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David Wetzel

Writing in Mathematics: Assessing Understanding | Teaching Science and Math - 0 views

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    Writing in math is an excellent way to determine if students' understand or do not understand the math they are learning about. Allowing students to explain how they solved a math problem, how they developed a formula to solve a problem, or how they applied a math concept requires critical thinking.
David Wetzel

Project Based Learning Viewed Through a Digital Lens - 0 views

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    Often we search for meaningful ways to integrate digital technology in project based learning activities given to our students. We also would like our students to develop a thorough understanding of the concepts underlying the work - after all this is the purpose of the project. Giving students the opportunity to complete and present their project through a digital lens has one great advantage - student engagement. This in turn causes students to develop a more in depth understanding of concepts.
David Wetzel

Saving the Sports Complex Algebra Project - 0 views

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    An algebra project focusing on a theme which interests students is more likely to engage them in the project, so lets take a look at sports. Many students participate in sports at some level, whether as part of a school team or a community team. For the most part these same students do not understand the costs involved to host the sport. Also, they do not understand how much money is needed to ensure a profitable season so the sport can continue from year to year.
David Wetzel

5 Alternative Assessment Techniques in Science and Math | Teaching Science and Math - 0 views

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    Alternative assessments provide you opportunities to determine the true level of understanding your students have regarding science and math concepts. These tools improve the learning environment for your students, along with your assessment of their real understanding.
David Wetzel

Understanding Scientific Inquiry: Inquiry Involves the Use of Critical Thinking to Unde... - 0 views

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    Scientific inquiry causes students to use higher order thinking skills and learn science from a minds-on approach. Inquiry's foundation originates with John Dewey. In Dewey's book Democracy in Education (1916), he indicates that education begins with the curiosity of learners. Student curiosity and involvement in scientific inquiry moves them beyond passive learning to higher order thinking.
David Wetzel

Mathematics Teaching Using Journals: Writing Strategies That Improve Problem Solving an... - 0 views

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    Math journals provide advantages for students to develop a better understanding of mathematics, with teachers learning their student's views and beliefs regarding math.
David Wetzel

Math Used in Everyday Auto Racing and Design: Mathematics is the basis of Designing, Dr... - 0 views

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    "All the time you hear what is the use of learning math? Auto racing is full of math applications and concepts. For a race team to be successful they must understand math. "
David Wetzel

Why is Student Interactivity in Lessons Essential? - 1 views

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    Learning science and math is normally thought of as committing to memory facts and procedures. Because of this we tend to perceive the best way to teach is through rote memorization of ideas, theories, and models. As a consequence, students experience little opportunity to develop a real understanding of what they are expected learn. Our challenge is to craft strategies which allow student interactivity within lessons. Student involvement beyond memorization is an essential building block for learning science and math.
David Wetzel

5 Ways to Integrate Science Process Skills in Lessons - 0 views

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    Integrating the science process skills within your teaching does not require drastic changes. It simply involves making the process of science more explicit in lessons, investigations, and activities you are already using in your curriculum. The science process skills are the methods used for helping our students understand how we know what we know about the world in which they live. This often means going beyond a science textbook and supplementing the core-content within textbooks. It also means using your course content as a means for exposing students to the real process of science.
David Wetzel

Engaging Students with Digital Media in Science and Math - 0 views

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    Digital Media follows the old adage "A picture is worth a thousand words!" when it comes to science and math. The use of visuals is ideal for helping students construct background knowledge for developing a better understanding of science and math concepts.
David Wetzel

5 Creative Ways to Use Flip Cameras in Science and Math - 0 views

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    The Flip camera is great for all types of projects in science and math - at any grade level. Flip cameras are small handheld video cameras that can record 30 or 60 minutes worth of video. They connect to a computer with a USB plug that "flips" out from the side of the camera. The benefits of these cameras include another means for assessing students understanding of concepts beyond worksheets and tests. Besides a teacher's record, the videos provide a digital record for parents and administrators to show a student's successes or areas which need improvement.
David Wetzel

Stimulating Critical Thinking through a Technological Lens - 0 views

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    Stimulating critical thinking using technology has the potential to create more in depth understanding of science and math content by students when engaged in learning activities which integrate in-class and on-line technology resources. Technology tools support stimulation of both inquiry-based and critical thinking skills by engaging students in exploring, thinking, reading, writing, researching, inventing, problem-solving, and experiencing the world outside their classroom. This is accomplished through learning content through the lens of video to multimedia to the internet (Using Technology to Improve Student Achievement, NCREL, 2005).
David Wetzel

12 Free Mobile Math Apps for the iPod Touch - 0 views

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    As a mobile learning device, the iPod Touch encourages learning anytime, anywhere! Applications available for this digital device support and encourage students to develop a greater understanding of math concepts through the lens of personalized learning.
David Wetzel

Science Discrepant Events and Critical Thinking: Using Surprising Phenomena to Focus St... - 0 views

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    Sample discrepant events are used to cause contradictions in students' prior knowledge and experiences in support of their better understanding of science concepts.
David Wetzel

Project Based Learning in Mathematics: Learning Activities in Math Designed to Extend C... - 0 views

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    Six math projects that integrate real-world math problems are presented as a teaching strategy for helping students develop a greater understanding of math.
David Wetzel

Physical and Chemical Properties of Matter: An Investigation into the Property Changes ... - 0 views

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    The only way to truly understand the properties of matter and changes which occur in the properties of matter is to conduct and inquiry-based investigation.
David Wetzel

12 Expert Twitter Tips for the Classroom: Social Networking Classroom Activities That E... - 0 views

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    A dozen activities are presented for using an online education technology tool to engage students in classroom activities to develop a better understanding of concepts.
David Wetzel

7 Online Science Projects for All Grade Levels: Project Based Learning Science Activiti... - 0 views

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    Projects in science are provided which take full advantage of Internet resources to help students develop a better understanding of the world in which they live.
David Wetzel

Understanding Scientific Inquiry: Inquiry Involves the Use of Critical Thinking to Unde... - 0 views

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    Scientific inquiry causes students to use higher order thinking skills and learn science from a minds-on approach. Inquiry's foundation originates with John Dewey. In Dewey's book Democracy in Education (1916), he indicates that education begins with the curiosity of learners.
David Wetzel

Why Teach Science and Math? | Teaching Science and Math - 0 views

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    As former elementary science and math education professor, I was always encouraging preservice teachers to teach science and math from a hands-on, minds-on perspective. My goal was single minded in the sense that for students to learn science and math their curiosity must peaked. This was always a challenge because most of these preservice teachers learned science and math by rote memorization of facts. Their prior knowledge and experience had few opportunities to actually investigate science phenomena and truly understand the usefulness of math.
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