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- 9b. Evaluating the C-C-C structure Measured bond angle VSEPR Idealized bond angle 111.7 109.5 C-C-C H-C-C (center C is the middle C in the structure) 110.9 109.5 9c. Are these results for C-C-C structure consistent with what you observed in Avogadro (within a few degrees)? Explain briefly.For each compound, draw the Lewis structure, determine thegeometry using VSEPR theory, determine whether the moleculeis polar, identify the hybridization of all interior atoms, andmake a sketch of the molecule, according to valence bond theory,showing orbital overlap.a. COF2 (carbon is the central atom)b. S2Cl2 (ClSSCl)c. SF4Species Lewis Structre Molecular Geometry PF Polarity Resonance Structures? .. Triqunal Purdmidyp Isomerie Forms? XeF. Square Pianar N. PCI Bipyramidg Np Trigonal AIF- Octanedray BIFs :2:
- 11. Arrange the following compounds in order of increasing bolling polnt. CHO -CHCHO -CHCH CHCHLCH CHo A D hinh >_>_lowest 12. Arrange the following compounds in order of increasing melting point. .. HO CH OH A highest>_>_>_>_lowest 13. For the following molecule: Draw the Lewis Structure, show the molecular geometry around the central atoms, hybridizations, and approximate bond angles Molecular Geometry around Central Atom hybridi- zation bond angle F,CHNCO KFCN = CNC =# of Valence Atomic orbitals Atomic orbital of Species electron Hybridized orbitals formed Hybridization electron valence electrons unhybridized domains configuration POCI3 SiCle2- SCI2 2. SCI4 144Determine the molecular geometry about each interior atom anddraw each molecule. (Skeletal structure is indicated inparentheses.)a. N2 b. N2H2 (HNNH) c. N2H4 (H2NNH2)Molecule or Polyatomic HCO₂H SO₂ SF6 SF-CI Lewis structure H-C-O-H 0=s=0 F F F ci'.. F Hybrid- Electron pair geometry ization AXE 2 sp² AX3 sp 3 AX₂E2 AX₂E sp³d² AX sp³d² Molecular shape 2 trigonal planar AX6 trigonal planar trigonal planar tetrahedral bent bent octahedral octahedral octahedral octahedral Bond angles H-C-O 120° O-C-O 120° C-O-H ~109.5° 120° (eq) 90° (ax) 90° (eq) 90° (ax) 90° Bond Polarity Molecular Polarity if the molecule is polar, add a dipole arrow if not polar, state so and why H H 0=80 F * F CI F # F F10. Tin (IV) 8xide HU,T Sh' and ) B. Naming and Writing Compounds For numbers 1-5, write the name of the compound given its formula. For numbers 6-10, write the formula of the compound given its name. 3. SO2- 4. OF6 - 5. SF4-. 6. P2CI10 - 7. P.O6 - 8. Silicon Dioxide - 9. Carbon Tetrachloride - 10. Sulfur Tetroxide - 11. Boron Trichloride - 12. Nitrogen Pentaiodide- PROCESSING QUESTIONS:List the correct electron and molecular geometries that correspond to each set of electron groups around the central atom of a molecule.a. four electron groups overall; three bonding groups and onelone pairb. four electron groups overall; two bonding groups and two lone pairsc. five electron groups overall; four bonding groups and one lone paird. five electron groups overall; three bonding groups and two lone pairse. five electron groups overall; two bonding groups and three lone pairsf. six electron groups overall; five bonding groups and one lone pairg. six electron groups overall; four bonding groups and two lone pairsUse the blank MO diagram (below) to aid in answering the question. Calculate the bond order for BO. . Пр Op Op Os a * Os * Jup - ПрDetermine the molecular geometry about each interior atom and sketch each molecule. a. N2 b. N2H2 (skeletal structure HNNH) c. N2H4 (skeletal structure H,NNH,)3. How do the P-Ci single bond lengths in PCl5, PCl4+, and PCl6- generally compare? 4. Identify the type of bonding the central atom undergoes in PCl5 and PCl6-.SEE MORE QUESTIONS