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Intermolecular Forces Worksheet Mazes - Print and Digital Resource

ChemKate
1.1k Followers
Grade Levels
7th - 12th, Higher Education, Adult Education, Homeschool
Standards
Resource Type
Formats Included
  • PDF
  • Internet Activities
  • Google Apps™
  • Compatible with 
    Activities
Pages
9 PDFs + Google Slides
$3.50
$3.50
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ChemKate
1.1k Followers
Includes Google Apps™
The Teacher-Author indicated this resource includes assets from Google Workspace (e.g. docs, slides, etc.).
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Description

Looking for a no-prep, self-checking intermolecular forces activity for your chemistry students? In print and digital Google Apps format, these interactive, engaging mazes beat worksheet practice any day! Scaffolded mazes vary from defining the intermolecular force, application, and its impact on physical properties. If students veer off a maze path, they will land on a box that has no correct answer off it, encouraging them to fix any previous mistakes and guide them onward. These mazes are perfect for bell ringers, distance learning, in-class practice, exit/entrance slips, homework or early finishers.

Includes:
Level 1 - Intermolecular force definitions

  • London dispersion forces, dipole-dipole, hydrogen bonding and ion-dipole

Level 2 - Apply the intermolecular force

  • Identify which intermolecular force is used as well as polarity of molecules

Level 3 - Impact on physical properties

  • Boiling point, surface tension, solubility, viscosity and vapor pressure

✦ This, along with the links below, are available in my costs-savings Intermolecular Forces Bundle and save time and assurance with all the activities found in this Chemistry I MEGA Activity Bundle - Visit this to see a wide variety of many no-prep, print, and digital inquiry activities, graphic organizers and application ✦

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Total Pages
9 PDFs + Google Slides
Answer Key
Included
Teaching Duration
N/A
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Standards

to see state-specific standards (only available in the US).
NGSSHS-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. Emphasis is on understanding the strengths of forces between particles, not on naming specific intermolecular forces (such as dipole-dipole). Examples of particles could include ions, atoms, molecules, and networked materials (such as graphite). Examples of bulk properties of substances could include the melting point and boiling point, vapor pressure, and surface tension. Assessment does not include Raoult’s law calculations of vapor pressure.

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