Chemistry SL
Chemistry SL
6
Chapters
243
Notes
Chapter 1 - Models Of The Particulate Nature Of Matter
Chapter 1 - Models Of The Particulate Nature Of Matter
Chapter 2 - Models Of Bonding & Structure
Chapter 2 - Models Of Bonding & Structure
Chapter 3 - Classification Of Matter
Chapter 3 - Classification Of Matter
Chapter 4 - What Drives Chemical Reactions?
Chapter 4 - What Drives Chemical Reactions?
Chapter 5 - How Much, How Fast & How Far?
Chapter 5 - How Much, How Fast & How Far?
Chapter 6 - What Are The Mechanisms Of Chemical Change?
Chapter 6 - What Are The Mechanisms Of Chemical Change?
IB Resources
Chapter 2 - Models Of Bonding & Structure
Chemistry SL
Chemistry SL

Chapter 2 - Models Of Bonding & Structure

Explore Transition Element Bonding: Structure 2.3.3

Word Count Emoji
352 words
Reading Time Emoji
2 mins read
Updated at Emoji
Last edited on 5th Nov 2024

Table of content

Location, location, location!📍

  • Transition elements? They're chilling in the d-block of the periodic table.
  • Remember: Not all d-block elements are transition elements. Case in point: Zinc isn’t one because its 3d sublevel is totally full, even when it turns into the Zn2+ ion.

The metallic superpowers of transition elements💪

  • 🔩 Traits? They're like the superheroes of metals. Think of them like the Iron Man of elements – strong, hard, and dense.
  • Oxidation states? They change outfits more often than fashion models! They've got variable oxidation states.
  • 🌪️ Catalytic properties? Yup! They're the behind-the-scenes heroes helping other reactions happen faster.

Science speak🤓

Definition Alert! 🚨 Transition elements are the ones with atoms or ions that have incomplete d sublevels.

Electron dance party!🕺

  • In transition elements, the d-level electrons aren’t just sitting around. They're delocalized, meaning they're free to move around.
  • 🤔 But why should you care? Well, the more of these free-moving electrons, the stronger the attraction between the positive cations and the “electron sea” around them.
    • Real-World Example: Think of these electrons like glue holding together a tower of legos. More glue (electrons) = stronger tower (transition element).

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IB Resources
Chapter 2 - Models Of Bonding & Structure
Chemistry SL
Chemistry SL

Chapter 2 - Models Of Bonding & Structure

Explore Transition Element Bonding: Structure 2.3.3

Word Count Emoji
352 words
Reading Time Emoji
2 mins read
Updated at Emoji
Last edited on 5th Nov 2024

Table of content

Location, location, location!📍

  • Transition elements? They're chilling in the d-block of the periodic table.
  • Remember: Not all d-block elements are transition elements. Case in point: Zinc isn’t one because its 3d sublevel is totally full, even when it turns into the Zn2+ ion.

The metallic superpowers of transition elements💪

  • 🔩 Traits? They're like the superheroes of metals. Think of them like the Iron Man of elements – strong, hard, and dense.
  • Oxidation states? They change outfits more often than fashion models! They've got variable oxidation states.
  • 🌪️ Catalytic properties? Yup! They're the behind-the-scenes heroes helping other reactions happen faster.

Science speak🤓

Definition Alert! 🚨 Transition elements are the ones with atoms or ions that have incomplete d sublevels.

Electron dance party!🕺

  • In transition elements, the d-level electrons aren’t just sitting around. They're delocalized, meaning they're free to move around.
  • 🤔 But why should you care? Well, the more of these free-moving electrons, the stronger the attraction between the positive cations and the “electron sea” around them.
    • Real-World Example: Think of these electrons like glue holding together a tower of legos. More glue (electrons) = stronger tower (transition element).

Unlock the Full Content! File Is Locked Emoji

Dive deeper and gain exclusive access to premium files of Chemistry SL. Subscribe now and get closer to that 45 🌟

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