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  • https://chem.libretexts.org/Bookshelves/Introductory_Chemistry/Introductory_Chemistry_(CK-12)/22%3A_Oxidation-Reduction_Reactions/22.04%3A_Molecular_Redox_Reactions
    This page discusses acetone's role as a solvent and its production process, emphasizing its use in plastics and products like nail polish remover. It details the oxidation process in acetone manufactu...This page discusses acetone's role as a solvent and its production process, emphasizing its use in plastics and products like nail polish remover. It details the oxidation process in acetone manufacturing and explains molecular redox reactions, highlighting how hydrogen atoms are oxidized and oxygen is reduced in the formation of water, illustrating the principles of oxidation and reduction in chemical reactions.
  • https://chem.libretexts.org/Bookshelves/Inorganic_Chemistry/Supplemental_Modules_and_Websites_(Inorganic_Chemistry)/Chemical_Reactions/Chemical_Reactions_Examples/Solutions
    Solving problems of solution stoichiometry requires the concepts introduced in stoichiometry, which also provides the basis for the discussion on reactions. Contributors and Attributions Chung (Peter)...Solving problems of solution stoichiometry requires the concepts introduced in stoichiometry, which also provides the basis for the discussion on reactions. Contributors and Attributions Chung (Peter) Chieh (Professor Emeritus, Chemistry @ University of Waterloo)
  • https://chem.libretexts.org/Workbench/Survey_of_Chemistry_and_Physics/02%3A_Structure_of_Matter/2.01%3A_Classification_and_Phases_of_Matter
    Matter, i.e., anything that occupies space and has mass, and energy, i.e., the ability to do work are their forms and basic properties are described.
  • https://chem.libretexts.org/Bookshelves/Inorganic_Chemistry/Supplemental_Modules_and_Websites_(Inorganic_Chemistry)/Descriptive_Chemistry/Elements_Organized_by_Block/1_s-Block_Elements/Group__2_Elements%3A_The_Alkaline_Earth_Metals/Z004_Chemistry_of_Beryllium_(Z4)
    The name Beryllium comes from the Greek beryllos which is the name for the gemstone beryl. The element is a high-melting, silver-white metal which is the first member of the alkaline earth metals. It ...The name Beryllium comes from the Greek beryllos which is the name for the gemstone beryl. The element is a high-melting, silver-white metal which is the first member of the alkaline earth metals. It is not abundant in the environment and occurs mainly in the mineral beryl with aluminum and silicon.
  • https://chem.libretexts.org/Bookshelves/Introductory_Chemistry/Introductory_Chemistry_(CK-12)/18%3A_Kinetics/18.02%3A_Collision_Theory
    This page discusses the financial implications of car damage, highlighting the costs of repairs, particularly in the absence of insurance. It also explains collision theory, which states that for prod...This page discusses the financial implications of car damage, highlighting the costs of repairs, particularly in the absence of insurance. It also explains collision theory, which states that for products to form during reactions, particles must collide with adequate kinetic energy and proper orientation; only effective collisions can rearrange atoms and produce new substances, while ineffective collisions do not result in any changes.
  • https://chem.libretexts.org/Courses/Westminster_College/CHE_180_-_Inorganic_Chemistry/13%3A_Chapter_13_-_s-Block_Elements/13.9%3A_Group_2/Chemistry_of_Beryllium_(Z%3D4)
    The name Beryllium comes from the Greek beryllos which is the name for the gemstone beryl. The element is a high-melting, silver-white metal which is the first member of the alkaline earth metals. It ...The name Beryllium comes from the Greek beryllos which is the name for the gemstone beryl. The element is a high-melting, silver-white metal which is the first member of the alkaline earth metals. It is not abundant in the environment and occurs mainly in the mineral beryl with aluminum and silicon.
  • https://chem.libretexts.org/Bookshelves/Introductory_Chemistry/Introductory_Chemistry_(CK-12)/22%3A_Oxidation-Reduction_Reactions/22.11%3A_Half-Reaction_Method_in_Basic_Solution
    This page discusses cyanide, a toxic industrial byproduct that can cause significant harm. It explains a treatment method involving chlorine gas to convert cyanide into harmless nitrogen. Additionally...This page discusses cyanide, a toxic industrial byproduct that can cause significant harm. It explains a treatment method involving chlorine gas to convert cyanide into harmless nitrogen. Additionally, it covers the half-reaction method for balancing redox reactions in basic solutions, providing a specific example of iron oxidation by dichromate. The page emphasizes the versatility of this method for various aqueous reactions.
  • https://chem.libretexts.org/Bookshelves/Introductory_Chemistry/Introductory_Chemistry_(CK-12)/07%3A_Chemical_Nomenclature/7.09%3A_Polyatomic_Ions
    This page provides an overview of polyatomic ions, focusing on their composition, naming conventions, and common examples. It explains that most polyatomic ions are anions, typically named with the su...This page provides an overview of polyatomic ions, focusing on their composition, naming conventions, and common examples. It explains that most polyatomic ions are anions, typically named with the suffixes -ate or -ite, and discusses the use of prefixes per- and hypo-. It also mentions variations in charge and composition among polyatomic ions. The page concludes with exercises for practicing the writing of formulas and naming ions.
  • https://chem.libretexts.org/Bookshelves/Introductory_Chemistry/Introductory_Chemistry_(CK-12)/15%3A_Water/15.08%3A_Dissociation
    This page discusses the hazards of winter ice on roads and sidewalks and the use of deicing salts like sodium chloride and calcium chloride to melt ice. It explains the dissociation of these ionic com...This page discusses the hazards of winter ice on roads and sidewalks and the use of deicing salts like sodium chloride and calcium chloride to melt ice. It explains the dissociation of these ionic compounds into individual ions when dissolved in water, contrasting this with nonionic compounds, such as sucrose, which do not dissociate. The importance of understanding these processes for effective winter road maintenance is also highlighted.
  • https://chem.libretexts.org/Bookshelves/Physical_and_Theoretical_Chemistry_Textbook_Maps/Physical_Chemistry_(LibreTexts)/09%3A_Chemical_Bonding_in_Diatomic_Molecules/9.12%3A_Molecular-Orbital_Theory_Also_Applies_to_Heteronuclear_Diatomic_Molecules
    This page explains the formation and bonding characteristics of heteronuclear diatomic molecules through molecular orbital theory, emphasizing concepts like polar covalent bonds, resonance, and electr...This page explains the formation and bonding characteristics of heteronuclear diatomic molecules through molecular orbital theory, emphasizing concepts like polar covalent bonds, resonance, and electron configurations. It highlights nitric oxide's unique properties due to its odd electron count and discusses the creation of molecular orbital diagrams, which account for electronegativity differences and predict magnetic properties in various molecules, including ions such as CN⁻ and OCl⁻.
  • https://chem.libretexts.org/Bookshelves/Introductory_Chemistry/Introduction_to_General_Chemistry_(Malik)/01%3A_Matter_energy_and_their_measurements/1.01%3A_Matter_and_energy
    Matter, i.e., anything that occupies space and has mass, and energy, i.e., the ability to do work are their forms and basic properties are described.

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