Two hydrogen atoms interact to form a hydrogen molecule. Classify the following statements that describe the stages of bond formation in a hydrogen molecule according to the predominant force existing between the two hydrogen atoms. Drag the appropriate items to their respective bins. • View Available Hint(s) Reset Help The two hydrogen atoms approach each other to form a bond. The internuclear distance between the two hydrogen atoms is less than the bond length. The potential energy of the system is positive. The potential energy of the system is at minimum. The two hydrogen atoms form a stable hydrogen molecule. The two hydrogen atoms are very far The two hydrogen atoms start to combine to form a hydrogen molecule. apart. Attractive force is predominant Repulsive force is predominant between the two atoms Attractive and repulsive forces There is no interaction between the two atoms balance each other between the two atoms

Chemistry
9th Edition
ISBN:9781133611097
Author:Steven S. Zumdahl
Publisher:Steven S. Zumdahl
Chapter8: Bonding: General Concepts
Section: Chapter Questions
Problem 152CP: Think of forming an ionic compound as three steps (this is a simplification, as with all models):...
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Please answer question 2 part A and B

Part B
Two hydrogen atoms interact to form a hydrogen molecule. Classify the following statements that describe the stages of bond formation in a hydrogen molecule according to the
predominant force existing between the two hydrogen atoms.
Drag the appropriate items to their respective bins.
• View Available Hint(s)
Reset
Help
The internuclear distance between the
The two hydrogen atoms approach
two hydrogen atoms is less than the
bond length.
The potential energy of the system is
positive.
The potential energy of the system is
at minimum.
each other to form a bond.
The two hydrogen atoms start to
combine to form a hydrogen molecule.
The two hydrogen atoms are very far
аpart.
The two hydrogen atoms form a stable
hydrogen molecule.
Attractive force is predominant
between the two atoms
Repulsive force is
predominant between the two
Attractive and repulsive forces
balance each other
There is no interaction
between the two atoms
atoms
Transcribed Image Text:Part B Two hydrogen atoms interact to form a hydrogen molecule. Classify the following statements that describe the stages of bond formation in a hydrogen molecule according to the predominant force existing between the two hydrogen atoms. Drag the appropriate items to their respective bins. • View Available Hint(s) Reset Help The internuclear distance between the The two hydrogen atoms approach two hydrogen atoms is less than the bond length. The potential energy of the system is positive. The potential energy of the system is at minimum. each other to form a bond. The two hydrogen atoms start to combine to form a hydrogen molecule. The two hydrogen atoms are very far аpart. The two hydrogen atoms form a stable hydrogen molecule. Attractive force is predominant between the two atoms Repulsive force is predominant between the two Attractive and repulsive forces balance each other There is no interaction between the two atoms atoms
Learning Goal:
To understand how a chemical bond is formed.
Chemical bonds hold atoms together in molecules. A chemical bond is a strong electrostatic attraction between two or more atoms. It is formed either by a transfer of electrons or by a
sharing of electrons such that each participating atom approaches a near-noble-gas configuration. A bond formed by a transfer of electrons is called an ionic bond. A bond formed by a
sharing of electrons is called a covalent bond. A coordinate covalent bond is formed when an electron-rich atom donates a pair of electrons to an electron-deficient atom.
Part A
When two hydrogen atoms approach each other to form a chemical bond, different interactions occur between the atoms. Identify the correct statements with respect to the interactions
involved in the formation of chemical bond.
Check all that apply.
• View Available Hint(s)
When two atoms of H approach each other, the two nuclei repel each other.
When two atoms of H approach each other, each electron repels the other nucleus.
When two atoms of H are infinitely far apart, they show attractive interactions.
When two atoms of H approach each other, the electrons attract each other.
When two atoms of H approach each other, each electron is attracted by the other nucleus.
Transcribed Image Text:Learning Goal: To understand how a chemical bond is formed. Chemical bonds hold atoms together in molecules. A chemical bond is a strong electrostatic attraction between two or more atoms. It is formed either by a transfer of electrons or by a sharing of electrons such that each participating atom approaches a near-noble-gas configuration. A bond formed by a transfer of electrons is called an ionic bond. A bond formed by a sharing of electrons is called a covalent bond. A coordinate covalent bond is formed when an electron-rich atom donates a pair of electrons to an electron-deficient atom. Part A When two hydrogen atoms approach each other to form a chemical bond, different interactions occur between the atoms. Identify the correct statements with respect to the interactions involved in the formation of chemical bond. Check all that apply. • View Available Hint(s) When two atoms of H approach each other, the two nuclei repel each other. When two atoms of H approach each other, each electron repels the other nucleus. When two atoms of H are infinitely far apart, they show attractive interactions. When two atoms of H approach each other, the electrons attract each other. When two atoms of H approach each other, each electron is attracted by the other nucleus.
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