Slide 1 of 31 Periodic Trends 6.3. © Copyright Pearson Prentice Hall Slide 2 of 31 Periodic Trends Sodium chloride (table salt) produced the geometric.

Slides:



Advertisements
Similar presentations
Periodic Trends.
Advertisements

Periodic Trends 6.3.
Periodic Trends 6.3 Section Periodic Trends II.
The Periodic Law Electron Configuration and Periodic Properties.
Trends and Similarities
Periodic Table Trends.
6.3 Periodic Trends Sodium chloride (table salt) produced the geometric pattern in the photograph. Such a pattern can be used to calculate the position.
Good Morning! To begin today, you will need: 1.3 different colors of writing utensils o colored pencils are up front for your use 2.One blank periodic.
Slide 1 of 31 Periodic Trends 6.3. © Copyright Pearson Prentice Hall Slide 2 of 31 Periodic Trends Sodium chloride (table salt) produced the geometric.
Organizing the Elements 6.1
Periodic Trends Trends in Atomic Size
Summary: periodic trends
The Periodic Law says: PERIODIC LAW states that when elements are arranged in order of increasing atomic number, there is a periodic repetition of their.
Slide 1 of 31 © Copyright Pearson Prentice Hall Periodic Trends > Trends in Atomic Size The ___________ ________________ is _________ _________ of the.
Drill Determine the group and period of the following: Determine the group and period of the following: a. Mg b. Ar c. N.
Searching For an Organizing Principle
Chapter 6 The Periodic Table 6.3 Periodic Trends
Ch. 6: The Periodic Table 6.1 Organizing the Elements Mendeleev, Periodic Law, metals, nonmetals, metalloids 6.2 Classifying the Elements squares in.
Mendeleev Made periodic table based on atomic mass and other properties. (especially chemical) Had blank spots for undiscovered elements Called periodic.
Types of Periodic Trends
Even More About the Periodic Table
Academic Chemistry Class Notes April 9, 2015 Periodic Trends of the Elements.
Ch-6 sec-3. Atomic Size Atomic Size is measured as half the distance between two nuclei Size generally decreases with atomic number within a period Size.
The Periodic Table and Periodic Trends
Periodic Trends. Nuclear Charge Shielding Atomic Radius.
Unit 4: The Periodic Table and Periodicity
 Size is expressed in terms of atomic radius.  Atomic radius is ½ the distance between the nuclei of two atoms of the same element when the atoms are.
Slide 1 of 31 © Copyright Pearson Prentice Hall Periodic Trends > Trends in Atomic Size The atomic radius is one half of the distance between the nuclei.
End Show Slide 1 of 31 Periodic Trends 6.3. End Show © Copyright Pearson Prentice Hall Periodic Trends > Slide 2 of 31 Trends in Atomic Size What are.
III. Periodic Trends. Types of Periodic Trends Atomic size (atomic radius) Ionic size (ionic radius) Ionization energy electronegativity.
Atomic Size The atomic radius is one half of the distance between the nuclei of two atoms of the same element when the atoms are joined.
Aim: Determining ionization energy and electronegativity of elements
The Diatomics They are elements that are found as two atoms bonded to themselves. They are H 2, N 2, O 2, F 2, Cl 2, Br 2, I 2 There are 7 of them and.
Module 3.03 Periodic Trends.
Periodic Trends.
Bell Ringer 1. How many valence electrons does N have? 2. Which of the 3 “classes” on the periodic table displays properties of both metals and nonmetals?
© Copyright Pearson Prentice Hall Slide 1 of 31 Periodic Trends > Types of Periodic Trends 4 Periodic Trends 1.Atomic Radii (AR) 2.Ionization Energy (IE)
Periodic Trends. Atomic Radius Defined as half the distance between the nuclei of two atoms Going across the periodic table ◦ But why are they smaller.
Periodic Trends Notable trends of the table. What are periodic trends on the periodic table? The predictable pattern by which properties of elements change.
Periodic Properties and Trends Chm Atomic and Ionic Radii Atomic Radii – the size of the atom Atomic Radii – the size of the atom In a Period.
Line Spectra!. Periodic Trends Atomic Size/Atomic Radius.
UNIT 5: THE PERIODIC TABLE. Organizing the Elements How would you organize the people in this room? How did chemists begin to organize the known elements?
© Copyright Pearson Prentice Hall Slide 1 of Organizing the Elements In a self-service store, the products are grouped according to similar characteristics.
Chemistry Periodic Trends. Section 5 Definitions Atomic Radius Ion Cation Anion Ionization Energy Electronegativity.
Chemistry Chapter 5 Section 3.  Atomic Radius  Definition: ½ distance between center of adjacent nuclei of bonded atoms  Trends: p141  Within group,
Periodic Trends. Types of Periodic Trends How elements differ as you move through the periodic table? Atomic Radius Ionic Radius Ionization Energy Electronegativity.
Periodic Trends 4th block Chemistry.
Trends on the Periodic Table
Periodic Trends.
Periodic Trends 6.3.
Periodic Trends 6.3.
Chapter 6 Section 3: Periodic Trends
The Periodic Table Periodic Trends.
Periodic Trends 6.3.
Chapter 6 The Periodic Table 6.3 Periodic Trends
PERIODIC TRENDS Chapter 6.
The Periodic Table 6.3 Periodic Trends.
Periodic Trends 6.3.
6.3 Trends in Atomic Size Trends in Atomic Size
Periodic Trends 6.3.
Periodic Trends.
Periodic Trends 6.3.
6.3 Periodic Trends Sodium chloride (table salt) produced the geometric pattern in the photograph. Such a pattern can be used to calculate the position.
Periodic Trends 6.3.
6.3 Trends in Atomic Size The atomic radius is one half of the distance between the nuclei of two atoms of the same element when the atoms are joined.
Periodic Trends.
Periodic Trends 6.3.
Periodic Trends.
Periodic Trends.
Periodic Trends 6.3.
Presentation transcript:

Slide 1 of 31 Periodic Trends 6.3

© Copyright Pearson Prentice Hall Slide 2 of 31 Periodic Trends Sodium chloride (table salt) produced the geometric pattern in the photograph. Such a pattern can be used to calculate the position of nuclei in a solid. You will learn how properties such as atomic size are related to the location of elements in the periodic table. 6.3

© Copyright Pearson Prentice Hall Periodic Trends > Slide 3 of 31 Trends in Atomic Size What are the trends among the elements for atomic size? 6.3

Slide 4 of 31 © Copyright Pearson Prentice Hall Periodic Trends > Trends in Atomic Size The atomic radius is one half of the distance between the nuclei of two atoms of the same element when the atoms are joined. 6.3

Slide 5 of 31 © Copyright Pearson Prentice Hall Periodic Trends > Trends in Atomic Size Group and Periodic Trends in Atomic Size In general, atomic size increases from top to bottom within a group and decreases from left to right across a period. 6.3

Slide 6 of 31 © Copyright Pearson Prentice Hall Periodic Trends > Trends in Atomic Size 6.3

Slide 7 of 31 © Copyright Pearson Prentice Hall Periodic Trends > Trends in Atomic Size 6.3

© Copyright Pearson Prentice Hall Periodic Trends > Slide 8 of 31 Trends in Ionization Energy What are the trends among the elements for first ionization energy, ionic size, and electronegativity? 6.3

Slide 9 of 31 © Copyright Pearson Prentice Hall Periodic Trends > Trends in Ionization Energy The energy required to remove an electron from an atom is called ionization energy. The energy required to remove the first electron from an atom is called the first ionization energy. The energy required to remove an electron from an ion with a 1+ charge is called the second ionization energy. 6.3

Slide 10 of 31 © Copyright Pearson Prentice Hall Periodic Trends > Trends in Ionization Energy Group and Periodic Trends in Ionization Energy First ionization energy tends to decrease from top to bottom within a group and increase from left to right across a period. 6.3

Slide 11 of 31 © Copyright Pearson Prentice Hall Periodic Trends > Trends in Ionization Energy 6.3

Slide 12 of 31 © Copyright Pearson Prentice Hall Periodic Trends > Trends in Ionization Energy 6.3

© Copyright Pearson Prentice Hall Slide 13 of 31 Periodic Trends > Trends in Ionization Energy 6.3

Slide 14 of 31 © Copyright Pearson Prentice Hall Periodic Trends > Trends in Ionic Size During reactions between metals and nonmetals, metal atoms tend to lose electrons, and nonmetal atoms tend to gain electrons. The transfer has a predictable effect on the size of the ions that form. 6.3

Slide 15 of 31 © Copyright Pearson Prentice Hall Periodic Trends > Trends in Ionic Size Cations are always smaller than the atoms from which they form. Anions are always larger than the atoms from which they form. 6.3

Slide 16 of 31 © Copyright Pearson Prentice Hall Periodic Trends > Trends in Ionic Size Relative Sizes of Some Atoms and Ions 6.3

© Copyright Pearson Prentice Hall Slide 17 of 31 Periodic Trends > Trends in Ionic Size 6.3 Size generally increases

Slide 18 of 31 © Copyright Pearson Prentice Hall Periodic Trends > Trends in Electronegativity Electronegativity is the ability of an atom of an element to attract electrons when the atom is in a compound. In general, electronegativity values decrease from top to bottom within a group. For representative elements, the values tend to increase from left to right across a period. 6.3

Slide 19 of 31 © Copyright Pearson Prentice Hall Periodic Trends > Trends in Electronegativity Representative Elements in Groups 1A through 7A 6.3

© Copyright Pearson Prentice Hall Periodic Trends > Slide 20 of 31 Summary of Trends What is the underlying cause of periodic trends? 6.3

Slide 21 of 31 © Copyright Pearson Prentice Hall Periodic Trends > Summary of Trends The trends that exist among these properties can be explained by variations in atomic structure. 6.3

© Copyright Pearson Prentice Hall Slide 22 of 31 Periodic Trends > Summary of Trends 6.3 Atomic Size Increases Decreases Size of cationsShieldingNuclear ChargeElectronegativityIonization energySize of anionsIonic size Constant

END OF SHOW