Classroom Resources: Atomic Structure

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1 – 8 of 8 Classroom Resources

  • Covalent Bonding, Lewis Structures, VSEPR Theory, Electronegativity, Polarity, Atomic Radius, Valence Electrons | High School

    Access is an AACT member benefit. Project: Molecular Modeling Mark as Favorite (35 Favorites)

    In this project, students will research a molecule selected from the teacher approved list, construct a three-dimensional model of the molecule, and present their research to the class in a 7-10 minute oral presentation.

  • Periodic Table, Orbitals , Electrons, Electron Configuration, Atomic Radius, Ionic Bonding, Covalent Bonding | High School

    Access is an AACT member benefit. Activity: Planet P-10 Mark as Favorite (13 Favorites)

    In this activity, students will create a periodic table using orbital rules from a planet called P-10 and identify periodic trends and bonding rules.

  • Atomic Radius, Ionic Radius, Electrons, Model of the Atom, Subatomic Particles, Periodic Table | Elementary School, Middle School, High School

    Access is an AACT member benefit. Animation: Atomic & Ionic Radii Animation Mark as Favorite (26 Favorites)

    In this animation, students will have an opportunity to visualize atomic and ionic radii. They will look at the different sizes of atoms in the third period and the atoms in the sixth group. They will also look at an atom and its cation as well as an atom and its anion. **This video has no audio**

  • Atomic Radius, Electron Affinity, Ionization Energy, Periodic Table | High School

    Access is an AACT member benefit. Activity: Periodic Trends Investigation Mark as Favorite (28 Favorites)

    In this activity, students investigate trends in atomic radius, electron affinity, and ionization energy using an online interactive periodic table.

  • Electron Affinity, Atomic Radius, Ionic Radius, Periodic Table | High School

    Access is an AACT member benefit. Activity: Periodic Trends II: Electron Affinity, Atomic Radius, & Ionic Radius Mark as Favorite (26 Favorites)

    In this simulation, students will focus their investigation on the electron affinity of an atom. Through the use of this simulation students will have the opportunity to examine the formation of an anion as well as compare the atomic radius of a neutral atom to the ionic radius of its anion.

  • Atomic Radius, Ionic Radius, Ionization Energy, Valence Electrons, Periodic Table | High School

    Access is an AACT member benefit. Activity: Periodic Trends I: Ionization Energy, Atomic Radius & Ionic Radius Mark as Favorite (46 Favorites)

    In this simulation, students will investigate several periodic trends, including atomic radius, ionization energy and ionic radius. Through the use of this simulation students will have the opportunity to examine atomic data as well as visually compare and interact with select elements from the periodic table.

  • Trends of the Periodic Table, Electron Affinity, Atomic Radius, Ionic Radius

    Simulation: Periodic Trends II: Electron Affinity, Atomic Radius & Ionic Radius Mark as Favorite (0 Favorites)

    The May 2016 simulation is a follow-up to the March 2016 simulation. Students will focus their investigation on the electron affinity of an atom. Through the use of this simulation students will have the opportunity to examine the formation of an anion as well as compare the atomic radius of a neutral atom to the ionic radius of its anion.

  • Trends of the Periodic Table, Atomic Radius, Ionic Radius, Ionization Energy, Valence Electrons | Middle School, High School

    Simulation: Periodic Trends: Ionization Energy, Atomic Radius & Ionic Radius Mark as Favorite (0 Favorites)

    In this simulation for the March 2016 issue, students can investigate the periodic trends of atomic radius, ionization energy, and ionic radius. By choosing elements from the periodic table, atoms can be selected for a side by side comparison and analysis. Students can also attempt to ionize an atom by removing its valence electrons. Quantitative data is available for each periodic trend, and can be further examined in a graph.

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