Electron Gain Enthalpy : Definition, Units, Factors, Trends, Successive Δeg​H

What is Electron Gain Enthalpy : Definition, Units, Factors, Trends, Successive Electron gain enthalpies

Electron gain enthalpy is the enthalpy change that occurs when an electron is added to an isolated gaseous atom to form a negative ion. It helps explain the tendency of elements to accept electrons and plays an important role in understanding periodic properties and chemical reactivity. The study of electron gain enthalpy includes its definition, units, factors affecting it, periodic trends, and successive electron gain enthalpies.

What is Ionization Enthalpy? Definition, Units, Factors and Successive IE

Ionization Enthalpy, Factors affecting Ionisation Enthalpy, Successive Ionization Enthalpies

Ionization enthalpy is a fundamental concept in atomic structure that describes the energy required to remove an electron from an isolated gaseous atom. It plays a crucial role in understanding periodic trends, chemical reactivity, and the stability of elements. The study of factors affecting ionization enthalpy and successive ionization enthalpies helps explain why different elements exhibit varying tendencies to lose electrons.

Atomic Radii, Ionic Radii and Isoelectronic Ions Trends Conceptual Questions and Answers of Periodic Table

Atomic Radii, Ionic Radii and Isoelectronic Ions Trends Conceptual Questions and Answers of Periodic Table

Atomic radii, ionic radii, and isoelectronic ions are key concepts in understanding periodic trends in the periodic table. These concepts explain how the size of atoms and ions changes across periods and down groups, and how gain or loss of electrons affects ionic size. This section includes conceptual questions and answers that help clarify differences between atomic and ionic radii, as well as size variations in isoelectronic species based on nuclear charge, making it essential for building strong fundamentals in chemistry.

Radius of Cation is Less and Anion is More Than Its Parent Atom, Size Variation in Isoelectronic Series

Why is the radius of a cation smaller than that of its parent atom? Why is the radius of a anion larger than that of its parent atom? Variation of Size in an Isoelectronic Series

The radius of a cation is always smaller than its parent atom, while the radius of an anion is larger due to changes in electron number and effective nuclear charge. When an atom loses electrons to form a cation, reduced electron-electron repulsion and increased nuclear attraction pull the remaining electrons closer, decreasing size. In contrast, when an atom gains electrons to form an anion, increased repulsion between electrons causes expansion of the electron cloud. In an isoelectronic series, where species have the same number of electrons, size variation depends on nuclear charge—the greater the nuclear charge, the smaller the radius.