MCAT Chemical and Physical Foundations of Biological Systems Flashcards: 5b Covalent Bonding Lewis Structures

Study 5b Covalent Bonding Lewis Structures in MCAT Chemical and Physical Foundations of Biological Systems with focused flashcards that help you recognize the idea, recall the key rule, and apply it in practice-style prompts.

MCAT Chemical and Physical Foundations of Biological Systems

5b Covalent Bonding Lewis Structures

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QUESTION
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What is the maximum number of electrons that can be placed around hydrogen in a Lewis structure?

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ANSWER

22 electrons. Hydrogen's 1s1s orbital limits it to 22 electrons, mimicking helium's stable configuration.

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Flashcard 1: What is the maximum number of electrons that can be placed around hydrogen in a Lewis structure?

Answer: 22 electrons. Hydrogen's 1s1s orbital limits it to 22 electrons, mimicking helium's stable configuration.

Flashcard 2: What is the typical bonding pattern of carbon in neutral organic Lewis structures?

Answer: Carbon typically forms 44 bonds and has 00 formal charge. Carbon's 44 valence electrons lead to 44 bonds to reach an octet, resulting in zero formal charge in neutral molecules.

Flashcard 3: What is the correct description of a resonance hybrid compared with any single resonance structure?

Answer: The real structure is a weighted average of resonance contributors. The resonance hybrid provides a more accurate depiction by averaging electron distributions from contributing structures.

Flashcard 4: What is the bond order associated with a double bond in Lewis structures?

Answer: Bond order =2=2. A double bond involves two shared electron pairs, defining bond order 22 in Lewis structures.

Flashcard 5: What is an expanded octet, and which period elements commonly show it in Lewis structures?

Answer: More than 88 electrons; common for period 33 and below (e.g., P, S, Cl). Expanded octets occur due to available dd orbitals in period 3+3+ elements, allowing more than 88 electrons.

Flashcard 6: What is the formula for formal charge on an atom in a Lewis structure?

Answer:  ext{FC}= ext{valence}- ext{nonbonding}- rac{ ext{bonding}}{2}. The formula calculates deviation from neutral electron count, aiding in evaluating Lewis structure validity.

Flashcard 7: Identify the total valence electron count for extCO32 ext{CO}_3^{2-} for drawing its Lewis structure.

Answer: 2424 valence electrons. Valence count includes carbon's 44, three oxygens' 1818, plus 22 electrons for the $2-$ charge.

Flashcard 8: What is the typical bonding pattern of oxygen in neutral Lewis structures (bonds and lone pairs)?

Answer: 22 bonds and 22 lone pairs. Oxygen's 66 valence electrons necessitate 22 bonds and 22 lone pairs for octet completion in neutral Lewis structures.

Flashcard 9: What is the typical bonding pattern of nitrogen in neutral Lewis structures (bonds and lone pairs)?

Answer: 33 bonds and 11 lone pair. Nitrogen's 55 valence electrons require 33 bonds and 11 lone pair to complete an octet in neutral structures.

Flashcard 10: What is the definition of a covalent bond in terms of electron behavior?

Answer: A bond formed by sharing one or more electron pairs between atoms. Covalent bonds stabilize atoms by allowing them to share electrons, achieving lower energy configurations similar to noble gases.

Flashcard 11: Which elements commonly follow the duet rule in Lewis structures?

Answer: Hydrogen and helium (stable with 22 valence electrons). Hydrogen and helium achieve stability with a helium-like configuration of 22 valence electrons due to their small size.

Flashcard 12: What is the definition of a resonance structure in Lewis theory?

Answer: One of multiple valid Lewis drawings differing only in electron placement. Resonance structures represent different electron distributions for the same atomic arrangement, illustrating delocalization.

Flashcard 13: Which resonance contributor is generally most important: full octets or incomplete octets (main-group)?

Answer: The contributor with full octets is generally most important. Structures with full octets are more stable due to achieving noble gas-like electron configurations.

Flashcard 14: Identify the total valence electron count for extNO3 ext{NO}_3^- for drawing its Lewis structure.

Answer: 2424 valence electrons. Total valence electrons sum nitrogen's 55, three oxygens' 1818, plus 11 for the negative charge.

Flashcard 15: What is the bond order associated with a single bond in Lewis structures?

Answer: Bond order =1=1. A single bond represents one shared electron pair, corresponding to bond order 11 in Lewis notation.

Flashcard 16: What is the typical bonding pattern of halogens in neutral Lewis structures (bonds and lone pairs)?

Answer: 11 bond and 33 lone pairs. Halogens' 77 valence electrons lead to 11 bond and 33 lone pairs to achieve an octet in neutral compounds.

Flashcard 17: Identify the formal charge on oxygen with 66 valence e^-, 66 nonbonding e^-, and 22 bonding e^-.

Answer: 1-1. Applying the formal charge formula yields 1-1, indicating an extra electron on oxygen compared to neutral.

Flashcard 18: Which bond is shortest: single, double, or triple (between the same two elements)?

Answer: Triple bond is shortest. Higher bond orders increase electron density between nuclei, pulling atoms closer and shortening bond length.

Flashcard 19: Which three elements commonly violate the octet rule by being electron-deficient in Lewis structures?

Answer: Boron, beryllium, and aluminum. These elements often form stable compounds with fewer than 88 electrons due to their electron configurations.

Flashcard 20: Identify the number of valence electrons in a neutral sulfur atom for Lewis structure counting.

Answer: 66 valence electrons. Sulfur, in group 1616, has 66 valence electrons as determined by its periodic table position.

Flashcard 21: Identify the formal charge on nitrogen with 55 valence e^-, 00 nonbonding e^-, and 88 bonding e^-.

Answer: +1+1. The formal charge calculation shows +1+1, as nitrogen has fewer electrons than its neutral valence count.

Flashcard 22: What is the octet rule for main-group elements in Lewis structures?

Answer: Atoms tend to form bonds to achieve 88 valence electrons. The octet rule reflects the stability of noble gas electron configurations, guiding bond formation in Lewis structures.

Flashcard 23: Which bond is strongest: single, double, or triple (between the same two elements)?

Answer: Triple bond is strongest. Greater bond order involves more shared electrons, requiring higher energy to break the bond.

Flashcard 24: Which resonance contributor is favored regarding formal charges on atoms?

Answer: Minimized formal charges, with negative charge on more electronegative atoms. Lower formal charges enhance stability, and electronegative atoms better accommodate negative charges.

Flashcard 25: What is the bond order associated with a triple bond in Lewis structures?

Answer: Bond order =3=3. A triple bond consists of three shared electron pairs, establishing bond order 33 in Lewis theory.