Calculate r+/r- in CsCl structure. Could this be solved using pythagorean theorem. Can someone show me how to solve this. Im trying to understand it.
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Calculate r+/r- in CsCl structure. Could this be solved using pythagorean theorem. Can someone show me how to solve this. Im trying to understand it.
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- sp O sp² sp³ sp³d sp³d² What is the hybridization on the C that the arrow is pointing? HO C H ი C OH I- H NH2According to the below Lewis structurerepresentation there are 2 π-electrons between C1and C2 and 2 π-electrons between C3 and C4.This is wrong according to the MO theory.Discuss and illustrate where the 4 π-electronsare actually most likely to be found. CH2 = CH - CH = CH21 2 3 4Directions: 1. Use a clean sheet of paper to answer this part. 2. Copy the table and fill up with the correct information. 3. Show the direction of the dipole moment for each molecule. Substance LEDS Shape Polarity 1. CC2F2 2. N2 3. CH4 4. Н2О 5. CO Polarity of molecules based on the LEDS
- 2. Draw to scale the energy level diagram for C₂. Draw the Lewis structure: What is the total number of valence electrons? What is the point group for this molecule? Draw the molecular orbital diagram for only the 2s and 2p valence orbitals. Label all of the atomic orbitals and molecular orbitals. Fill the orbitals with electrons. Label the HOMO and LUMO. Draw the shapes of the HOMO and LUMO molecular orbitals. What is the bond order?13) DO ANY 3 PLZ ASAP1. ionization of Cl2 (Cl2 —> Cl2+ + e-) leads to a shortening of the Cl-Cl distance (199 pm in Cl2, 189 pm in Cl2+), why? 2. why the C-O bond distance is nearly identical in CO (113 pm) and CO+ (112 pm)? 3. Derive the MO diagram of a linear C-H (i.e. one carbon atom bonded to one hydrogen atom). Draw out the MOs for orbitals containing electrons Would you expect C-H to behave as a carbocation, carbanion, or radical? Would removal of one electron from C-H to generate C-H+ increase or decrease the bond length between carbon and hydrogen?
- Part B Below are the molecular orbitals of benzene. Rank them in order of increasing energy based on the number of nodes. Consider that the blue color indicates one phase and the red color indicates the other phase of the orbital. Rank from lowest energy to highest energy. To rank items as equivalent, overlap them. ► View Available Hint(s) Lowest energy The correct ranking cannot be determined. Submit H B Reset Help Highest energyhi, can you solve this ? How many unbonded electrons are found around the nitrogen atom in the electron-point structure representation of the NH2 (-) ion?Please help me solve this, I think the first on is HBr but I am not sure about the second one.
- 1. The capsicum molecule is shown below, and one tetrahedral center has been identified. Re-draw or download the structure and use arrows to identify three other centers that have a different molecular geometry. Label each one with its molecular geometry. You must choose centers that all have different molecular geometry from each other, and you may NOT use another tetrahedral center.I know that the answer to this question is 60, but I am struggling to understand why. Could somebody please draw this out for me 3-dimensionally or explain to me in detail why this is the case? One explanation I've heard is that it is because when the dihedral angle between the two methyl groups is 60, the molecular dipole moment between the two chlorine atoms is the smallest, therefore the answer is 60. This explanation is meaningless to me - that does not even seem to be what the question is asking. Is it a poorly-worded question? i need good explanation4. Octatetraene, C8H10, is an 8-membered linear carbon chain with alternating single and double bonds. As a result, each carbon is left with an unhybridized p-orbital containing one electron. This problem will take you through steps to construct and fill the molecular orbital diagram for octatetraene based on the way these different p-orbitals can come together. a) The various molecular orbitals formed from octatetraene’s 8 unhybridized p-orbitals are shown on the next page. Draw the nodal planes for each molecular orbital. Hint: A nodal plane is a line through the molecule that denotes the sites of destructive interference. An example is shown below with ethylene. b) Based on the nodal planes, arrange the energy levels corresponding to the 8 molecular orbitals on the energy level diagram (label them using the numbering provided on the left side of the molecular orbitals) on the next page, in order of lowest to highest energy. c) Populate your molecular…