Showing posts with label Education. Show all posts
Showing posts with label Education. Show all posts

Wednesday, May 15, 2013

Michigan STEM Partnership HUB Meeting, LIVE today (Followed by STEM Showcase)


[St. Clair Hub] ST. Clair STEM Hub Meeting today at 9am
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Greg Johnson <notifications@mistemnetwork.basecamphq.com>
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Project:St. Clair Hub
Company:Michigan STEM Partnership

Greg Johnson posted a new message:
ST. Clair STEM Hub Meeting today at 9am

The ST. Clair STEM Hub Meeting is today at 9am.
If you are unable to attend, you can watch the meeting being live-streamed atwww.mistreamnet.com. You will be able to watch, but not participate, via the website http://www.mistreamnet.com/ ...just go to that URL and the event will be advertised.

The STEM Showcase will start at 1pm. Please check out the event webpage atwww.resa.net/stemshowcase.
After the event, the presentations will be archived on this website.

EXPLORE OPTIONS IN STEM EDUCATION

Join the St. Clair Hub of the Michigan STEM Partnership to answer these and other questions:

  • What does STEM look like in the classroom?

  • How can I provide more STEM opportunities for my students?

  • Where can I find solutions to enhance quality STEM in my district?

DATE:  May 15, 2013
TIME:   1:00 - 5:00 p.m.
LOCATION: Wayne RESA, 33500 Van Born Rd., Wayne, MI


Click HERE for the flyer


                                                                        AGENDA
TIMEARTHURS AUDITORIUMROOM 223
1:00 PMMI GEAR UP Worforce DevelopmentEngineering SMArT Detroit
1:30 PMUsing Mobile Devices to Support
Scientific Explanations
Developing Engineering Habits
of Mind in Science Students
2:00 PMPartnerships for Integrating STEM
into Classrooms
Robofest, Autonomous
Robotics Opportunities
2:30 PMLEGO EducationProject Lead The Way
3:00 PMBreak/Presenter's BoothsBreak/Presenter's Booths
3:30 PMSTEM for SustainabilityIntegrating Science and Engineering
in MS with Project-Based Learning
4:00 PMAmatrol's Portable STEM ToolkitLeveraging Existing Robotics Materials
4:30 PMIEEE Teacher In-Service Program (canceled)Innovative Vehicle Design
Engineering Programs for K-12 Education This link will open up a Microsoft Word document that describes STEM options focusing on engineering in K-12 classrooms.
The MI STEM Partnership is a statewide collaboration of committed leaders from PK-20 education, business & industry, philanthropy, economic development, government, military, etc. dedicated to elevating STEM literacy & proficiencies in a way that increases economic strength in MI by retaining & attracting desirable jobs.
For more information on the MI STEM Partnership, please contact: Barbara Bolin, Executive Director,
phone: 517.899.4233, email: bb@barbarabolin.com or visit the MI STEM Partnership website.
For more information on the St. Clair Hub, representing Southeast MI, please contact James Emmerling,jemmerling@geneseeisd.org or Michael Gallagher, mike.gallagher@oakland.k12.mi.us.org



http://www.mistreamnet.com/livestream.php?chan=mistem_pt1_051513&who=mistem_pt1_051513

Monday, April 1, 2013

Schools beginning to focus on K-12 Engineering Curriculum: More Out-of-School Possibilities to Connect!


FOCUS ON: ENGINEERING

Engineering Building a Foundation in K-12 Curricula


Sophomore Brett Dennehy, center, watches his creation as he and classmates prepare last week for a robot race in an introduction to engineering course at Stoughton High School in Stoughton, Mass.
—Charlie Mahoney/Prime for Education Week

When STEM education is discussed in the K-12 sphere, it often seems like shorthand for mathematics and science, with perhaps a nod to technology and even less, if any, real attention to engineering. But recent developments signal that the "e" in STEM may be gaining a firmer foothold at the precollegiate level.
For one, a new, national assessment in technology and engineering literacy will be administered to 8th graders next year by the makers of "the nation's report card" on education. Also, engineering design is threaded through a set of "next generation" science standards nearing completion by a coalition of experts and 26 states.
And the first-ever Advanced Placement program in engineering may be on the horizon, as efforts to create one appear to be building steam.
Those developments come on top of the many recent, and some long-standing, programs and projects that bring engineering into the classroom.
In Mobile, Ala., for instance, middle schools are using a recently crafted set of curricular units, each intended to be taught half in math class and half in science.
"The students, as they go from math to science, are trying to solve a design challenge," said Susan A. Pruet, the director of Engaging Youth Through Engineering at the Mobile Area Education Foundation, which devised the curricula with support from a $3.5 million National Science Foundation grant.
In one unit, students design a barrier system for a stream bed to reduce the sediment discharge rate. In another, they design a device to catch blood clots before they reach the lungs and ensure that blood still flows at a fast enough rate, she said.
Ms. Pruet argues that engineering really is at the heart of STEM.
"To me, STEM is integrated science, technology, and math through engineering. It is the glue."
Meanwhile, a yearlong course, Engineer Your World, developed by the University of Texas at Austin in collaboration with engineers from NASA, is being piloted this year at 23 high schools in eight states, with plans to reach 100 campuses next year.
Two of the best-known precollegiate engineering initiatives have seen exponential growth in recent years. Project Lead the Way's Pathway to Engineering curriculum, a sequence of engineering courses that aim to deliver a "hands-on, real-world" approach to solving problems, is being offered this academic year in some 2,760 U.S. high schools, 10 times the figure from a decade ago. More than 45,000 elementary teachers are using curricular units from Engineering Is Elementary, a program launched in 2004 by the Museum of Science in Boston.
"The kids keep asking: 'When are we going to be able to be engineers again?' " said Jennifer L. Haynes, a 2nd grade teacher at Woodland Elementary School in the Lakota district in southwest Ohio, which brought the program to its elementary schools this year.
Lots of out-of-school STEM initiatives with a strong engineering component have cropped up or substantially expanded over the past few years, from robotics competitions to after-school engineering clubs. The Change the Equation, a coalition of business leaders championing STEM education, said during a forum last month on engineering in schools. "Many of our students reach college without any real exposure to hands-on engineering, or in some cases understanding what engineers do."

Crowded Out?

Experts say it's difficult to know how widespread engineering education is today at the K-12 level.
Design to Learn
A variety of programs seek to expose young people to engineering, whether in the classroom or in out-of-school settings.
Engineering by Design: Provides K–12 engineering and technology curriculum developed by the International Technology and Engineering Educators Association. At grades K-5, it provides content to be integrated with other subjects. In the upper grades, it offers a set of courses with a focus on learning concepts and principles in an “authentic, problem-based environment.”
Future City: Provides project-based learning experiences in which students in grades 6-8 design cities of the future. Groups of students team up with an educator and engineer-mentor to plan cities using special software, research and write solutions to an engineering problem, build tabletop models, and present their ideas at competitions.
The Infinity Project: Offers engineering curricula for middle and high school students that help them see the value of math and science through their application in high-tech engineering. Based at Southern Methodist University.
Project Lead the Way: Offers the Pathway for Engineering program, a sequence of high school courses intended to have students learn and apply the engineering-design process, acquire strong teamwork and communications proficiency, and develop critical-thinking and problem-solving skills. It also offers a middle school program, Gateway to Technology, with a strong engineering focus.
SeaPerch: Equips teachers and students with resources to build an underwater Remotely Operated Vehicle in an in-school or out-of-school setting, following a curriculum that teaches engineering and science concepts. Sponsored by the Office of Naval Research. The third National SeaPerch Challenge competition is in May.
TechBridge: Seeks to inspire girls to discover a passion for technology, science, and engineering. Its offerings include hands-on after-school and summer activities for girls, teacher professional development, and resources to help connect stem professionals as role models with young people. Founded by Chabot Space & Science Center in 2000.
A 2009 report by the National Academy of Engineering and the National Research Council said it was "almost invisible" in schools and "few people even think of it as a K-12 subject."
More recently, a survey conducted last year on math and science education found that about one in four high schools offers an introductory engineering course, though some analysts say the phrasing of the survey question makes that figure likely overstated.
Plenty of barriers exist to giving engineering a stronger presence in the curriculum, including the pressure of high-stakes tests in reading and math; teacher-evaluation systems that may, as one analyst put it, make teachers more "risk averse"; little or no focus on engineering in many states' existing standards; and, a lack of teachers prepared to teach the subject.
The recent math and science survey, conducted by Horizon Research, found that just 7 percent of middle school science teachers, and 14 percent in high school, had taken one or more engineering courses in college. Only 7 percent of secondary science teachers consider themselves "very well prepared" to teach engineering.
When engineering courses are offered at the precollege level, they usually are electives.
Also, what takes place in the name of engineering education "does not always align with generally accepted ideas about the discipline and practice of engineering," said the report from the NRC and the National Academy of Engineering.
That document outlines three principles of K-12 engineering education. It should: stress engineering design; incorporate key and developmentally appropriate math, science, and technology skills; and promote engineering "habits of mind," such as systems thinking, creativity, and collaboration.
Several universities have recently set up programs to prepare engineering teachers at the high school level. The University of Texas at Austin launched a UTeach Engineering program a few years ago (akin to its program focusing on math and science teachers). The University of Tennessee at Chattanooga and the University of California, Berkeley, have followed suit with UTeach programs that also prepare engineering teachers, said Cheryl L. Farmer, the program manager at the University of Texas. Several other universities are working on plans to develop similar programs, she said. Tufts University in 2011 launched a master's program in engineering education.
In addition to preparing teachers, the UTeach Engineering program in Texas developed the new Engineer Your World high school course.
"It's an innovative course for students who want to learn more about engineering and its role in shaping our world," said Ms. Farmer.

An excited Michael Connelly sees his team's tower get crushed during an exercise testing the durability of tower design in an honors engineering class at Stoughton High School in Stoughton, Mass. Engineering is building momentum in K-12.
—Charlie Mahoney/Prime for Education Week
One pilot site using the course is the brand new Lake Washington STEM School in Redmond, Wash., where Principal Cynthia L. Duenas said she was surprised to discover that many STEM schools she has visited did not include engineering in a meaningful way.
"We discovered that the 'e' in STEM was almost an afterthought," she said. "That really stuck in my mental file, so my team and I decided that it had to be on equal footing with technology, science, and math."
In one project, engineering teacher Arny W. Leslie said, students faced a scenario in which they were to build wind turbines for Haiti to generate electricity for running water pumps.
"What I've been impressed by is the way the math and science concepts have never seemed like an add-on," Mr. Leslie said.
Meanwhile, the College Board is actively exploring the development of a new course framework and assessment in engineering design, but with a twist. The idea is to produce a portfolio assessment, as is now used for AP Studio Art.

Common Standards

The common standards for science, due out soon, may pave the way to give engineering more attention in schools, observers say.
Currently, no states have stand-alone engineering standards, and only about a dozen have included engineering "formally" in their science standards, according to Greg Pearson, a senior program officer at the National Academy of Engineering. Two states often highlighted as having a strong engineering dimension in their science standards are Massachusetts and Minnesota.
RELATED BLOG
The common standards identify as a key stated aim that students apply their learning through scientific inquiry and the engineering-design process to deepen understanding.
Some engineering experts criticized a recent public draft, issued in January, saying it gave the subject short shrift and was a step backward from an earlier draft.
But Cary I. Sneider, a member of the science-standards writing team, said the final version will reflect significant changes that help to address such concerns.
"The engineering concepts were fragmented" in the prior draft, said Mr. Sneider, an associate research professor at Portland State University in Oregon.
"Engineering design is woven deeply into the core of the standards," he said, "so it should become really a part of every science education program, from K-12."
Even as engineering courses are becoming more widely available in schools, some experts say the most practical way to expose students to engineering on a widespread basis is by integrating it with the math or science courses they already take.
That's the approach of two projects the Stevens Institute of Technology, in Hoboken, N.J., is working on in collaboration with other universities and backed by NSF grants. They infuse engineering concepts and design activities with high school science classes, including biology, chemistry, and physics.
"Kids are always saying, 'Why do I need to learn this, and what am I going to do with it?" said Arthur
Camins, who directs the Stevens Institute's Center for Innovation in Engineering and Science Education.
In one unit, students tackle reducing climate change through the design and construction of a small-scale algae farm to help cut CO2emissions.
In addition, Mr. Camins' center has devised and is scaling up an underwater robotics program delivered mainly at summer camps.
"Virtually everything around us has been engineered, Mr. Camins said at the recent forum on engineering education. "And so it's kind of insane not to engage kids in thinking about that ... and the decisionmaking process that goes into all that design."
Coverage of science, technology, engineering, and mathematics education is supported by a grant from the Noyce Foundation, at www.noycefdn.org.

Friday, March 1, 2013

Virtual Schools Act (Dr. Kecia Ray, Executive Director of Learning Technologies for Nashville Public Schools and President-Elect of ISTE)


Virtual learning needs support in 

Tennessee

Feb 12, 2013   |  
0 Comments
Kecia Ray
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Recently, there have been proposals to revoke the Tennessee Virtual Schools Act passed two years ago.
Tennessee has lagged in funding and supporting technology in our schools for years, but we are one of the leading states when it comes to online and virtual learning. To stop that progress now would be a mistake.
Tennessee does not have a statewide virtual high school, but several districts have opened virtual schools or programs. In Metro Schools, we have the first diploma-granting virtual school in the state. We are one of several state districts that now require students to take at least one online course before graduation. Memphis City and Putnam County schools are doing the same, putting Tennessee among just six states leading college and career readiness with this online requirement.
Online learning opportunities include taking courses not typically offered at a school, recovering credits, dual enrollment with colleges, accelerating graduation or staying in school while also staying home to take care of family members.
Most districts in Tennessee manage their own virtual schools and programs within the district. They do not contract with for-profit vendors to provide services, content or teachers. MNPS Virtual School has a brick-and-mortar building where parents and students can visit to meet with teachers, receive tutoring or meet with friends. We purchase digital content from vendors, just like buying textbooks, but hiring and evaluating teachers, as well as monitoring student progress is conducted internally by the school.
The more direct oversight the district has over the virtual school or program, the greater the likelihood of high-quality content, teacher quality and mechanisms for academic interventions for struggling students. District-run virtual schools are focused solely on yielding high academic success, as opposed to turning a profit.
Public virtual schools have the same accountability standards as brick-and-mortar schools. Under the current system, underperforming virtual schools are at risk of state takeover or even closure. Revoking the Tennessee Virtual Schools Act would actually allow schools to circumvent accountability by operating as virtual programs, not schools, with student achievement results sent to the student’s zoned school. This is not the transparency most desire.
The best solution is to limit online learning to district managed virtual schools and require them to be accountable for full and part-time students. The virtual school will have to make adequate yearly progress under Tennessee’s accountability system or face the consequences. Tennessee has finally made strides in developing college- and career- ready graduates with skills online learning provides. Virtual learning is here to stay.
Kecia Ray is executive director of Learning Technologies for Metro Nashville Public Schools and president-elect of the International Society for Technology in Education.

Sunday, February 17, 2013

Secretary of Education Arne Duncan speaking @ UT - April 3 - 1PM



Secretary of Education to speak at Baker Center


Arne Duncan
Arne Duncan
U.S. Secretary of Education Arne Duncan will speak at the University of Tennessee at 1 p.m. April 3 in the Student Center auditorium as part of a distinguished lecture series honoring former U.S. Sen. Howard H. Baker Jr.
Matt Murray, director of the Baker Center for Public Policy at UT, said Duncan was suggested by Baker's wife, Nancy Kassebaum Baker, a former U.S. senator from Kansas.
Duncan has been education secretary since 2009 at the beginning of President Barack Obama's first term. He has been responsible for working with Congress on educational reform, including funding on "Race to the Top" funds, for which Tennessee qualified three years ago.
"With Tennessee becoming one of first 'Race to the Top' states, I think it's a pretty attractive place for him to consider visiting," Murray said.
At present, Duncan will come to Knoxville just for his talk although Murray said a reception might be arranged while he is here.
Duncan is a former chief executive officer of Chicago Public Schools. He also ran the nonprofit education foundation Ariel Education Initiative, which helped fund a college education for a class of inner-city children under the I Have A Dream program.
His visit is sponsored by SunTrust Bank, although he will not be paid an honorarium because he is a federal government employee, Murray said.
SunTrust also sponsored the inaugural Baker lecture series in November when former U.S. Sen. George Mitchell of Maine spoke.
The Baker Center also is hosting two programs at the Center, 1640 Cumberland Ave., on Thursday:
George Crabtree, senior scientist, Distinguished Fellow and associate division director in the Materials Science Division, Argonne National Laboratory in Chicago, will speak on the next 50 years in energy and the environment, 3:30-5 p.m.
Three Tennessee governors will discuss civility and free expression at 5:30 p.m. (This was originally announced for 7 p.m.) Those expected to participate are Gov. Bill Haslam and former Govs. Phil Bredesen and Don Sundquist. The panel will be moderated by Memphis attorney Bill Haltom. The Tennessee Bar Association has partnered with the ABA Division for Public Education as part of Civility and Free Expression in a Constitutional Democracy — A National Dialogue. This program is made possible through the National Endowment for the Humanities Bridging Cultures initiative. Also sponsored by the First Amendment Center and UT College of Law.