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Mobile Math and Science Shawn Gross
Background/Needs Assessment Project K-Nect Onslow Connect Research and Evaluation Experimenting with Mobile Learning Agenda
The average science score of U.S. students in eighth grade lagged behind those in 16 of 30 countries in the Organization for Economic Cooperation and Development* U.S. students in eighth grade were further behind in math, trailing counterparts in 23 countries* Employment in science and engineering will increase about 70% faster than the rate for all occupations ( BLS, 2006), and  unemployment is very low for experienced engineers (1.3%) and computer scientists (2.7%)as compared to the national average(4.4%) ( BLS, 2006). Math and Science Skills Deficit  *Source: Program for International Student Assessment
2006 Research Methodology  Research initiated with US Department of Education, Office of Education Technology, to investigate how technology can be maximized to increase student achievement in STEM (Science, Technology, Engineering and Mathematics) Interviewed students in the DC Metropolitan area in grades 9-12 from DC, Arlington, Montgomery County and Fairfax Students were asked a series of questions concerning why they felt so disengaged in Science and Math
Why do you dislike math and science? The subject matter is abstract I do not understand how I will use this in the real world The delivery methods for instruction cause me to “power down” my brain Instructional resources are not engaging
How can technology help? I would like access to manipulatives and more use of multimedia in these subjects I want to see the cause and effect relationships that exist through multimedia I want to have access to a support network of students, teachers and tutors anytime, anywhere.  I want to be able to utilize social networking technologies (instant messaging and blogging)
Do you have device preferences?  90% OF STUDENTS INTERVIEWED PREFERRED MOBILE DEVICES
mLearning is ubiquitous access
mLearning is connectivity
mLearning is personalization
All you need is an iPad iPhone HTC Evo Dell Mini 10 Android Tablet Blackberry Tablet Window 7 Tablet Sony PSP Macbook Pro Lenovo Thinkpad Windows 7 Phone Motorola Droid X iTouch Nintendo DSi
Mobile Learning Devices  TABLETS SMARTPHONES MEDIA/GAME PLAYERS NETBOOKS/LAPTOPS
WHAT IS PROJECT K-NECT?
 
Short Term Goals To develop, implement and test an integrated system that will deliver supplemental digital instructional content and foster peer to peer collaboration through mobile devices to increase mathematic achievement for 9 th  grade students in the State of North Carolina.  To test the efficacy and viability of mobile devices as digital assets that can be utilized as both a social communications tool and educational resource for students in US secondary education institutions.  To foster the design of a system that enables safe closed social, educational communications between students, teachers and parents.  To empower students with 21 st  century skills through secondary education institutions  To determine if mobile devices can be utilized as a mechanism for reducing the disparity between those who are and are not connected with particular attention on rural areas within the State.
Long Term Goals Increase students’ levels of interest in mathematics by allowing them to leverage their current lifestyle technologies and enabling them to access dynamic, engaging and meaningful educational content in order to address the nations math and science skills deficit. Motivate U.S. students and adults, using a variety of incentives, to study and enter science, technology, engineering and mathematics careers, with a special effort geared to those in currently underrepresented groups. Gain acceptance and adoption of parents, teachers and administrators that mobile devices can be used as educational resources to support students’ efforts to increase academic performance in secondary education institutions.
K-Nect Teacher Portal K-Nect Student System Administration of Problem sets eContent Management System Monitoring & Reporting System System Administration of Devices Virtual Hard Drive Assessment System Access to comprehensive problem sets eContent Repository Instant Messaging Blogs Assessment Virtual Hard Drive Project K-Nect Overview
Problem Based Learning A particular emphasis of the design of the Problem of the Week (PoW) environment is rich problem-solving contexts which allow learners to draw on their range of math knowledge skills in problem solving.  This places the emphasis on thinking about the context of the problem rather than simply drawing on an algorithm for problem solution.  The design also involves explaining the solution strategy, a practice that leads the learner to reflect on choices and to revise.
Problem Set Design Project K-Nect’s curriculum is based on Drexel University’s Math Forum.  curriculum is research-based with emphasis on problem solving and scaffolding.  The repository of 18 math problems is aligned with state standards and can be easily assigned by teachers into students’ devices.  The focus is to engage the students in the application of problem-solving strategies as tools for thinking about and solving problems.  The curricular foundation is animated problem-based learning, which has the capability to be relevant to youth today and reflect multiculturalism.
Problem sets include the following: a multimedia review of the lesson plan unit  video describing the utilization of the problem solving strategy;  presentation of the problem  applying the problem solving strategy  multimedia simulations providing the student with an audio/visual view of the problem  The problems will have content that stems from real-world situations and will be represented using visual effects, e.g. animation, simulation, pictorial, graphical, tabular along with oral and verbal representations.  Problems contain content of interest to students in grade 9, age 14-15 years, such as NASCAR racing; music; and sports. Problem Set Orientation
Problem Solving Progression Structured Guess and Check : reading comprehension and pattern recognition. Use Tables/Charts:  Organize problem information and data to make patterns and relationships visible. Generate Expressions and Equations:  Use symbols to summarize and manipulate quantitative relationships.
Problem Set Sample
Examples of Blogs - Video
Examples of Blogs - Video
Examples of Blogs - Video
Onslow Connect Overview  2.5 million dollars awarded by Department of Defense Education Activity (DoDEA) from October 1, 2009- September 30, 2012 Will support the most comprehensive math technology program in the nation and a model counseling program for highly transient students S2S Transition Program  Honors the partnership that exists between the school system and the military installations served
Mobile Math Program Overview  All 7 high schools are participants within the program in Onslow County, NC. Program targets 9 th  grade algebra I students and teachers 9 th  grade algebra I students and teachers will be provided with Netbooks Southwest, Richlands and Dixon began the project implementation in January-February 2010 The program is funded through September 30, 2012
 
2010 Research Report Full report can be downloaded at  www.tomorrow.org  , just click on the Project K-Nect evaluation report link on the homepage.
Research Results - 2007 Quantitative  4 out of the 4 cohort Project K-Nect Algebra I classes outperformed the other Algebra classes taught by the same teachers on the NC End of Course Exam (EOC) for Algebra I All 4 cohort Project K-Nect classes outperformed the other Algebra classes taught by the same teachers with their final grades 2 of the 4  teachers reported that students achieved at least a 10% gain in Algebra I over their peers as a result of the program The aggregate gain of all 4 cohorts between the pre-test and post-test administered by the research team was 20% Qualitative  Students’ report using the phone for at least an hour everyday to complete their Algebra work  Students reported increased parental support with their instruction in Algebra.  Students reported increased communication and collaboration with their teachers Students reported increased communication and collaboration with their peers regarding questions they had regarding their homework assignments  Students felt supported by the project team and their teacher for communicating via the device for remote support Students reported a better understanding of the mathematics because of real world applications associated with the curriculum Students indicated that because they had continuous access to mathematical resources on the mobile device, their instructional time dedicated to Algebra significantly increased
Research Results – 2008/9 (Algebra I)
Research Results – 2008/9 (Geometry)
Research Results – 2008/9 (Algebra II)
Research Results – 2008/9 (Biology)
Now What? Invite students to bring their mobile learning devices in class Sign up for polleverywhere and generate warm up questions and brainstorming discussions Sign up for drop.io to create a project based communication and collaboration site Check out  www.cellphonesinlearning.com Get the book, “At-Risk Student” Develop project based learning plans Talk to your student and solicit their feedback Visit  www.onslowconnect.org  for PD resources on project based learning  Get this presentation by sending me an email at  [email_address]  (uploaded onto slideshare)
Contact Details  Shawn Gross Mobile: : 202-215-7448 Skype ID: Shawn Gross Twitter: #knected Email:  [email_address]   http://www.projectknect.org http://projectknect.blogspot.com http://www.youtube.com/user/DigitalMillennial

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Mobile Math and Science

  • 1. Mobile Math and Science Shawn Gross
  • 2. Background/Needs Assessment Project K-Nect Onslow Connect Research and Evaluation Experimenting with Mobile Learning Agenda
  • 3. The average science score of U.S. students in eighth grade lagged behind those in 16 of 30 countries in the Organization for Economic Cooperation and Development* U.S. students in eighth grade were further behind in math, trailing counterparts in 23 countries* Employment in science and engineering will increase about 70% faster than the rate for all occupations ( BLS, 2006), and unemployment is very low for experienced engineers (1.3%) and computer scientists (2.7%)as compared to the national average(4.4%) ( BLS, 2006). Math and Science Skills Deficit *Source: Program for International Student Assessment
  • 4. 2006 Research Methodology Research initiated with US Department of Education, Office of Education Technology, to investigate how technology can be maximized to increase student achievement in STEM (Science, Technology, Engineering and Mathematics) Interviewed students in the DC Metropolitan area in grades 9-12 from DC, Arlington, Montgomery County and Fairfax Students were asked a series of questions concerning why they felt so disengaged in Science and Math
  • 5. Why do you dislike math and science? The subject matter is abstract I do not understand how I will use this in the real world The delivery methods for instruction cause me to “power down” my brain Instructional resources are not engaging
  • 6. How can technology help? I would like access to manipulatives and more use of multimedia in these subjects I want to see the cause and effect relationships that exist through multimedia I want to have access to a support network of students, teachers and tutors anytime, anywhere. I want to be able to utilize social networking technologies (instant messaging and blogging)
  • 7. Do you have device preferences? 90% OF STUDENTS INTERVIEWED PREFERRED MOBILE DEVICES
  • 11. All you need is an iPad iPhone HTC Evo Dell Mini 10 Android Tablet Blackberry Tablet Window 7 Tablet Sony PSP Macbook Pro Lenovo Thinkpad Windows 7 Phone Motorola Droid X iTouch Nintendo DSi
  • 12. Mobile Learning Devices TABLETS SMARTPHONES MEDIA/GAME PLAYERS NETBOOKS/LAPTOPS
  • 13. WHAT IS PROJECT K-NECT?
  • 14.  
  • 15. Short Term Goals To develop, implement and test an integrated system that will deliver supplemental digital instructional content and foster peer to peer collaboration through mobile devices to increase mathematic achievement for 9 th grade students in the State of North Carolina. To test the efficacy and viability of mobile devices as digital assets that can be utilized as both a social communications tool and educational resource for students in US secondary education institutions. To foster the design of a system that enables safe closed social, educational communications between students, teachers and parents. To empower students with 21 st century skills through secondary education institutions To determine if mobile devices can be utilized as a mechanism for reducing the disparity between those who are and are not connected with particular attention on rural areas within the State.
  • 16. Long Term Goals Increase students’ levels of interest in mathematics by allowing them to leverage their current lifestyle technologies and enabling them to access dynamic, engaging and meaningful educational content in order to address the nations math and science skills deficit. Motivate U.S. students and adults, using a variety of incentives, to study and enter science, technology, engineering and mathematics careers, with a special effort geared to those in currently underrepresented groups. Gain acceptance and adoption of parents, teachers and administrators that mobile devices can be used as educational resources to support students’ efforts to increase academic performance in secondary education institutions.
  • 17. K-Nect Teacher Portal K-Nect Student System Administration of Problem sets eContent Management System Monitoring & Reporting System System Administration of Devices Virtual Hard Drive Assessment System Access to comprehensive problem sets eContent Repository Instant Messaging Blogs Assessment Virtual Hard Drive Project K-Nect Overview
  • 18. Problem Based Learning A particular emphasis of the design of the Problem of the Week (PoW) environment is rich problem-solving contexts which allow learners to draw on their range of math knowledge skills in problem solving. This places the emphasis on thinking about the context of the problem rather than simply drawing on an algorithm for problem solution. The design also involves explaining the solution strategy, a practice that leads the learner to reflect on choices and to revise.
  • 19. Problem Set Design Project K-Nect’s curriculum is based on Drexel University’s Math Forum. curriculum is research-based with emphasis on problem solving and scaffolding. The repository of 18 math problems is aligned with state standards and can be easily assigned by teachers into students’ devices. The focus is to engage the students in the application of problem-solving strategies as tools for thinking about and solving problems. The curricular foundation is animated problem-based learning, which has the capability to be relevant to youth today and reflect multiculturalism.
  • 20. Problem sets include the following: a multimedia review of the lesson plan unit video describing the utilization of the problem solving strategy; presentation of the problem applying the problem solving strategy multimedia simulations providing the student with an audio/visual view of the problem The problems will have content that stems from real-world situations and will be represented using visual effects, e.g. animation, simulation, pictorial, graphical, tabular along with oral and verbal representations. Problems contain content of interest to students in grade 9, age 14-15 years, such as NASCAR racing; music; and sports. Problem Set Orientation
  • 21. Problem Solving Progression Structured Guess and Check : reading comprehension and pattern recognition. Use Tables/Charts: Organize problem information and data to make patterns and relationships visible. Generate Expressions and Equations: Use symbols to summarize and manipulate quantitative relationships.
  • 23. Examples of Blogs - Video
  • 24. Examples of Blogs - Video
  • 25. Examples of Blogs - Video
  • 26. Onslow Connect Overview 2.5 million dollars awarded by Department of Defense Education Activity (DoDEA) from October 1, 2009- September 30, 2012 Will support the most comprehensive math technology program in the nation and a model counseling program for highly transient students S2S Transition Program Honors the partnership that exists between the school system and the military installations served
  • 27. Mobile Math Program Overview All 7 high schools are participants within the program in Onslow County, NC. Program targets 9 th grade algebra I students and teachers 9 th grade algebra I students and teachers will be provided with Netbooks Southwest, Richlands and Dixon began the project implementation in January-February 2010 The program is funded through September 30, 2012
  • 28.  
  • 29. 2010 Research Report Full report can be downloaded at www.tomorrow.org , just click on the Project K-Nect evaluation report link on the homepage.
  • 30. Research Results - 2007 Quantitative 4 out of the 4 cohort Project K-Nect Algebra I classes outperformed the other Algebra classes taught by the same teachers on the NC End of Course Exam (EOC) for Algebra I All 4 cohort Project K-Nect classes outperformed the other Algebra classes taught by the same teachers with their final grades 2 of the 4 teachers reported that students achieved at least a 10% gain in Algebra I over their peers as a result of the program The aggregate gain of all 4 cohorts between the pre-test and post-test administered by the research team was 20% Qualitative Students’ report using the phone for at least an hour everyday to complete their Algebra work Students reported increased parental support with their instruction in Algebra. Students reported increased communication and collaboration with their teachers Students reported increased communication and collaboration with their peers regarding questions they had regarding their homework assignments Students felt supported by the project team and their teacher for communicating via the device for remote support Students reported a better understanding of the mathematics because of real world applications associated with the curriculum Students indicated that because they had continuous access to mathematical resources on the mobile device, their instructional time dedicated to Algebra significantly increased
  • 31. Research Results – 2008/9 (Algebra I)
  • 32. Research Results – 2008/9 (Geometry)
  • 33. Research Results – 2008/9 (Algebra II)
  • 34. Research Results – 2008/9 (Biology)
  • 35. Now What? Invite students to bring their mobile learning devices in class Sign up for polleverywhere and generate warm up questions and brainstorming discussions Sign up for drop.io to create a project based communication and collaboration site Check out www.cellphonesinlearning.com Get the book, “At-Risk Student” Develop project based learning plans Talk to your student and solicit their feedback Visit www.onslowconnect.org for PD resources on project based learning Get this presentation by sending me an email at [email_address] (uploaded onto slideshare)
  • 36. Contact Details Shawn Gross Mobile: : 202-215-7448 Skype ID: Shawn Gross Twitter: #knected Email: [email_address] http://www.projectknect.org http://projectknect.blogspot.com http://www.youtube.com/user/DigitalMillennial