Your Safer Source for Science
All-In-One Science Solution
Your Safer Source for Science
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Address P.O. Box 219 Batavia, IL 60510
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Item #: AP10804 

Price: $100.86

In Stock.

360Science™ blends the best of student-engaging digital content with easily adaptable hands-on labs to offer your students a uniquely comprehensive learning experience.

In this lab experience, students use a denaturing naturing solution to uncook egg whites. They then use different concentrations of sodium hydroxide and hydrochloric acid to cook egg yolks chemically and record their observations. Editable, differentiated instructions range from a time-sensitive prescriptive lab to full open inquiry, and robust online videos and content—including a virtual reality (VR) simulation—help students prepare for and better understand the labs they’re conducting.

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This item can only be shipped to schools, museums and science centers

Other Options

Item# AP10704 AP10804
Digital Access 1 Year 3 Year
Price $84.06 $100.86
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Product Details

360Science™: Uncooking an Egg
Concepts:
 Thermodynamics, biochemistry, food science, intramolecular forces, intermolecular forces
Outcomes: Students will come to understand that cooking is a chemical reaction. They will also gain an appreciation for how reaction conditions influence the product of a reaction.
Associated Phenomena: What happens when food is cooked? 

Our 1-year option provides access to all digital content for one year plus lab supplies for a single class of 30 students. Our 3-year option extends access to digital content to three years, with a 30% discount on refill supply kits years 2 and 3.

What is Flinn 360Science™?
We’re introducing a whole new way to teach experiential science! We’ve taken a hard look at science study from all perspectives and, thanks to the feedback of thousands of teachers nationwide, we’ve created a way to make it easier to provide personalized instruction while delivering the kind of lab experiences your students truly need.

Our new and comprehensive learning solutions are designed to bring science to life by giving you all the tools you need to incorporate more (and effective) hands-on learning in your classroom or lab. 360Science allows you to provide your students with the support they need to make real-world connections to key scientific principles and help make those abstract concepts concrete.

Every 360Science lab solves the most common challenges educators face in bringing more hands-on science to their students—from not having enough time to matching the right level of challenge for students’ abilities to providing appropriate background content, safety techniques, assessments and more.

Enable student-driven, blended learning through a unique combination of leveled lab instructions supporting prescriptive, guided- and open-inquiry lab exercises (see PDF resource for specific details) with robust digital content, such as videos and carefully curated Open Educational Resources (OER)—along with virtual reality and simulation exercises. From editable, digital instructions to assessments and alignment with Next Generation Science Standards (NGSS), we have everything you need to improve mastery, remove the intimidation factor and foster your students’ natural curiosity.

Specifications

3-Year Access

Materials Included in Kit:
Guanidine hydrochloride, CH6ClN3, 200 g
Hydrochloric acid solution, HCl, 3 M, 500 mL
Potassium phosphate dibasic, K2HPO4, 10 g
Sodium hydroxide solution, NaOH, 3 M, 500 mL
Test tubes with screw cap, 30


Correlation to Next Generation Science Standards (NGSS)

Science & Engineering Practices

Developing and using models
Planning and carrying out investigations
Constructing explanations and designing solutions
Obtaining, evaluation, and communicating information

Disciplinary Core Ideas

HS-PS1.A: Structure and Properties of Matter
HS-PS1.B: Chemical Reactions

Crosscutting Concepts

Patterns
Structure and Function

Performance Expectations

HS-PS1-3: Plan and conduct an investigation to gather evidence to compare the structure of substances at the bulk scale to infer the strength of electrical forces between particles.