
Semester Exam Practice Questions
... 48. The formula mass of magnesium chloride, MgCl2, is __________. a. 59.8 amu c. 95.2 amu b. 76.4 amu d. 125.8 amu 49. If one molecule of NH3 has a mass of 17.0 g/mol, what is the mass of 6.02 x 1023 molecules of NH3? a. 2.82 g c. 102 g b. 17.0 g d. 2.82 x 10-25 g 50. Which of the following statemen ...
... 48. The formula mass of magnesium chloride, MgCl2, is __________. a. 59.8 amu c. 95.2 amu b. 76.4 amu d. 125.8 amu 49. If one molecule of NH3 has a mass of 17.0 g/mol, what is the mass of 6.02 x 1023 molecules of NH3? a. 2.82 g c. 102 g b. 17.0 g d. 2.82 x 10-25 g 50. Which of the following statemen ...
Chem Review
... Linus Pauling was an American Chemist who developed the concept that electronegativities can help to determine the iconicity of a bond (that is how ionic a bond is). Pauling’s scale is what we use to determine whether a bong is ionic or covalent or polar or non polar. The way the Pauling scale is us ...
... Linus Pauling was an American Chemist who developed the concept that electronegativities can help to determine the iconicity of a bond (that is how ionic a bond is). Pauling’s scale is what we use to determine whether a bong is ionic or covalent or polar or non polar. The way the Pauling scale is us ...
File
... results are listed below.• dissolves in water • is an electrolyte • melts at a high temperature Based on these results, the solid substance could be A) Cu B) CuBr2 C) C D) C6H12O6 86. Covalent bonds are formed when electrons are A) transferred from one atom to another B) captured by the nucleus C) m ...
... results are listed below.• dissolves in water • is an electrolyte • melts at a high temperature Based on these results, the solid substance could be A) Cu B) CuBr2 C) C D) C6H12O6 86. Covalent bonds are formed when electrons are A) transferred from one atom to another B) captured by the nucleus C) m ...
TEST on Atomic Structure
... a. They are composed of anions and cations. c. They are composed of cations only. b. They are composed of anions only. d. They are formed from two or more nonmetallic elements. ____ 42) Which element, when combined with bromine, would most likely form an ionic compound? a. lithium b. carbon c. phosp ...
... a. They are composed of anions and cations. c. They are composed of cations only. b. They are composed of anions only. d. They are formed from two or more nonmetallic elements. ____ 42) Which element, when combined with bromine, would most likely form an ionic compound? a. lithium b. carbon c. phosp ...
Semester 1 Study Guide – Chemistry
... meaning that only certain discrete energy levels are allowed. ...
... meaning that only certain discrete energy levels are allowed. ...
Chapter 3 Discovering the atom and subatomic particles (History of
... Amadeo Avogadro gave the right explanation to GayLussac’s experiment by introducing the idea of diatomic particles. But his explanation was not accepted by Dalton and the chemical community for 50 years. ...
... Amadeo Avogadro gave the right explanation to GayLussac’s experiment by introducing the idea of diatomic particles. But his explanation was not accepted by Dalton and the chemical community for 50 years. ...
Chapter 3 Discovering the atom and subatomic particles (History of
... Amadeo Avogadro gave the right explanation to GayLussac’s experiment by introducing the idea of diatomic particles. But his explanation was not accepted by Dalton and the chemical community for 50 years. ...
... Amadeo Avogadro gave the right explanation to GayLussac’s experiment by introducing the idea of diatomic particles. But his explanation was not accepted by Dalton and the chemical community for 50 years. ...
Physical Science Week 1
... chemical property of a substance? A. Placing the substance in a flame to see if it will burn B. Measuring the volume of the substance C. Heating the substance until it melts D. Calculating the density of the substance ...
... chemical property of a substance? A. Placing the substance in a flame to see if it will burn B. Measuring the volume of the substance C. Heating the substance until it melts D. Calculating the density of the substance ...
The Basics - I`m a faculty member, and I need web space. What
... and remove an electron from a gaseous atom • 1st ionization energy: the energy required to remove the first electron • 2nd ionization energy: the energy required to remove the second electron • 3rd ionization energy: the energy required removing the third electron • Trend: ionization energy increase ...
... and remove an electron from a gaseous atom • 1st ionization energy: the energy required to remove the first electron • 2nd ionization energy: the energy required to remove the second electron • 3rd ionization energy: the energy required removing the third electron • Trend: ionization energy increase ...
Chemistry Study Guide
... The first version of the modern periodic table was created by Dmitri Mendeleev. He was Russian chemist that classified matter based on physical and chemical properties. He organized the known elements of the time by increasing atomic mass. He left gaps in his table where he believed new elements tha ...
... The first version of the modern periodic table was created by Dmitri Mendeleev. He was Russian chemist that classified matter based on physical and chemical properties. He organized the known elements of the time by increasing atomic mass. He left gaps in his table where he believed new elements tha ...
Chemical Reactions
... whose solutes do not settle out Suspensions – heterogeneous mixtures with visible solutes that tend to settle out ...
... whose solutes do not settle out Suspensions – heterogeneous mixtures with visible solutes that tend to settle out ...
FXM Rev 1 Key - Grande Cache Community High School
... Rutherford’s model This model formed as a result of the gold foil experiment. It involves a positively charged nucleus with electrons in orbit. It is sometimes called the Planetary Atomic Model. hydrocarbons These are organic compounds that contain both carbon and hydrogen. Methane (CH4) is an exam ...
... Rutherford’s model This model formed as a result of the gold foil experiment. It involves a positively charged nucleus with electrons in orbit. It is sometimes called the Planetary Atomic Model. hydrocarbons These are organic compounds that contain both carbon and hydrogen. Methane (CH4) is an exam ...
Test 1 - UTC.edu
... 10. A sample of water weighs 25.0g. Which of the data show measurements that have good precision, but poor accuracy? ...
... 10. A sample of water weighs 25.0g. Which of the data show measurements that have good precision, but poor accuracy? ...
Name __KEY____________ Per. ______ Polarity and
... Polarity and Stoichiometry Review When examining trends in the periodic table, as we move towards the top-right the elements have a greater _electronegativity_ (atomic radius/ electronegativity), which is a measure of how much they want to _ hold onto_ (hold onto/ let go of) their electrons. For any ...
... Polarity and Stoichiometry Review When examining trends in the periodic table, as we move towards the top-right the elements have a greater _electronegativity_ (atomic radius/ electronegativity), which is a measure of how much they want to _ hold onto_ (hold onto/ let go of) their electrons. For any ...
gr11chemreview
... 4. Why is the ionic radius of a negative ion larger than the atomic radius of the corresponding neutral atom? ...
... 4. Why is the ionic radius of a negative ion larger than the atomic radius of the corresponding neutral atom? ...
Teacher quality grant - Gulf Coast State College
... An atom that loses one or more electrons becomes positively charged, while an atom that acquires electrons becomes negatively charged. This transfer of electrons is driven by the fact that atoms with full outer electron shells are more stable. Donated electron ...
... An atom that loses one or more electrons becomes positively charged, while an atom that acquires electrons becomes negatively charged. This transfer of electrons is driven by the fact that atoms with full outer electron shells are more stable. Donated electron ...
Teacher quality grant
... An atom that loses one or more electrons becomes positively charged, while an atom that acquires electrons becomes negatively charged. This transfer of electrons is driven by the fact that atoms with full outer electron shells are more stable. Donated electron ...
... An atom that loses one or more electrons becomes positively charged, while an atom that acquires electrons becomes negatively charged. This transfer of electrons is driven by the fact that atoms with full outer electron shells are more stable. Donated electron ...
lecture_CH1-2review_chem121pikul
... Familiarity with how compounds will be drawn Molecular formulas Structure of an atom: protons, neutrons, electrons Atomic number, isotope mass number, atomic weight Navigate the periodic table: properties shared within a group, trends, metals/metalloids/nonmetals Determine valance electr ...
... Familiarity with how compounds will be drawn Molecular formulas Structure of an atom: protons, neutrons, electrons Atomic number, isotope mass number, atomic weight Navigate the periodic table: properties shared within a group, trends, metals/metalloids/nonmetals Determine valance electr ...
Redox
... which contain many carbon, hydrogen, and oxygen atoms The advantage of the effective charge method is that you can determine which atom has been oxidized or reduced To determine effective charges, we will need to use some more advanced topics, such as Lewis dot structures, and an understanding of th ...
... which contain many carbon, hydrogen, and oxygen atoms The advantage of the effective charge method is that you can determine which atom has been oxidized or reduced To determine effective charges, we will need to use some more advanced topics, such as Lewis dot structures, and an understanding of th ...
Chemistry 212 Name:
... Na2S(aq) + 2 HCl(aq) → 2 NaCl(aq) + H2S(g) 5. Discuss the halogens. (5 points) Each halogen is obtained by oxidation of the halide ion to the halogen in a molten salt, except fluorine. None of the halogens is particularly abundant in nature, however all are easily accessible in concentrated forms re ...
... Na2S(aq) + 2 HCl(aq) → 2 NaCl(aq) + H2S(g) 5. Discuss the halogens. (5 points) Each halogen is obtained by oxidation of the halide ion to the halogen in a molten salt, except fluorine. None of the halogens is particularly abundant in nature, however all are easily accessible in concentrated forms re ...
Grade 10 NSC Chemistry Curriculum
... sharing of electrons in the formation of a covalent bond, single, double and triple bonds electron diagrams of simple covalent molecules, names and formulae of covalent compounds. • Ionic bonding: transfer of electrons in the formation of ionic bonding, cations and anions, electron diagrams of simpl ...
... sharing of electrons in the formation of a covalent bond, single, double and triple bonds electron diagrams of simple covalent molecules, names and formulae of covalent compounds. • Ionic bonding: transfer of electrons in the formation of ionic bonding, cations and anions, electron diagrams of simpl ...
Document
... Rutherford expected alpha particle to travel almost straight through a target of gold foil. The results of his gold foil experiment did not support a. Millikan’s oil drop experiment b. Thomson’s plum pudding theory c. the cathode ray phenomenon d. Bohr’s atomic model ...
... Rutherford expected alpha particle to travel almost straight through a target of gold foil. The results of his gold foil experiment did not support a. Millikan’s oil drop experiment b. Thomson’s plum pudding theory c. the cathode ray phenomenon d. Bohr’s atomic model ...
South Pasadena · AP Chemistry
... 2. Write the noble-gas notation, electron dot diagram, quantum numbers, and the orbital notation for the following elements: a. carbon b. neon c. sulfur 3. Identify the elements having the following electron configurations: a. 1s22s22p63s23p3 b. [Ar]4s1 c. contains four electrons in its third and ou ...
... 2. Write the noble-gas notation, electron dot diagram, quantum numbers, and the orbital notation for the following elements: a. carbon b. neon c. sulfur 3. Identify the elements having the following electron configurations: a. 1s22s22p63s23p3 b. [Ar]4s1 c. contains four electrons in its third and ou ...
The Chemical Context of Life by Dr. Ty C.M. Hoffman
... A second kind of chemical bond forms when electrons are shared by two atoms rather than being completely transferred from one atom to the other. When a pair of electrons (one from each of two a ...
... A second kind of chemical bond forms when electrons are shared by two atoms rather than being completely transferred from one atom to the other. When a pair of electrons (one from each of two a ...
8.P.1.1Homework for Website
... top to bottom B. The atomic size of the elements increases from left to right and increases from top to bottom C. The atomic size of the elements decreases from left to right and decreases from top to bottom 16. Which element in large amounts is poisonous to humans? A. arsenic B. carbon dioxide C. s ...
... top to bottom B. The atomic size of the elements increases from left to right and increases from top to bottom C. The atomic size of the elements decreases from left to right and decreases from top to bottom 16. Which element in large amounts is poisonous to humans? A. arsenic B. carbon dioxide C. s ...
Electronegativity

Electronegativity, symbol χ, is a chemical property that describes the tendency of an atom or a functional group to attract electrons (or electron density) towards itself. An atom's electronegativity is affected by both its atomic number and the distance at which its valence electrons reside from the charged nucleus. The higher the associated electronegativity number, the more an element or compound attracts electrons towards it. The term ""electronegativity"" was introduced by Jöns Jacob Berzelius in 1811,though the concept was known even before that and was studied by many chemists including Avogadro.In spite of its long history, an accurate scale of electronegativity had to wait till 1932, when Linus Pauling proposed an electronegativity scale, which depends on bond energies, as a development of valence bond theory. It has been shown to correlate with a number of other chemical properties. Electronegativity cannot be directly measured and must be calculated from other atomic or molecular properties. Several methods of calculation have been proposed, and although there may be small differences in the numerical values of the electronegativity, all methods show the same periodic trends between elements. The most commonly used method of calculation is that originally proposed by Linus Pauling. This gives a dimensionless quantity, commonly referred to as the Pauling scale, on a relative scale running from around 0.7 to 3.98 (hydrogen = 2.20). When other methods of calculation are used, it is conventional (although not obligatory) to quote the results on a scale that covers the same range of numerical values: this is known as an electronegativity in Pauling units. As it is usually calculated, electronegativity is not a property of an atom alone, but rather a property of an atom in a molecule. Properties of a free atom include ionization energy and electron affinity. It is to be expected that the electronegativity of an element will vary with its chemical environment, but it is usually considered to be a transferable property, that is to say that similar values will be valid in a variety of situations.On the most basic level, electronegativity is determined by factors like the nuclear charge (the more protons an atom has, the more ""pull"" it will have on electrons) and the number/location of other electrons present in the atomic shells (the more electrons an atom has, the farther from the nucleus the valence electrons will be, and as a result the less positive charge they will experience—both because of their increased distance from the nucleus, and because the other electrons in the lower energy core orbitals will act to shield the valence electrons from the positively charged nucleus).The opposite of electronegativity is electropositivity: a measure of an element's ability to donate electrons.Caesium is the least electronegative element in the periodic table (=0.79), while fluorine is most electronegative (=3.98). (Francium and caesium were originally assigned both assigned 0.7; caesium's value was later refined to 0.79, but no experimental data allows a similar refinement for francium. However, francium's ionization energy is known to be slightly higher than caesium's, in accordance with the relativistic stabilization of the 7s orbital, and this in turn implies that caesium is in fact more electronegative than francium.)