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    Eskişehir Academy of Economic and Commercial Sciences, founded in 1958, formed the basis of Anadolu University. The Academy was replaced by Anadolu University in 1982, which has gained a well-deserved place as a modern, dynamic and innovative institution among the largest universities not only in Türkiye, but also in the world.
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    Anadolu University Open Education Faculty plays an essential role in overcoming educational problems of Türkiye not only by providing open and distance education to 1 million active students and 4 million graduates but also by developing specific projects. Besides with those numbers, the system is among the mega universities of the world. By the constantly renewing method of open and distance education, it implements many initiatives and innovations in the Turkish Higher Education System.
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    Kısa adıyla BAP (Bilimsel Araştırma Projeleri), yüksek öğretim kurumlarındaki bilimsel araştırmaların desteklenmesi amacıyla geliştirilmiş bir uygulamadır. Bu uygulama YÖK'ün 01.01.2002 tarihinden geçerli olmak üzere yürülüğe aldığı Yükseköğretim Kurumları Bilimsel Araştırma Projeleri Hakkında Yönetmelik uyarınca gerçekleştirilmektedir. Üniversitemizin tüm öğretim elemanları BAP Komisyonuna başvurarak bilimsel araştırmaları için kaynak alabilirler.
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GENERAL CHEMISTRY

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Learning Outcomes

  • Will be able to explain the substance.
  • Defines the substance.
  • List the properties of matter.
  • Define pure substance.
  • Defines the mixture.
  • Distinguishes the types of mixtures.
  • Defines the element.
  • Defines the compound.
  • Explain the concept of energy.
  • Defines the concept of energy.
  • Classify the types of energy.
  • Explain the states of matter.
  • Distinguishes the states of matter.
  • Compare the properties of states of matter.
  • Be able to distinguish unit systems.
  • Distinguish between ISI unit systems.
  • Distinguish between derived ISI unit systems.
  • Analyzes unit conversion operations.
  • Explain Atoms, Molecules and Ions.
  • Defines the atom.
  • Defines the molecule.
  • Defines the ion.
  • Defines cation.
  • Defines anion.
  • Explain the Development of Atomic Theory and Laws.
  • Explains the atomic theory.
  • Explains the quantum theory.
  • Explain the electronic structure of atoms.
  • Explains quantum number.
  • Distinguish the principal quantum number.
  • Angular Momentum (Subshell) distinguishes quantum numbers.
  • Distinguish magnetic quantum numbers.
  • It distinguishes the spin quantum number.
  • Explain the energy levels of orbitals.
  • Distinguishes electron configurations.
  • Explain Hunds rule.
  • Explain the Aufbau Principle.
  • Explain the Pauli exclusion principle.
  • Simulates the electron configurations of atoms.
  • Simulates the electron configurations of ions.
  • Explain the radii of atoms and ions.
  • Explains atomic radius.
  • Explain the ionic radius.
  • Compares the radii of different atoms and ions.
  • Explain Ionization Energy.
  • Explains ionization energy.
  • Compares the ionization energies of different atoms and ions.
  • Explain Electron Affinity.
  • Explains electron affinity.
  • Explain other periodic properties.
  • Compare the properties of elements depending on their positions in the periodic table.
  • Explain Lewis Theory.
  • Describe the Lewis symbols of atoms.
  • Explains the octet rule.
  • Explain Ionic Bonding.
  • Explain ionic bonding.
  • Demonstrate ionic bonding using a Lewis structure.
  • Explain covalent bonding.
  • Explain covalent bond.
  • Demonstrate covalent bonding using a Lewis structure.
  • Explain the types of covalent bonds.
  • Explains resonance.
  • Explain the formal load.
  • Explain bond energy.
  • Defines bond energy.
  • Describes bond separation.
  • Describe bond formation.
  • Compares the energies of different types of bonds.
  • Explain molecular geometries.
  • Explain the electron group geometry.
  • Explains molecular geometry.
  • Determines the molecular geometry with the VSEPR theory.
  • Classifies the types of molecules that do not have an unshared electron pair on the central atom.
  • Classifies the types of molecules that have an unshared electron pair on the central atom.
  • Describe the geometries of molecules with multiple bonds.
  • Compare the polarities of polyatomic molecules.
  • Explain dipole moment.
  • Explains the valence bond theory.
  • Explain hybridization.
  • Describe hybrid orbitals.
  • Explains the molecular orbital theory.
  • Explain Atomic Mass.
  • Calculates the average atomic mass of different isotopes.
  • Explain the concept of mole and Avogadro's number.
  • Explain Avogadro's number.
  • Explains molar mass.
  • Calculates the molar masses of different compounds.
  • Explain chemical reactions and equations.
  • Classify chemical reactions.
  • Balances chemical reaction equations.
  • Be able to determine chemical formulas.
  • Performs calculations related to determining simple formulas.
  • Performs calculations related to determining the molecular formula.
  • Explain Gas Pressure.
  • Classify manometers.
  • Explain the Gas Laws.
  • Explain the general properties of gases.
  • Explains Boyle's law
  • Explain Charles' law.
  • Explain Avogadro's law.
  • Explains the relationship between temperature and gas pressure
  • Explain the combined gas law.
  • Explain the Ideal Gas Equation.
  • Solve an unknown in the equation using the ideal gas equation.
  • Explain gas mixtures.
  • Explain Dalton's law of partial pressures.
  • Calculates the total pressure using the law of partial pressures.
  • Explain mole fractions and make calculations.
  • Explain the Kinetic Theory of Gases.
  • Explains the types of speed.
  • Calculates the speeds of various types of gas using equations.
  • Explains effusion.
  • Explain diffusion.
  • Calculates the unknown parameter according to Graham's law of diffusion.
  • Explain the behavior of non-ideal gases.
  • Explain non-ideal gas.
  • It uses the Van der Waals Equation.
  • Explain Intermolecular Forces.
  • Explain Dipole-Dipole forces.
  • Explains London (Dispersion) forces.
  • Explains Hydrogen Bonding.
  • Explain liquids.
  • Explains the general properties of liquids.
  • Defines viscosity.
  • Explain surface tension.
  • Calculates the vapor pressure of liquid.
  • Defines the concepts related to phase changes.
  • Be able to explain solids.
  • Explain the general properties of solids.
  • Explains the tightest stacking.
  • Explains coordination number.
  • Explains the concepts of crystal lattice and unit cell.
  • Calculates the number of atoms in the unit cell.
  • Explain the types of bonding in solids.
  • Be able to make chemical reaction calculations.
  • Calculates the molarity of a solution.
  • Performs efficiency calculations.
  • Calculates percentage impurity.
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