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Physical and Chemical properties of the periodic table - Periodic Properties, Inorganic Chemistry Video Lecture | Inorganic Chemistry

48 videos|92 docs|41 tests
Video Timeline
Video Timeline
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00:00 Introduction
00:28 Properties of Metals
03:43 Question 1
03:44 Properties of Non-metals
05:52 Question 2
05:56 Metalloids
More

FAQs on Physical and Chemical properties of the periodic table - Periodic Properties, Inorganic Chemistry Video Lecture - Inorganic Chemistry

1. What are the physical properties of elements in the periodic table?
Ans. Physical properties of elements in the periodic table include characteristics such as melting point, boiling point, density, conductivity, and color. These properties can be observed without changing the chemical composition of the substance.
2. What are the chemical properties of elements in the periodic table?
Ans. Chemical properties of elements in the periodic table describe how they interact with other substances and undergo chemical reactions. These properties include reactivity, oxidation state, acidity or basicity, and the ability to form compounds with other elements.
3. How do periodic properties vary across the periodic table?
Ans. Periodic properties, such as atomic radius, ionization energy, and electronegativity, vary across the periodic table in a predictable pattern. These properties generally increase or decrease as you move from left to right across a period or from top to bottom within a group.
4. What is the relationship between atomic size and periodic properties?
Ans. Atomic size, or atomic radius, influences various periodic properties. Generally, as you move from left to right across a period, the atomic size decreases due to increased nuclear charge. This decrease in atomic size affects other properties, such as ionization energy and electronegativity.
5. How do the periodic properties of elements impact their chemical behavior?
Ans. The periodic properties of elements play a crucial role in determining their chemical behavior. For example, elements with high electronegativity tend to attract electrons more strongly and may exhibit greater reactivity. Similarly, elements with low ionization energy are more likely to lose electrons and form positive ions. These properties help explain the trends and patterns observed in chemical reactions and the formation of compounds.
48 videos|92 docs|41 tests
Video Timeline
Video Timeline
arrow
00:00 Introduction
00:28 Properties of Metals
03:43 Question 1
03:44 Properties of Non-metals
05:52 Question 2
05:56 Metalloids
More
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