There are |hybrid orbitals represented by this picture. They are composed of d. atomic orbitals, corresponding to hybridization. (number) They have an electron pair geometry of With bond angles of (If more than one bond angle is possible, separate each with a space).
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- Consider the following flat drawing of methane (CH4) . a. What is HCH bond angle implied by this drawing if you assume it is flat? b. Are the electron domains of this flat CH4 spread out as much as possible? c. Use model materials to make a model of CH4 (methane). If you assembled it correctly, thefour bonds (bonding electron domains) of your model will be 109.5° apart. d. In which representation, the drawing above or the model in your hand (circle one) are theH’s of CH4 more spread out around the central carbon? e. Confirm that your model looks like the following drawing. The wedgebond represents a bond coming out of the page, and the dash bondrepresents a bond going into the page f. You will often see methane drawn as if it were flat (like on the previous page). Why is thismisleading, and what is left to the viewer’s imagination when looking at such a drawing?Molecule or Polyatomic HOCI NO₂ N₂H4 H₂O₂ Hint: the oxygens are connected (CH3)2NH Lewis structure H¬O—CI: | : 0=N–6: H-N-N-H H H H-0-0-H H H H-C-N -C-H .. HHH Hybrid- ization AXE 3 sp AX₂E2 2 sp² AX₂E 3 sp³ AX3E 3 sp AX₂E2 3 AX3E Electron pair geometry Molecular shape tetrahedral bent trigonal planar bent tetrahedral trigonal pyramidal tetrahedral bent tetrahedral trigonal pyramidal Bond angles ~109.5° ~109.5° all ~109.5° all ~109.5° all ~109.5° Bond Polarity Molecular Polarity if the molecule is polar, add a dipole arrow if not polar, state so and why H H H²O-OH Н H H" H H H Н Cl H 'H Hharks People Tab Window Help nd Tap Cengage Learning Use The Molecular OrbitalEne: X + evo/index.html?deploymentld%3D55750828934189288909969212&elSBN=97813056... INDTAP Use the References to access important values if needed for this question. What atomic or hybrid orbitals make up the T bond between C, and C, in propyne, CHCCH3? (C, is the first carbon in the formula as written.) orbital on C+ orbital on C2 How many o bonds does C, have in CHCCH3? How many TI bonds does C, have?
- Molecule or Polyatomic BrF5 2- SiO3² NH4CIO₂ K3PO4 Lewis structure 3 K+ F Br. H H-N-H H .. ܀ :O: F o=d-0: : 0: + :O: 2- 3- Hybrid- ization AXE sp³d² AX-E 2 sp² AX3 3 sp AX4 sp AX₂E₂ sp³ AX4 Electron pair geometry Molecular shape octahedral square pyramidal trigonal planar trigonal planar tetrahedral tetrahedral tetrahedral bent tetrahedral tetrahedral Bond angles (eq) 90° (ax) 90° all 120° all ~109.5° all ~109.5° Bond Polarity Molecular Polarity if the molecule is polar, add a dipole arrow if not polar, state so and why H H T S F H OP F cisoPeuple s State University : CHE 1 X * MindTap - Cengage Learning G so3 molecular geometry - Goc X Tp * /index.html?deploymentld%=D55750828934189288909969212&elSBN=9781305657571&snapshotld%3D2199898&id%31... Q Search IDTAP Quick Prep Use the References to access important values if needed for this question. A gas is compressed and during this process the surroundings do 142 J of work on the gas. At the same time, the gas absorbs 263 J of heat from the surroundings. What is the change in the internal energy of the gas? Submit Answer 5 quesabn attempts remainingConsider the ring cation, called "cyclopentadienyl cation".... one of five possible resonance structures that can be drawn for it is shown below. In the actual ring cation, what is the charge on any one carbon atom, and what is the bond order of any one C,C bond? ? charge on one C = ? bond order of C,C bond = Select one: O A. +2/5; 4/3 OB. + 1/6; 1.5 O C. + 2/5; 7/5 O D. + 1/5; 6/5 O E. + 1/5; 7/5
- arks People Tab Window Help d Tap Cengage Learning C Use The Molecular Orbital Ener X + vo/index.html?deploymentld%355750828934189288909969212&elSBN=97813056... NDTAP Q Sea Use the References to access important values if needed for this question. What atomic or hybrid orbitals make up the sigma bond between B and Cl in boron trichlodide, BCI3? orbital on B+ orbital on Cl What is the approximate Cl-B-CI bond angle?mart - Hiring Ce... 3 441) # 3 H—N—H E D C F4 $ 4 The electron-domain geometry and molecular geometry of ammonia are and respectively. The Lewis structure is given below. R F F5 I-Z: V H ► 11 % 5 F6 T G B A 6 F7 Y H I F8 & 7 N 8 Question 3 of 4 J F9 * > 8 DELL 8. F10 D M K ( 9 < E Alt A) tetrahedral, trigonal pyramidal O B) trigonal planar, trigonal planar C) octahedral, trigonal planar D) T-shaped, trigonal planar F11 * L ) O F12 P : Ctri * PrtScr 2⁰ =1 1E3 ? + { 9 [ I Insert 3:23 PM WD40 4/28/2023 } 1 Delete Backspace ↑ PgUp PgDn Num Lock B Enter Subm Shift 7 E I 4CHEM 107 Fall 2019 Logan T. Rivera (Student section: 57) Groups Grades Contents Main Menu > Postlab Questions - Bonding and Moleculary Geometry V2 » 11-007: Match Course Contents » 11-007: Match Molecules To Hybridization Match each molecule with the hybridization of the carbon atom. D CO2 A sp3 D NCO sp d C C sp2 2- C CO3 B C C2042 D spod2 E sp Start by drawing a Lewis structure for each species. Submit Answer Incorrect. Tries 1/5 Previous Tries This discussion is closed. OType here to search e r L ovo
- Predict the ideal bond angles around each central atom in :NEC-N-H this molecule. H carbon: nitrogen: Question Source: McQuarrie, Rock, And Gallogly -General Chemsitry Publisher: University Science E APR W 12 MacBook Air DII F6 F7 F8 F10 E11 F12 F3 F4 FS %23 & )) %3 3 6 %3D 4. 5 Y U G H K C V M command optiom IN4) Which set of hybridization for the indicated atoms in the structure below is CORRECT? CH3 A) B) C) D) CH₂ 1 =N- || IV | = sp³; || = sp³; III = sp² and IV = sp³. I= sp³; || = sp²; III = sp and IV = sp. | = sp³; || = sp²; III = sp² and IV = sp². | = sp²; || = sp³; III = sp and IV = sp³.Answer the following items as required. A. For the following sets of atomic orbitals: 1. s+ px 2. px + dx?-y? 3. py + dxy Based on Valence Bond Theory: (a) Draw the overlapping of atomic orbitals. (b) Draw the bond axis and label the location where the electron density is high. (c) Classify the bond formed as to sigma or pi. II.