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(a)
Interpretation:
Whether the bonds are polar or not and bond angle of (chloroform) should be determined along with whether the molecule is whole polar or not.
Concept introduction:
- The bond is polar if there is a greater electronegativity difference between the two bonded atoms.
- The bond angle is dependent upon the molecular geometry of molecule.
- The molecule is polar if there are polar bonds present in them and the dipole of the bonds does not cancel each other or there is a net dipole moment associated with the molecule.
(b)
Interpretation:
Whether the bonds are polar or not and bond angle of (boron trichloride) should be determined along with whether the molecule is whole polar or not.
Concept introduction:
- The bond is polar if there is a greater electronegativity difference between the two bonded atoms.
- The bond angle is dependent upon the molecular geometry of molecule.
- The molecule is polar if there are polar bonds present in them and the dipole of the bonds does not cancel each other or there is a net dipole moment associated with the molecule.
(c)
Interpretation:
Whether the bonds are polar or not and bond angle of (carbon tetrafluoride) should be determined along with whether the molecule is whole polar or not.
Concept introduction:
- The bond is polar if there is a greater electronegativity difference between the two bonded atoms.
- The bond angle is dependent upon the molecular geometry of molecule.
- The molecule is polar if there are polar bonds present in them and the dipole of the bonds does not cancel each other or there is a net dipole moment associated with the molecule.
(d)
Interpretation:
Whether the bonds are polar or not and bond angle of (sulfur difluoride) should be determined along with whether the molecule is whole polar or not.
Concept introduction:
- The bond is polar if there is a greater electronegativity difference between the two bonded atoms.
- The bond angle is dependent upon the molecular geometry of molecule.
- The molecule is polar if there are polar bonds present in them and the dipole of the bonds does not cancel each other or there is a net dipole moment associated with the molecule.
(e)
Interpretation:
Whether the bonds are polar or not and bond angle of (Nitrogen triiodide) should be determined along with whether the molecule is whole polar or not.
Concept introduction:
- The bond is polar if there is a greater electronegativity difference between the two bonded atoms.
- The bond angle is dependent upon the molecular geometry of molecule.
- The molecule is polar if there are polar bonds present in them and the dipole of the bonds does not cancel each other or there is a net dipole moment associated with the molecule.
(f)
Interpretation:
Whether the bonds are polar or not and bond angle of (Dichlorodifluoromethane) should be determined along with whether the molecule is whole polar or not.
Concept introduction:
- The bond is polar if there is a greater electronegativity difference between the two bonded atoms.
- The bond angle is dependent upon the molecular geometry of molecule.
- The molecule is polar if there are polar bonds present in them and the dipole of the bonds does not cancel each other or there is a net dipole moment associated with the molecule.
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Chapter 4 Solutions
Chemistry For Changing Times (14th Edition)
- Drawing of 3-fluro-2methylphenolarrow_forwardWhich compound(s) will be fully deprotonated (>99%) by reaction with one molar equivalent of sodium hydroxide? I, II, III I, || I, III I only II, III SH | H3C-C=C-H || III NH2arrow_forwardWill NBS (and heat or light) work for this reaction, or do we have to use Br2?arrow_forward
- HAND DRAWarrow_forwardPredict the major products of the following organic reaction: Some important notes: Δ CN ? • Draw the major product, or products, of the reaction in the drawing area below. • If there aren't any products, because no reaction will take place, check the box below the drawing area instead. Be sure to use wedge and dash bonds when necessary, for example to distinguish between major products that are enantiomers. ONO reaction. Click and drag to start drawing a structure.arrow_forwardThe following product was made from diethyl ketone and what other reagent(s)? £ HO 10 2-pentyne 1-butyne and NaNH2 ☐ 1-propanol ☐ pyridine butanal ☐ pentanoatearrow_forward
- Which pair of reagents will form the given product? OH X + Y a. CH3 b. CH2CH3 ༧་་ C. CH3- CH2CH3 d.o6.(རི॰ e. CH3 OCH2CH3 -MgBr f. CH3-MgBr g. CH3CH2-MgBr -C-CH3 CH2CH3arrow_forwardQuestion 3 What best describes the product of the following reaction? 1. CH3CH2MgBr (2 eq) 2. H a new stereocenter will not be formed a new stereocenter will be formed an alkyl halide will result an alkane will result an aromatic compound will result 1 ptsarrow_forwardRank the following from most to least reactive toward nucleophilic attack. 1. [Select] [Select] 2. Acyl halide Aldehyde 3. Carboxylate ion 4. Carboxylic acid Ketone 5. [Select]arrow_forward
- Question 10 1 pts Which of the following is the most accurate nomenclature? 1-hydroxy-1-methyldecane-4,7-dione 2-hydroxy-2-methyldecane-5,8-dione 4,6-dioxo-2-methyldecane-2-ol 9-hydroxy-9-methyldecane-3,6-dione 8-hydroxy-8-methylnonane-3,6-dione OHarrow_forwardCould you please explain whether my thinking is correct or incorrect regarding how I solved it? Please point out any mistakes in detail, with illustrations if needed.arrow_forwardWhat are the most proper reagents to achieve these products? سد 1. 2. OH ○ 1. BrMgC6H6; 2. H+ ○ 1. BrMgCH2CH2CH2CH2CH3; 2. H+ O 1. CH3CH2CHO; 2. H+ O 1. BrMgCH2CH3; 2. H+arrow_forward
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