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David McGavock

CITE Journal - Editorial - 21 views

  • A classroom that has successfully integrated technology into the curriculum would be one where you would not really notice it because it would be so second nature. The teacher would not have to think up ways to use whatever tools were available, but would seamlessly use them to enhance the learning of whatever content was being covered. Technology [would be] used to assist in acquiring content knowledge, and the acquisition of technology skills [would be] secondary. Contrast this depiction with what the International Society for Technology in Education’s (ISTE) National Educational Technology Standards for Students (NETS-S; ISTE, 2002) say about technology integration: Curriculum integration with the use of technology involves the infusion of technology as a tool to enhance the learning in a content area or multidisciplinary setting….Effective integration of technology is achieved when students are able to select technology tools to help them obtain information in a timely manner, analyze and synthesize the information, and present it professionally. The technology should become an integral part of how the classroom functions—as accessible as all other classroom tools.
  • his urging to shift the focus from the learning tools to what is being learned and how that learning happens still needs to be heeded—almost 20 years later.
  • Integration is defined not by the amount or type of technology used, but by how and why it is used.
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  • many of these technology-specific studies did not explore more fundamental issues in technology and education
  • what needs to be further developed, examined, and shared
  • particular curriculum standards-based instructional strategies that are appropriately matched to students’ learning needs and preferences
  • understanding the processes and interim results of how and why specific tools can and should be appropriated
  • help students with distinct needs and preferences to achieve identified learning goals.
  • the STaR Chart
  • According to the national StaR Chart, then, technology use in what is typically described as “constructivist” learning is preferable to technology used to “reinforce basic academic skills.”
  • Constructivists view people as constructive agents and view the phenomenon of interest (meaning or knowledge) as built instead of passively “received”
  • curriculum-based integration of educational technologies – defined in Education and Technology: An Encyclopedia (Kovalchick & Dawson, 2004) as “the effective integration of technology throughout the curriculum to help students meet the standards and outcomes of each lesson, unit, or activity”
  • As discerning educators and researchers, we should question why teachers’ roles “must” change to integrate technology effectively into K-12 curricula.
  • the technologies themselves do not require this shift
  • Though teachers in the nationally representative sample they studied acknowledged that computers helped them to change instructional practice over time, they cited experience, organized professional learning, and school culture as the primary factors provoking instructional changes.
  • In districts in which teachers’ academic freedom is preserved—at least in part—aren’t the pedagogical approaches to be used the result of decisions that each teacher makes, preferably rooted in a well-informed knowledge base of both students’ learning needs and preferences and corresponding methodological alternatives?
  • Can it really be assumed that a particular approach “works best” in all teaching, learning, school, district, and community contexts?
  • perhaps a new approach is warranted at this point in time—one that genuinely respects pedagogical plurality and honors teachers’ academic freedom.
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    A classroom that has successfully integrated technology into the curriculum would be one where you would not really notice it because it would be so second nature. The teacher would not have to think up ways to use whatever tools were available, but would seamlessly use them to enhance the learning of whatever content was being covered. Technology [would be] used to assist in acquiring content knowledge, and the acquisition of technology skills [would be] secondary. Contrast this depiction with what the International Society for Technology in Education's (ISTE) National Educational Technology Standards for Students (NETS-S; ISTE, 2002) say about technology integration: Curriculum integration with the use of technology involves the infusion of technology as a tool to enhance the learning in a content area or multidisciplinary setting….Effective integration of technology is achieved when students are able to select technology tools to help them obtain information in a timely manner, analyze and synthesize the information, and present it professionally. The technology should become an integral part of how the classroom functions-as accessible as all other classroom tools.
sophiya miller

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started by sophiya miller on 30 Dec 23 no follow-up yet
sophiya miller

The Virtual Classroom: How Online Learning Reshapes Mechanical Engineering Education - 3 views

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started by sophiya miller on 29 Dec 23 no follow-up yet
anonymous

Critical Issue: Using Technology to Improve Student Achievement - 0 views

shared by anonymous on 23 Feb 10 - Cached
  • Technologies available in classrooms today range from simple tool-based applications (such as word processors) to online repositories of scientific data and primary historical documents, to handheld computers, closed-circuit television channels, and two-way distance learning classrooms. Even the cell phones that many students now carry with them can be used to learn (Prensky, 2005).
  • Bruce and Levin (1997), for example, look at ways in which the tools, techniques, and applications of technology can support integrated, inquiry-based learning to "engage children in exploring, thinking, reading, writing, researching, inventing, problem-solving, and experiencing the world." They developed the idea of technology as media with four different focuses: media for inquiry (such as data modeling, spreadsheets, access to online databases, access to online observatories and microscopes, and hypertext), media for communication (such as word processing, e-mail, synchronous conferencing, graphics software, simulations, and tutorials), media for construction (such as robotics, computer-aided design, and control systems), and media for expression (such as interactive video, animation software, and music composition). In a review of existing evidence of technology's impact on learning, Marshall (2002) found strong evidence that educational technology "complements what a great teacher does naturally," extending their reach and broadening their students' experience beyond the classroom. "With ever-expanding content and technology choices, from video to multimedia to the Internet," Marshall suggests "there's an unprecedented need to understand the recipe for success, which involves the learner, the teacher, the content, and the environment in which technology is used."
  • In examining large-scale state and national studies, as well as some innovative smaller studies on newer educational technologies, Schacter (1999) found that students with access to any of a number of technologies (such as computer assisted instruction, integrated learning systems, simulations and software that teaches higher order thinking, collaborative networked technologies, or design and programming technologies) show positive gains in achievement on researcher constructed tests, standardized tests, and national tests.
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  • Boster, Meyer, Roberto, & Inge (2002) examined the integration of standards-based video clips into lessons developed by classroom teachers and found increases student achievement. The study of more than 1,400 elementary and middle school students in three Virginia school districts showed an average increase in learning for students exposed to the video clip application compared to students who received traditional instruction alone.
  • Wenglinsky (1998) noted that for fourth- and eighth-graders technology has "positive benefits" on achievement as measured in NAEP's mathematics test. Interestingly, Wenglinsky found that using computers to teach low order thinking skills, such as drill and practice, had a negative impact on academic achievement, while using computers to solve simulations saw their students' math scores increase significantly. Hiebert (1999) raised a similar point. When students over-practice procedures before they understand them, they have more difficulty making sense of them later; however, they can learn new concepts and skills while they are solving problems. In a study that examined relationship between computer use and students' science achievement based on data from a standardized assessment, Papanastasiou, Zemblyas, & Vrasidas (2003) found it is not the computer use itself that has a positive or negative effect on achievement of students, but the way in which computers are used.
  • Another factor influencing the impact of technology on student achievement is that changes in classroom technologies correlate to changes in other educational factors as well. Originally the determination of student achievement was based on traditional methods of social scientific investigation: it asked whether there was a specific, causal relationship between one thing—technology—and another—student achievement. Because schools are complex social environments, however, it is impossible to change just one thing at a time (Glennan & Melmed, 1996; Hawkins, Panush, & Spielvogel, 1996; Newman, 1990). If a new technology is introduced into a classroom, other things also change. For example, teachers' perceptions of their students' capabilities can shift dramatically when technology is integrated into the classroom (Honey, Chang, Light, Moeller, in press). Also, teachers frequently find themselves acting more as coaches and less as lecturers (Henriquez & Riconscente, 1998). Another example is that use of technology tends to foster collaboration among students, which in turn may have a positive effect on student achievement (Tinzmann, 1998). Because the technology becomes part of a complex network of changes, its impact cannot be reduced to a simple cause-and-effect model that would provide a definitive answer to how it has improved student achievement.
  • When new technologies are adopted, learning how to use the technology may take precedence over learning through the technology. "The technology learning curve tends to eclipse content learning temporarily; both kids and teachers seem to orient to technology until they become comfortable," note Goldman, Cole, and Syer (1999). Effective content integration takes time, and new technologies may have glitches. As a result, "teachers' first technology projects generate excitement but often little content learning. Often it takes a few years until teachers can use technology effectively in core subject areas" (Goldman, Cole, & Syer, 1999). Educators may find impediments to evaluating the impact of technology. Such impediments include lack of measures to assess higher-order thinking skills, difficulty in separating technology from the entire instructional process, and the outdating of technologies used by the school. To address these impediments, educators may need to develop new strategies for student assessment, ensure that all aspects of the instructional process—including technology, instructional design, content, teaching strategies, and classroom environment—are conducive to student learning, and conduct ongoing evaluation studies to determine the effectiveness of learning with technology (Kosakowski, 1998).
sophiya miller

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Fatima Anwar

The Integrated Learning Platform: Cardiff Univeristy - Cardiff is everything a good uni... - 0 views

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    Cardiff University is recognized in independent government tests as one of The British leading educating and analysis colleges. Established by Royal Charter in 1883, the University today brings together impressive modern facilities and a powerful approach to educating and analysis with its proud culture of service and accomplishment. Cardiff University is the biggest University of mature education and learning in Wales, with the Cardiff Center for Long term Studying offering several hundred programs in locations across Southern Eastern Wales. The University's lifelong learning actions also include the professional growth work performed by educational institutions for companies, and many of these is custom-made to match an individual business's needs. The Center also provides business terminology training at all levels. Founded: 1883. Structural features: Merged with University of Wales College of Medicine (UCWM) in 2004. Location: Close to Cardiff city center. Healthcare care learners also at hospital website, Heath Recreation area University, 1 mile away. Getting there: Cardiff Primary Place on the national train network; trainers to bus station (next to train station); M4 from London and M5 (west county and Midlands). For school, frequent teaches from Primary Place to Cathays station (on campus), regional vehicles from bus station (53, 79, 81 for main campus; 8 or 9 for hospital site). Academic features: 4-year incorporated food techniques, 5-year two-tier techniques in structure and town planning. 5-year medical and dental programs, plus foundation season for those without science backgrounds; medical teaching throughout Wales. Awarding body: Cardiff University; Wales University for some healthcare programs. Main undergrad awards: BA, BD, BDS, BMus, BN, BSc, BEng, BScEcon, LLB, BArch, MB BCh, MPhys, MChem, MEng, MPharm. Length of courses: 3 years; others 4 and 5 decades. Library & IT facilities: Integrated collection,
Fatima Anwar

Online Education Integrated Learning Platform: An Online Learning Platform LEJ launched... - 0 views

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    The Latif Ebrahim Jamal (LEJ) National Science info Centre at the University of Karachi intends integrated free online courses from massive e-learning platform like Massachusetts Institute of Technology (MIT), Harvard University, Stanford University, Open Yale online Courses offered by Yale and different higher education colleges free for everybody.
sophiya miller

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started by sophiya miller on 09 Jan 24 no follow-up yet
Paul Beaufait

P21 Framework Definitions [PDF] (2009) - 15 views

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    "To help practitioners integrate skills into the teaching of core academic subjects, the Partnership has developed a unified, collective vision for learning known as the Framework for 21st Century Learning. This Framework describes the skills, knowledge and expertise students must master to succeed in work and life; it is a blend of content knowledge, specific skills, expertise and literacies" (Partnership for 21st Century Skills, 2009, ¶1).
Maung Nyeu

Growth in eLearning within UM System causes change, raises concerns - Columbia Missourian - 0 views

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    In University of MIssouri, as online courses and degree offerings increase, the traditional roles of student and teacher are changing. However, some faculty expressed concern that the integrity of academic institutions might be at stake.
Maggie Verster

21st Century Skills Map for science - 0 views

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    The Partnership advocates for the integration of 21st Century Skills into K-12 education so that students can advance their learning in core academic subjects.
Fatima Anwar

Integrated Learning Platform: Is California University of Pennsylvania the best learnin... - 0 views

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    California University of Pennsylvania features a satellite field in Canonsburg yet as an outsized virtual college. One of America's top-ranked online schools and e-learning resource offers academic education for undergraduate, graduate, and online degrees
Fatima Anwar

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Robert Letcher

Point, Click, and Cheat: Frequency and Type of Academic Dishonesty in the Virtual Class... - 0 views

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    Study that finds that college students might be cheating less often than many believe.
justquestionans

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Ruth Howard

GAME School Opens in New York:Quest to Learn | HASTAC - 0 views

  • In an atmosphere of academic excellence, Quest aims to foster the type of learning that is possible today—learning based on access to online resources and tools from around the globe, learning that supports customized content for every student on demand, learning that is game-like in its ability to inspire and motivate. “In an age when low-income urban kids continue to drop out of school at alarming rates, yet research is consistently showing the high levels of engagement youth are exhibiting in various media platforms, it is incumbent upon educators to take notice and indeed redirect teaching methods to meet the needs and interests of students,” says Schwartz.
  • a robust industry mentorship program allow students opportunities to learn alongside experts, s
  • critical pedagogic tool in secondary education.”
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  • 21st century learning materials and assessment
  • teacher training and digital arts
  • “learn by doing” through coursework focused on helping students make connections between ideas and skills in real world contexts. Enhanced literacy and math instruction occurs daily and all students have opportunities to gain expertise in reading, writing, and designing with digital media, including taking courses in computer programming, media arts, and game design. A fully integrated Wellness curriculum supports students in achieving healthy hearts, minds, and bodies.
  • based on research on how students today learn best
  • daily workshops in numeracy and literacy for struggling students,
  • cues from the media-rich learning kids are engaged in outside of school
  • expect a school that is all about beauty, science, thinking, learning, excitemen
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    A new New York school-curriculum by game designers fully integrating a new learning ecology.
Leonard Miller

Education Week: Character Education Seen as Student-Achievement Tool - 0 views

    • Leonard Miller
       
      So, here it is, teaching values like hard work, integrity, fairness, justice and the like are part of the Common Core, and required for the kind of academic excellence call for by the CCSS
  • Character education is more effective when a designated portion of the day is devoted to character education, according to Mr. Seider
  • It is also most effective when a school focuses on a specific set of traits, according to Mr. Seider's research
Fatima Anwar

Integrated Learning Platform: Indiana Online Academy - providing academic challenges fo... - 0 views

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    The Indiana Online Academy accredited by North Central Association (NCS) of colleges and schools and a part of Central Indiana Educational Service Center, located in Indianapolis, IN. The Objective of the Indiana Online Academy is to provide students with the means to earn secondary school certificate, through the delivery of dynamic, engaging, standards-based curriculum.
Carlos Quintero

Innovate: Future Learning Landscapes: Transforming Pedagogy through Social Software - 0 views

  • Web 2.0 has inspired intense and growing interest, particularly as wikis, weblogs (blogs), really simple syndication (RSS) feeds, social networking sites, tag-based folksonomies, and peer-to-peer media-sharing applications have gained traction in all sectors of the education industry (Allen 2004; Alexander 2006)
  • Web 2.0 allows customization, personalization, and rich opportunities for networking and collaboration, all of which offer considerable potential for addressing the needs of today's diverse student body (Bryant 2006).
  • In contrast to earlier e-learning approaches that simply replicated traditional models, the Web 2.0 movement with its associated array of social software tools offers opportunities to move away from the last century's highly centralized, industrial model of learning and toward individual learner empowerment through designs that focus on collaborative, networked interaction (Rogers et al. 2007; Sims 2006; Sheely 2006)
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  • learning management systems (Exhibit 1).
  • The reality, however, is that today's students demand greater control of their own learning and the inclusion of technologies in ways that meet their needs and preferences (Prensky 2005)
  • Tools like blogs, wikis, media-sharing applications, and social networking sites can support and encourage informal conversation, dialogue, collaborative content generation, and knowledge sharing, giving learners access to a wide range of ideas and representations. Used appropriately, they promise to make truly learner-centered education a reality by promoting learner agency, autonomy, and engagement in social networks that straddle multiple real and virtual communities by reaching across physical, geographic, institutional, and organizational boundaries.
  • "I have always imagined the information space as something to which everyone has immediate and intuitive access, and not just to browse, but to create” (2000, 216). Social software tools make it easy to contribute ideas and content, placing the power of media creation and distribution into the hands of "the people formerly known as the audience" (Rosen 2006).
  • the most promising settings for a pedagogy that capitalizes on the capabilities of these tools are fully online or blended so that students can engage with peers, instructors, and the community in creating and sharing ideas. In this model, some learners engage in creative authorship, producing and manipulating digital images and video clips, tagging them with chosen keywords, and making this content available to peers worldwide through Flickr, MySpace, and YouTube
  • Student-centered tasks designed by constructivist teachers reach toward this ideal, but they too often lack the dimension of real-world interactivity and community engagement that social software can contribute.
  • Pedagogy 2.0: Teaching and Learning for the Knowledge Age In striving to achieve these goals, educators need to revisit their conceptualization of teaching and learning (Exhibit 2).
  • Pedagogy 2.0: Teaching and Learning for the Knowledge Age In striving to achieve these goals, educators need to revisit their conceptualization of teaching and learning
  • Pedagogy 2.0 is defined by: Content: Microunits that augment thinking and cognition by offering diverse perspectives and representations to learners and learner-generated resources that accrue from students creating, sharing, and revising ideas; Curriculum: Syllabi that are not fixed but dynamic, open to negotiation and learner input, consisting of bite-sized modules that are interdisciplinary in focus and that blend formal and informal learning;Communication: Open, peer-to-peer, multifaceted communication using multiple media types to achieve relevance and clarity;Process: Situated, reflective, integrated thinking processes that are iterative, dynamic, and performance and inquiry based;Resources: Multiple informal and formal sources that are rich in media and global in reach;Scaffolds: Support for students from a network of peers, teachers, experts, and communities; andLearning tasks: Authentic, personalized, learner-driven and learner-designed, experiential tasks that enable learners to create content.
  • Instructors implementing Pedagogy 2.0 principles will need to work collaboratively with learners to review, edit, and apply quality assurance mechanisms to student work while also drawing on input from the wider community outside the classroom or institution (making use of the "wisdom of crowds” [Surowiecki 2004]).
  • A small portion of student performance content—if it is new knowledge—will be useful to keep. Most of the student performance content will be generated, then used, and will become stored in places that will never again see the light of day. Yet . . . it is still important to understand that the role of this student content in learning is critical.
  • This understanding of student-generated content is also consistent with the constructivist view that acknowledges the learner as the chief architect of knowledge building. From this perspective, learners build or negotiate meaning for a concept by being exposed to, analyzing, and critiquing multiple perspectives and by interpreting these perspectives in one or more observed or experienced contexts
  • This understanding of student-generated content is also consistent with the constructivist view that acknowledges the learner as the chief architect of knowledge building. From this perspective, learners build or negotiate meaning for a concept by being exposed to, analyzing, and critiquing multiple perspectives and by interpreting these perspectives in one or more observed or experienced contexts. In so doing, learners generate their own personal rules and knowledge structures, using them to make sense of their experiences and refining them through interaction and dialogue with others.
  • Other divides are evident. For example, the social networking site Facebook is now the most heavily trafficked Web site in the United States with over 8 million university students connected across academic communities and institutions worldwide. The majority of Facebook participants are students, and teachers may not feel welcome in these communities. Moreover, recent research has shown that many students perceive teaching staff who use Facebook as lacking credibility as they may present different self-images online than they do in face-to-face situations (Mazer, Murphy, and Simonds 2007). Further, students may perceive instructors' attempts to coopt such social technologies for educational purposes as intrusions into their space. Innovative teachers who wish to adopt social software tools must do so with these attitudes in mind.
  • "students want to be able to take content from other people. They want to mix it, in new creative ways—to produce it, to publish it, and to distribute it"
  • Furthermore, although the advent of Web 2.0 and the open-content movement significantly increase the volume of information available to students, many higher education students lack the competencies necessary to navigate and use the overabundance of information available, including the skills required to locate quality sources and assess them for objectivity, reliability, and currency
  • In combination with appropriate learning strategies, Pedagogy 2.0 can assist students in developing such critical thinking and metacognitive skills (Sener 2007; McLoughlin, Lee, and Chan 2006).
  • We envision that social technologies coupled with a paradigm of learning focused on knowledge creation and community participation offer the potential for radical and transformational shifts in teaching and learning practices, allowing learners to access peers, experts, and the wider community in ways that enable reflective, self-directed learning.
  • . By capitalizing on personalization, participation, and content creation, existing and future Pedagogy 2.0 practices can result in educational experiences that are productive, engaging, and community based and that extend the learning landscape far beyond the boundaries of classrooms and educational institutions.
  •  
    About pedagogic 2.0
  •  
    Future Learning Landscapes: Transforming Pedagogy through Social Software Catherine McLoughlin and Mark J. W. Lee
J Black

The 21st Century Centurion: 21st Century Questions - 0 views

  • The report extended literacy to “Five New Basics” - English, mathematics, science, social studies, and computer science. A Nation At Risk specified that all high school graduates should be able to “understand the computer as an information, computation and communication device; students should be able to use the computer in the study of the other Basics and for personal and work-related purposes; and students should understand the world of computers, electronics, and related technologies."That was 1983 - twenty- six years ago. I ask you, Ben: Has education produced students with basic knowledge in the core disciplines and computer science TODAY? Are we there yet? OR - are we still at risk for not producing students with the essential skills for success in 1983?
    • J Black
       
      I had never really considered this before...how computer science has been totally left out of the equaltion....why is that? Cost of really delivering this would be enormous -- think how much money the districts would have to pour into the school systems.
  • On June 29, 1996, the U. S. Department of Education released Getting America's Students Ready for the 21st Century; Meeting the Technology Literacy Challenge, A Report to the Nation on Technology and Education. Recognizing the rapid changes in workplace needs and the vast challenges facing education, the Technology Literacy Challenge launched programs in the states that focused on a vision of the 21st century where all students are “technologically literate.” Four goals, relating primarily to technology skills, were advanced that focused specifically on: 1.) Training and support for teachers; 2.) Acquisition of multimedia computers in classrooms; 3.) Connection to the Internet for every classroom; and 4.) Acquiring effective software and online learning resources integral to teaching the school's curriculum.
    • J Black
       
      we are really stuck here....the training and support -- the acquisition of hardware, connectivity etc.
  • Our profession is failing miserably to respond to twenty-six years of policy, programs and even statutory requirements designed to improve the ability of students to perform and contribute in a high performance workplace. Our students are losing while we are debating.
    • J Black
       
      This is really, really well said here...bravo
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  • In 2007, The Report of the NEW Commission on the Skills of the American Workforce: Tough Choices or Tough Times made our nation hyperaware that "World market professionals are available in a wide range of fields for a fraction of what U.S. professionals charge." Guess what? While U.S. educators stuck learned heads in the sand, the world's citizens gained 21st century skills! Tough Choices spares no hard truth: "Our young adults score at “mediocre” levels on the best international measure of performance." Do you think it is an accident that the word "mediocre" is used? Let's see, I believe we saw it w-a-a-a-y back in 1983 when A Nation At Risk warned of a "tide of mediocrity." Tough Choices asks the hard question: "Will the world’s employers pick U.S. graduates when workers in Asia will work for much less? Then the question is answered. Our graduates will be chosen for global work "only if the U.S. worker can compete academically, exceed in creativity, learn quickly, and demonstrate a capacity to innovate." There they are
    • J Black
       
      This is exactly what dawns on students when they realize what globalization means for them..the incredibly stiff competition that it is posed to bring about.
  • “Learning is what most adults will do for a living in the 21st century."
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    The report extended literacy to "Five New Basics" - English, mathematics, science, social studies, and computer science. A Nation At Risk specified that all high school graduates should be able to "understand the computer as an information, computation and communication device; students should be able to use the computer in the study of the other Basics and for personal and work-related purposes; and students should understand the world of computers, electronics, and related technologies." That was 1983 - twenty- six years ago. I ask you, Ben: Has education produced students with basic knowledge in the core disciplines and computer science TODAY? Are we there yet? OR - are we still at risk for not producing students with the essential skills for success in 1983?
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