Question

The electron domain and molecular geometry of SO3 are ________. Question 38 options: A) trigonal bipyramidal,...

The electron domain and molecular geometry of SO3 are ________. Question 38 options: A) trigonal bipyramidal, T-shaped B) octahedral, seesaw C) trigonal planar, trigonal planar D) trigonal bipyramidal, trigonal planar E) trigonal planar, bent

0 0
Add a comment Improve this question Transcribed image text
Answer #1

Angues SO3 S - 2,8,6 IG - 2,8 10: :s: :O: Ö=S -s= :0; Sterie No. of atomg bonded to centeal atom No. of lone pairs on centralElec+101) molecular Atomg bo- nded to centkal atomy Lone pains on central geomety geometry linear linear 2. O 2 lineaa linear

Add a comment
Know the answer?
Add Answer to:
The electron domain and molecular geometry of SO3 are ________. Question 38 options: A) trigonal bipyramidal,...
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for? Ask your own homework help question. Our experts will answer your question WITHIN MINUTES for Free.
Similar Homework Help Questions
  • What is the electron domain geometry (EDG) and molecular geometry (MG) of AsH3? A. trigonal bipyramidal,...

    What is the electron domain geometry (EDG) and molecular geometry (MG) of AsH3? A. trigonal bipyramidal, T-shaped B. tetrahedral, trigonal pyramidal C. trigonal planar, trigonal pyramidal D. octahedral, T-shaped E. tetrahedral, tetrahedral

  • 10.) Specify the electron-domain geometry for the following two species using the VSEPR model: Xe...

    10.) Specify the electron-domain geometry for the following two species using the VSEPR model: XeCl4 and IO4−. For each species, predict the bond angles based on the electron-domain geometry. (a)    XeCl4 geometry: linear trigonal planar    bent tetrahedral trigonal pyramidal trigonal bipyramidal seesaw T-shaped octahedral square pyramidal square planar pentagonal bipyramidal pentagonal pyramidal pentagonal planar bond angle: 60° 72°   90° 109.5° 120° 180° (b)    IO4− geometry: linear trigonal planar    bent tetrahedral trigonal pyramidal trigonal bipyramidal seesaw T-shaped octahedral square pyramidal square...

  • Specify the electron-domain geometry for the following two species using the VSEPR model: KrCl4 and BrO4....

    Specify the electron-domain geometry for the following two species using the VSEPR model: KrCl4 and BrO4. For each species, predict the bond angles based on the electron-domain geometry. (a) KrCl4 geometry linear trigonal planar bent tetrahedral trigonal pyramidal trigonal bipyramidal T-shaped octahedral square pyramidal square planar pentagonal bipyramidal pentagonal pyramidal pentagonal planar bond angle: 72° 109.5° 120 180° (b) Br04 geometry: inear trigonal planar bent tetrahedral trigonal pyramidal trigonal bipyramidal seesaW T-shaped octahedral square pyramidal square planar pentagonal bipyramidal pentagonal...

  • westion 14 of 40 1.0 Points and respectively. The electron-domain geometry and molecular geometry of boron...

    westion 14 of 40 1.0 Points and respectively. The electron-domain geometry and molecular geometry of boron trifluoride are A. trigonal bipyramidal, T-shaped O B. tetrahedral, trigonal pyramidal C. trigonal planar, trigonal planar OD. T-shaped, trigonal planar E. octahedral, T-shaped Reset Selection Mark for Review What's This?

  • 2. What is the electron pair geometry of SF4? A) Trigonal bipyramidal B) Seesaw C) T-shaped D)...

    2. What is the electron pair geometry of SF4? A) Trigonal bipyramidal B) Seesaw C) T-shaped D) Square pyramidal E) Octahedral

  • 9.) Using the VSEPR model, identify the molecular geometry of nitrogen triiodide, NI3, based on the...

    9.) Using the VSEPR model, identify the molecular geometry of nitrogen triiodide, NI3, based on the number of electron domains. **PICK ONE** linear trigonal planar bent tetrahedral trigonal pyramidal trigonal bipyramidal seesaw T-shaped octahedral square pyramidal square planar

  • Provide the correct molecular geometry for (c), given the number of lone pairs and bonding groups...

    Provide the correct molecular geometry for (a), given the number of lone pairs and bonding groups on the central atom. trigonal planar  octahedral  trigonal bipyramidal  trigonal pyramidal  square pyramidal  tetrahedral  seesaw  bent  linearProvide the correct molecular geometry for (b), given the number of lone pairs and bonding groups on the central atom.  trigonal bipyramidal  square pyramidal  bent  tetrahedral  trigonal planar  seesaw  trigonal pyramidal  octahedral  linear Provide the correct molecular geometry for (c), given the number of lone pairs and bonding groups on the...

  • Part A. Which of the following is not a valid electron group (domain) geometry? trigonal planar,...

    Part A. Which of the following is not a valid electron group (domain) geometry? trigonal planar, trigonal pyramidal, tetrahedral, trigonal bipyramidal, octahedral Part B. For which of the following molecules is the electron group (domain) geometry trigonal bipyramidal? IF5, XeF4, SF4, PF3, CF4

  • According to VSEPR theory, XeO3 has how many regions of electron density around the central atom...

    According to VSEPR theory, XeO3 has how many regions of electron density around the central atom (how many electron groups?) (enter a number from 1 to 6) ? XeO3 will have (linear, trigonal planar, tetrahedral, trigonal pyramidal, bent, trigonal bipyramidal, seesaw, T-shaped, octahedral, square pyramidal, square planar) electronic geometry, and (linear, trigonal planar, tetrahedral, trigonal pyramidal, bent, trigonal bipyramidal, seesaw, T-shaped, octahedral, square pyramidal, square planar) molecular geometry. Draw the best Lewis structure using formal charge information. How many single...

  • olecular Geometry Saved Help Save & E Ch. Ex. 6 - Predict the Geometry Using VSEPR...

    olecular Geometry Saved Help Save & E Ch. Ex. 6 - Predict the Geometry Using VSEPR 2 attempts left Check my work Be sure to answer all parts. Report problem Hint Predict the geometry of the following molecules and ion using the VSEPR model. Enter the number corresponding to the correct geometry in the box next to the formula Electron Domain Molecular CHI 1 - bent 2 - linear 3-octahedral 4 - seesaw-shaped 5-square planar 6 - square pyramidal 7-tetrahedral...

ADVERTISEMENT
Free Homework Help App
Download From Google Play
Scan Your Homework
to Get Instant Free Answers
Need Online Homework Help?
Ask a Question
Get Answers For Free
Most questions answered within 3 hours.
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT