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- 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. SF49b. 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.Species Lewis Structre Molecular Geometry PF Polarity Resonance Structures? .. Triqunal Purdmidyp Isomerie Forms? XeF. Square Pianar N. PCI Bipyramidg Np Trigonal AIF- Octanedray BIFs :2:
- # of Valence Atomic orbitals Atomic orbital of Species electron Hybridized orbitals formed Hybridization electron valence electrons unhybridized domains configuration POCI3 SiCle2- SCI2 2. SCI4 14411. 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 =10. 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:Determine 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 FList 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 - Пр3. 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-.Determine the molecular geometry about each interior atom and sketch each molecule. a. N2 b. N2H2 (skeletal structure HNNH) c. N2H4 (skeletal structure H,NNH,)SEE MORE QUESTIONS