomes. This commitment requires a keen understanding of both past accomplishment and strategies for future success. Regardless of the specific improvement paths a state or school district may chart, the use of technology in teaching and learning is non-negotiable if we are to make real and lasting change.  With growing anticipation for Race to the Top (RttT) and Investing in Innovation (i3) awards in 2010, states and school districts are seeing increased attention on educational improvement, backed by financial support through these grants. As we think about plans for the future, the International Society for Technology in Education (ISTE) has identified 10 priorities essential for making good on this commitment in 2010: 1. Establish technology in education as the backbone of school improvement . To truly improve our schools for the long term and ensure that all students are equipped with the knowledge and skills necessary to achieve in the 21st century, education technology must permeate every corner of the learning process. From years of research, we know that technology can serve as a primary driver for systemic school improvement, including school leadership, an improved learning culture and excellence in professional practice. We must ensure that technology is at the foundation of current education reform efforts, and is explicit and clear in its role, mission, and expected impact. 2. Leverage education technology as a gateway for college and career readiness . Last year, President Obama established a national goal of producing the highest percentage of college graduates in the world by the year 2020. To achieve this goal in the next 10 years, we must embrace new instructional approaches that both increase the college-going rates and the high school graduation rates. By effectively engaging learning through technology, teachers can demonstrate the relevance of 21st century education, keeping more children in the pipeline as they pursue a rigorous, interesting and pertinent PK-12 public education. 3. Ensure technology expertise is infused throughout our schools and classrooms.  In addition to providing all teachers with digital tools and content we must ensure technology experts are integrated throughout all schools, particularly as we increase focus and priority on STEM (science-technology-engineering-mathematics) instruction and expand distance and online learning opportunities for students. Just as we prioritize reading and math experts, so too must we place a premium on technology experts who can help the entire school maximize its resources and opportunities. To support these experts, as well as all educators who integrate technology into the overall curriculum, we must substantially increase our support for the federal Enhancing Education Through Technology (EETT) program.  EETT provides critical support for on-going professional development, implementation of data-driven decision-making, personalized learning opportunities, and increased parental involvement. EETT should be increased to $500 million in FY2011. 4. Continuously upgrade educators' classroom technology skills as a pre-requisite of "highly effective" teaching . As part of our nation's continued push to ensure every classroom is led by a qualified, highly effective teacher, we must commit that all P-12 educators have the skills to use modern information tools and digital content to support student learning in content areas and for student assessment. Effective teachers in the 21st Century should be, by definition, technologically savvy teachers. 5. Invest in pre-service education technology
Marc Patton

SIAM: Society for Industrial and Applied Mathematics - 0 views

  •  
    Welcome to SIAM! Applied mathematics, in partnership with computational science, is essential in solving many real-world problems. Our mission is to build cooperation between mathematics and the worlds of science and technology through our publications, research, and community.
Roland Gesthuizen

Engineering the Perfect Poem by Using the Vocabulary of STEM - ReadWriteThink - 7 views

  •  
    "Engineering is the "silent E" in STEM subject areas. While science, mathematics, and technology are often topics of content area lessons, engineering is often ignored. However, engineering is inclusive of all STEM subjects because engineers use science, mathematics, and technology to solve problems. Engineering careers are diverse, spanning many different technologies and disciplines, such as agricultural engineering, aerospace engineering, computer engineering, mechanical engineering, and chemical engineering."
Cindy Edwards

Electronic Journal for the Integration of Technology in Education - 60 views

  • Characters in alphabets began as pictures with meaning (West, 1997).
  • As history repeats itself, we may find that a great deal of information is better presented visually rather than verbally.
  • culture's
  • ...9 more annotations...
  • predominant mode of literacy depends on the technology and mass media it embraces (Sinatra, 1986).
  • Kellner (1998) proposes that multiple literacies are necessary to meet the challenges of today's society, literacies that include print literacy, visual literacy, aural literacy, media literacy, computer literacy, cultural literacy, social literacy, and ecoliteracy.
  • Learning through orderly, sequential, verbal-mathematical, left-hemisphere tasks is a pattern seen frequently in education (West, 1997). Those whose thought processes are predominantly in the right-hemisphere where visual-spatial and nonverbal cognition activities rule frequently may have difficulty capitalizing on a learning style that is not compatible with their abilities.
  • If visual literacy is regarded as a language, then there is a need to know how to communicate using this language, which includes being alert to visual messages and critically reading or viewing images as the language of the messages.
  • Technology, particularly the graphical user interface of the World Wide Web, requires skills for reading and writing visually in order to derive meaning from what is being communicated.
  • Because visual literacy precedes verbal literacy in human development,
  • learning evolves from the concrete to the abstract; visual symbols are nonverbal representations that precede verbal symbols (Sinatra, 1986).
  • West (1997) conveys an innovative mathematics approach whereby students “do” mathematics rather than “watch” mathematics. The technique emphasizes learning through interactive graphics without words. “The words go into an idea only after the idea has already settled in our mind”(West, p.
  • The literature suggests that using visual elements in teaching and learning yields positive results.
paul lowe

Technology Dictionary - 3 views

  •  
    Our Technology Dictionary has over 14,000 technology and computer related terms. The Technology Dictionary consists of definitions of IT and computer terms including but not limited to programming languages, software, hardware, operating systems, networking, mathematics, telecomunications, electronics, and more. The Technology Dictionary is based on the FOLDOC (The Free On-line Dictionary of Computing) compiled and maintained by Denis Howe. We add new definitions to our dictionary daily, and if you want to contribute something, don't hesitate to contact us. If you like the site bookmark it and tell your friends about it.
Roland Gesthuizen

Technology Outlook > STEM+ Education 2013-2018 | The New Media Consortium - 57 views

  •  
    "The Technology Outlook for STEM+ Education 2013-2018: An NMC Horizon Project Sector Analysis was released as a collaborative effort ... This report will inform education leaders about significant developments in technologies supporting STEM+ (science, technology, engineering, and mathematics) education."
Bob Rowan

Technology Student Association - 39 views

  •  
    Mission: Leadership and opportunities in technology, innovation, design and engineering. Members apply STEM (science, technology, engineering and mathematics) concepts through co-curricular programs. Suggested by Deb Rottinger, 5/11/2012
Marita Thomson

Quantum Victoria | A Centre of Excellence & Innovation in Science & Mathematics - 78 views

  •  
    Quantum Victoria will deliver an online professional development module that will equip teachers with the skills and tools necessary for teaching in 21st century learning environments. This embedded professional development opportunity will focus primarily on project-based learning (PBL) and the effective integration of ICT in the areas of science, technology, engineering and mathematics. ... [more]
Kate Moreland

The Role of Technology in the Teaching and Learning of Mathematics - 81 views

  • The use of technology cannot replace conceptual understanding, computational fluency, or problem-solving skills.
  • Programs in teacher education and professional development must continually update practitioners’ knowledge of technology and its classroom applications.
  • All teachers must remain open to learning new technologies,
  •  
    From NCTC - National Council of Teachers of Mathematics. Brief statement in support of the use of technology in teaching math.
Marc Patton

The Center for Innovation in Engineering and Science Education - 0 views

  •  
    To catalyze and support excellence in teaching and learning of science, technology, engineering, mathematics (STEM) and other core subjects through innovative, research-based instructional strategies and use of novel technologies.
Martin Burrett

EarthEcho Expeditions: What's the Catch? - 5 views

  •  
    "Teachers in England are being invited to join a professional development opportunity through EarthEcho International sponsored by the Northrop Grumman Foundation. The 'EarthEcho Expeditions: What's the Catch?' programme leverages the rich Cousteau legacy of exploration and discovery to bring Science, Technology, Engineering and Mathematics (STEM) education alive for today's 21st-century learners and their educators. The free, expenses-paid opportunity is planned to allow secondary school teachers to participate as Expedition Fellows to learn first-hand from scientists and engineers the consequences of fisheries mismanagement and how this can be changed for the better with new technological approaches and discoveries."
Sheri Edwards

NASA - Do-It-Youself Podcast - 2 views

  •  
    Are you looking for a new approach to engage your students in science, technology, engineering and mathematics? NASA's Do-It-Yourself Podcast activity sets the stage for students to host a show...
Martin Burrett

STEM across the school - 12 views

  •  
    "The importance of offering a broad curriculum within the school system cannot be over-stated, allowing students to explore a range of topics that spark their interest, and potentially inspire them to follow a career path that can have a positive impact on their lives, society and the environment. STEM activities (built around Science, Technology, Engineering and Mathematics) offer a broad range of opportunities, opening up the potential of enquiry based learning that is relevant to the world we live in. Many education systems globally place a great emphasis on a STEM curriculum for all students, no matter of age, race, gender or ability, but what STEM based activities work best in your setting, helping students see the world differently, and potentially inspiring to enter STEM careers of the future?"
Marc Patton

The Quantile Framework for Mathematics - 4 views

  •  
    MetaMetrics® is focused on improving education for learners of all ages. We develop scientific measures of academic achievement and complementary technologies that link assessment results with real-world instruction.
Marc Patton

Office of STEM Education Partnerships - 37 views

  •  
    Connecting K-12 students & teachers with the world-class science, technology, engineering and mathematics resources of Northwestern University
Randolph Hollingsworth

SECME, Inc. - Diversity in STEM Education - 10 views

  •  
    "Our Mission To increase the pool of historically underrepresented and under-served students who will be prepared to enter and complete post-secondary studies in science, technology, engineering and mathematics (STEM); thus creating a diverse and globally competitive workforce." Started in 1975 as Southeastern Consortium for Minorities in Engineering by engineering deans at AL, FL, GA Tech, USC, UTn, Tuskegee - now partners in 17 states
Dave Youl

Digital Education Revolution - NSW - 1 views

  •  
    Creative Arts  English  HSIE  Languages  Mathematics  PDHPE  Science  Technology     School Libraries& Information Literacy  Assessment   © State of New South Wales through the Department of Education and Training, 1999 - 2009. All rights reserved.
marcmancinelli

Think Again: Education - By Ben Wildavsky | Foreign Policy - 31 views

  • But when the results from the first major international math test came out in 1967, the effort did not seem to have made much of a difference. Japan took first place out of 12 countries, while the United States finished near the bottom.
  • By the early 1970s, American students were ranking last among industrialized countries in seven of 19 tests of academic achievement and never made it to first or even second place in any of them. A decade later, "A Nation at Risk," the landmark 1983 report by the National Commission on Excellence in Education, cited these and other academic failings to buttress its stark claim that "if an unfriendly foreign power had attempted to impose on America the mediocre educational performance that exists today, we might well have viewed it as an act of war."
    • marcmancinelli
       
      US has long been mediocre or at the bottom of international comparisons, but it's not a zer-sum game
  • ...7 more annotations...
  • J. Michael Shaughnessy, president of the National Council of Teachers of Mathematics, argues that the latest PISA test "underscores the need for integrating reasoning and sense making in our teaching of mathematics." Randi Weingarten, head of the American Federation of Teachers, claims that the same results "tell us … that if you don't make smart investments in teachers, respect them, or involve them in decision-making, as the top-performing countries do, students pay a price."
    • marcmancinelli
       
      People use crises to advance their own agendas...
  • But don't expect any of them to bring the country back to its educational golden age -- there wasn't one.
  • According to the most recent statistics, the U.S. share of foreign students fell from 24 percent in 2000 to just below 19 percent in 2008. Meanwhile, countries like Australia, Canada, and Japan saw increased market shares from their 2000 levels, though they are still far below the American numbers.
  • And even with its declining share, the United States still commands 9 percentage points more of the market than its nearest competitor, Britain.
  • A 2008 Rand Corp. report found that nearly two-thirds of the most highly cited articles in science and technology come from the United States, and seven in 10 Nobel Prize winners are employed by American universities. And the United States spends about 2.9 percent of its GDP on postsecondary education, about twice the percentage spent by China, the European Union, and Japan in 2006.
  • But over the long term, exactly where countries sit in the university hierarchy will be less and less relevant, as Americans' understanding of who is "us" and who is "them" gradually changes. Already, a historically unprecedented level of student and faculty mobility has become a defining characteristic of global higher education. Cross-border scientific collaboration, as measured by the volume of publications by co-authors from different countries, has more than doubled in two decades.
  •  
    A great perspective piece on American education compared to the world.
Martin Burrett

Countries with greater gender equality have a lower percentage of female STEM graduates - 9 views

  •  
    "Countries with greater gender equality see a smaller proportion of women taking degrees in science, technology, engineering and mathematics (STEM), a new study has found. Policymakers could use the findings to reconsider initiatives to increase women's participation in STEM, say the researchers. Dubbed the 'gender equality paradox', the research found that countries such as Albania and Algeria have a greater percentage of women amongst their STEM graduates than countries lauded for their high levels of gender equality, such as Finland, Norway or Sweden."
1 - 20 of 51 Next › Last »
Showing 20 items per page