Articles & News
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The Effects of Cell Cycle Deviation on Cancer Development Use Hudson Alpha's Newest Kit to demonstrate chance mutations and randomization in resulting in cancer. View »
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What's the Big Idea? Understanding the Laboratory Experience in the AP* Chemistry Curriculum If you teach AP* Chemistry, you’re already aware, or need to be, that changes to the course curriculum are here, which means you’ll probably have to change your classroom instruction. To help relieve your anxiety, here’s an overview of the course revisions, some important dates to remember, and 2 ways Carolina can help to ensure your success during this transition. View »
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5 Steps to Teaching Inquiry in Your Science Classroom Worried about the inquiry lab requirement of the College Board's AP lab curriculum? Here are some great tips from an educator who's already done it. View »
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SCUBA Diving and Gas Laws Students are often fascinated by extreme sports such as SCUBA diving. This interest can be harnessed to teach an exciting lesson on gas laws. Five gas laws are discussed, and each discussion is centered on the law’s compelling, real-world connection to SCUBA diving. View »
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Using the Concepts Associated with Providing Clean Drinking Water to Teach Science: An Interdisciplinary Approach Introducing students to the issues associated with safe drinking water is a great real-world, interdisciplinary way to teach science. View »
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The Science of Rainbows The spectrum of a rainbow helps students learn about light and waves properties View »
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Leading with the Lab: How to Use Inquiry in a Flipped Class Looking at flipping your class? Learn from a high school chemistry teacher who’s already done it. Marc Seigel explains how he’s used a somewhat nontraditional flip to teach inquiry units on the gas laws and molarity/molality. He cites example activities, online resources, extensions, and assessments. View »
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The Basics of Graphs and Charts When conducting experiments, scientists rely on graphs to convey the data they obtain. But with so many kinds of graphs available, how do they know which one to choose? For the young scientists in your classroom, this can sometimes be a difficult decision to make. View »
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Using pClone Red for a Science Fair Project on Bacterial Gene Expression The emerging field of synthetic biology attracted the attention of one high school student planning his science fair project. His research—and its award-winning results—may suggest new ways that you can explore gene expression with your students. View »
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Tied Up in Protein Synthesis (or Lost in Translation): A Kinesthetic and Inquiry-Based Approach to Teaching the Central Dogma of Biology In this exercise, students tie Windsor knots to create a translation product from mRNA instructions—a protein “necktie.” Your classroom is the nucleus, and the hallway is cytoplasm. View »
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Infographic: What Is the Electromagnetic Spectrum? You’re probably more familiar with the electromagnetic spectrum than you realize. In fact, you encounter it regularly every day. View »
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Flipped Lessons Are Great, Now Try Layering! Getting the Most Out of Your Wisconsin Fast Plants® Lessons Tick-tock, tick-tock. Every classroom minute is precious, and teachers always look for ways to accomplish more during instructional time. Wisconsin Fast Plants® can help maximize your time while providing 3-dimensional learning recommended by the latest national standards. View »
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A Brief Look at Cells: Shape and Function Discover morphologies of common cells and why they are shaped in such ways View »
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Structure and Function in Plant and Animal Cell Osmosis Use this fun, interesting lab activity to show students how various structures within plant and animal cells are affected by osmosis. View »
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Examples to Use When Teaching About Selection and Evolution: Fox Domestication and Poison Resistance in Rodents To make abstract science concepts more concrete, teachers often use real-life examples. But even classic examples can lose their appeal. Refresh your lessons on evolution and selection with 2 less well known examples. View »
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The Mechanics of Breathing Learn how Boyle's law and the structure of the respiratory system govern the mechanics of breathing. View »
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Carolina's Recommended Reading for AP® Biology Teaching AP® Biology this year? Go beyond the textbook and take students on an exploration of key concepts with these teacher-tested and recommended books. View »
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Infographic: What's Your Blood Type? Use this exciting infographic as a teaching aid for your classes as your students discover the ABO/Rh blood groups. View »
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Carolina Investigations® for AP® Biology: Cell Communication This kit is an engaging inquiry lesson where students observe communication between yeast cells. View »
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How to Make a Good Scientific Model Are your students able to generate observations and construct a scientific model? Use our free scientific model checklist to help guide them. View »
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Using Interactive Case Studies to Meet the New Science Standards Learn about the benefits of using Interactive Case Studies to teach science concepts View »
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Human Body: Cardiovascular System Teach the functions of the cardiovascular system with the help of this infographic. View »
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What Goes On Inside a Spectrophotometer? A spectrophotometer measures the amount of light absorbed or transmitted as it passes through a sample, such as a solution containing food dye. Use this article to cover the basics of how a spectrophotometer works. View »
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Human Body: Lymphatic System Teach the vital role of the lymphatic system with this infographic. View »
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Human Body: Lymphatic System Review Review lymphatic system structure and function with this graphic organizer. View »
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The Role of the Lymphatic System This activity focuses on the lymphatic system and kinds of allergic reactions. View »
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Gathering, Visualizing, and Interpreting Data AP® science exams require students to perform calculations and to visualize and interpret data. We can help you make data collection and analysis a key part of your students’ classroom experience. View »
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Human Body: Integumentary System Teach the role of the integumentary system with this infographic. View »
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Next Generation Dissections Dissection can and should be part of your implementation of 3-dimensional learning. Carolina can help you make this transition with updated kits and resources. View »
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Fast Plants® Seeds: Which Genetic Stock Do I Use? Wisconsin Fast Plants are ideal model organisms for the study of genetic inheritance. Learn more about seed varieties. View »
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Engineering for Sports: Traumatic Brain Injury How can sports-related brain injuries be prevented? Get tips and resources to help your students engineer and test brain protection device designs. View »