Showing posts with label STEM. Show all posts
Showing posts with label STEM. Show all posts

Wednesday, March 19, 2014

Strategies for teaching common core to teens with autism show promise

Credit: High school classroom in Newark, Delaware, public domain image, courtesy of Wikimedia

Scientists at UNC's Frank Porter Graham Child Development Institute (FPG) report that high school students with autism can learn under Common Core State Standards (CCSS), boosting their prospects for college and employment.

Newly published recommendations from FPG's team also provide strategies for educating adolescents with autism under a CCSS curriculum.

Veronica P. Fleury
"The number of students with autism who enter high school settings continues to grow," said Veronica P. Fleury, lead author and postdoctoral research associate with FPG's Center on Secondary Education for Students with Autism Spectrum Disorders (CSESA).

"Many educators may find that they're not prepared to adapt their instruction to meet both state standards and the diverse needs of these students."

In 2010, the National Governors Association Center for Best Practices and the Council of Chief State School Officers released the CCSS for English and mathematics in an effort to better prepare students for college and careers.

According to Fleury, the greater demand for a technologically advanced workforce also makes academic skills now even more essential for high school graduates.

"But the college enrollment of people with autism is among the lowest for all categories of disabilities," Fleury said.

"In addition, less than 40% of the population with autism is employed, and most of those with jobs only work part-time, without benefits."

However, she said that academic performance in high school plays an important role in opportunities for a college education and employment.

Yet, while the CCSS outlines expectations of what educators should teach, it provides no guidance on how to teach these skills to students with or without autism.

Fleury believes the most effective high school instruction requires understanding the complex profile of students with ASD, who possess both strengths and weaknesses.

People with autism have some social deficits and may process language at a slower rate, she said, while many also have enhanced visual processing.

Some may have difficulty learning to make calculations, but others are mathematically gifted.

"It's extremely hard to draw general conclusions about academic performance for these students," Fleury said. "But adolescents with autism often do have difficulties comprehending texts, and many find writing a burdensome task."

Fluery added that work in STEM fields (science, technology, engineering, and math) are replacing manufacturing jobs and may provide viable opportunities for many people with ASD.

She said people with autism often gravitate to these fields in college, highlighting the need to equip them as high school students with skills that will enable them to compete and achieve.

"While the very structure of high school poses challenges for students with autism, being able to anticipate and understand activities, schedules, and expectations can improve their ability to respond to classroom demands," she said. "Establishing routines and creating written schedules also helps."

In a new article in Remedial and Special Education, Fleury and her co-authors recommended several strategies to educate students with ASD effectively, including exposing them to assignments before presenting the work in class.

The researchers also noted a variety of techniques for delivering the highly explicit instruction that teenagers with autism require, such as teaching mnemonic devices for remembering steps in a task.

"High school students with ASD also need ample opportunities to practice skills across settings throughout the school day," she said. "And teaching them to monitor their own behavior can help them to use their skills in a variety of settings."

Fleury added that because there is a strong link between social and academic skills, new research should focus on developing interventions for students with autism that can address both areas of need together.

"We know that when students with autism receive appropriate instruction and support, many of them are capable of learning academic content that is aligned with state standards, AND better academic performance often leads to a more successful outcome after high school." she said.

Thursday, November 28, 2013

Can Toys help develop Science and Technology (STEM) skills in children?

One of the hot topics on social media this holiday season is finding gifts that can help children, especially girls, develop science- and engineering-related skills.

Beth Holloway, director of the Women in Engineering Program at Purdue University, says toys that help children figure out how to turn their ideas into reality - toys that let them design and build something, for instance - are a great first step in inspiring them to consider a science, technology, engineering and mathematics (STEM) career.

"Toys like that will help children realize that they can make an impact on the world through their ideas," she says.

As for girls in particular, Holloway says they should have a range of toys and experiences.

"Parents need to provide girls with toys that indulge their feminine side but also those that allow them to feel the sense of accomplishment that comes from designing and building something," she says.

"Those accomplishments will encourage them to continue to stretch their imaginations."

Holloway says research shows that girls tend to become interested in what they are confident that they are good at doing.

STEM-inspired toys can help foster that confidence in designing and building while reinforcing their existing interests.

For ideas on STEM-related toys, Holloway suggests the websites www.amightygirl.com/ and www.modernparentsmessykids.com

Wednesday, July 25, 2012

Spatial skills may be improved through scientific-based training.

The research published this month in Psychological Bulletin, the journal of the American Psychological Association, is the first comprehensive analysis of credible studies on such interventions.

Improving spatial skills is important because children who do well at spatial tasks such as putting together puzzles are likely to achieve highly in science, technology, engineering and mathematics (STEM) fields.

David Uttal and fellow researchers at Northwestern University with Nora Newcombe, professor of psychology at Temple and principal investigator of the National Science Foundation's Spatial Intelligence and Learning Center, reviewed 217 research studies on educational interventions to improve spatial thinking.

"There are limitations involved with looking at individual studies one by one. What we found when we brought together this large body of literature on training effects and analyzed it was a very powerful message, said Newcombe.

"People of all ages can improve at all types of spatial skills through training, period." Although recent research confirms that spatial abilities uniquely predict STEM achievement, there has been some debate about whether spatial skills can be improved — and whether such improvement lasts or transfers to new tasks.

The new meta-analysis answers all those questions in the affirmative. The researchers found that spatial skills are indeed malleable and that spatial training transfers to other fields.

"Our findings have significant real world implications by showing that training can have an impact on a technological workforce.

With the right training more high school students will be able to consider engineering and other scientific fields as a career option," said Newcombe.

One example of the type of training that can increase spatial abilities is having physics students use three-dimensional representations. Video game playing also increases spatial skills.

"Perhaps the most important finding from this meta-analysis is that several different forms of training can be highly successful," the authors say.

"Our hope is that our findings on how to train spatial skills will ultimately lead to highly effective ways to improve STEM performance," said Uttal, the lead author on the study.

The study looked at gender and age differences in relation to spatial thinking and found that in males and females, adults and children, even a small amount of training can improve spatial reasoning and have long-lasting impact.

Journal reference: Psychological Bulletin website
Provided by Temple University website

Read more at: http://medicalxpress.com/news/2012-07-spatial-skills.html#jCp