Draw the structure of the bromohydrin formed when (Z)-2-hexene reacts with Br2/H2O. (Use the...
Question:
Draw the structure of the bromohydrin formed when (Z)-2-hexene reacts with Br2/H2O.
(Use the wedge/hash bond tools to indicate stereochemistry)
(Include H atoms at chiral centers only)
(if the reaction produces a racemic mixture, draw both steroisomers)
(separate multiple products using the +sign from the dropdown menu)
Racemic Mixture:
There can be difference in the rotation of the chiral carbon expressed in clockwise direction or anticlockwise direction in a polarised light. If in a reaction, both the products formed are enantiomers, then it is known as racemic mixture.
Answer and Explanation: 1
Become a Study.com member to unlock this answer! Create your account
View this answer
The addition reaction is between (Z)-2-hexene and Br/water. Attack of Br occurs in backside or front side. If the attack is from front, the Br will...
See full answer below.
Ask a question
Our experts can answer your tough homework and study questions.
Ask a question Ask a questionSearch Answers
Learn more about this topic:

from
Chapter 1 / Lesson 11Learn the definition of a racemic mixture and understand its biological significance. See racemic mixture examples and find their different applications.
Related to this Question
- Draw the structure of the bromohydrin formed when (E)-2-hexene reacts with Br2/H2O. Use the wedge/hash bond tools to indicate stereochemistry. Include H atoms at chiral centers only. If the reacti
- Draw the product you expect from the reaction of (R)-2-bromooctane with CH_3CO_2^-. - Use the wedge/hash bond tools to indicate stereochemistry. - Include H atoms at chiral centers only. - If a grou
- Draw the product of the Diels-Alder reaction of the following diene with trans-HO_2C-CH=CH-CO_2H Use the wedge hash bond tools to indicate stereochemistry. Include H atoms at chiral centers only. If a
- Draw the product you expect from the reaction of (R)-2 bromooctane with CH_3CO_2 Use the wedge/hash bond tools to indicate stereochemistry Include H atoms at chiral centers only. If a group is achi
- Draw the mirror image of this molecule. Use the wedge hash bond tools to indicate stereochemistry. Include H atoms at chiral centers only. Use the "flat" representation of rings in your drawing.
- Draw structures for the carbonyl electrophile and enolate nucleophile that react to give the aldol or enone below Use the wedge/hash bond tools to indicate stereochemistry. Draw the enolate ion in it
- Draw the structure(s) of the cis-cycloalkanes with the chemical formula C_6H_12 that contain a 4-membered ring. Use the wedge/hash bond tools to indicate stereochemistry. Show stereochemistry in a mes
- Draw the structure of the enantiomer of Mannose Use the wedge-hash bond tools to indicate stereochemistry
- Draw the structure of the bromohydrin formed when (E)-3-hexene reacts with Br_2/H_2O. If the reaction produces a racemic mixture, draw both stereoisomers.
- Draw a tetrahedral representation of the (2S, 4S) enantiomer of 2-bromo-4-ehlorohexane. Use the wedge/hash bond tools to indicate stereochemistry. Show stereochemistry in a meso compound.
- (b) Draw the skeletal structures for both enantiomers (that means you have to show wedge/dash bond(s)) formed when (Z)-3-methyl-2-pentene reacts with Br2 in the presence of water. (c) Draw the skelet
- Draw the major organic product of the following reaction. Be sure to draw both the wedge and hash bonds per stereocenter to fully convey the stereochemistry.
- Draw the mirror image of the following molecule. Use the wedge/hash bond to indicate stereochemistry. Include H atoms at chiral centers only. Use the 'flat' representation of rings in your dra
- Draw the major organic product for the following reaction. Be sure to clearly show chirality in the product by drawing one wedge and one hashed bond and two in-plane bonds per stereocenter.
- Draw the structure of (2S,3Z)-2-fluoro-3-hexene. Use bold or hashed wedges to indicate the configuration at stereogenic sp3 C atoms. To indicate the stereochemistry about double bonds, place the group
- Draw the structure(s) of the major organic product(s) of the following reaction. - You do not have to consider stereochemistry. - You do not have to explicitly draw H atoms. - Do not include lone p
- Draw the structure of the product of this reaction. Use the wedge/hash bond to indicate stereochemistry. If there are alternative structures, draw the most stable one. If no reaction occurs, draw the
- Draw the major product for the following reaction, showing the stereochemistry by using wedge bonds. The product will be racemic but show only one enantiomer. (A hydrogen atom on a chirality center mu
- Draw 3-isopropyl-2-hexane Draw the structure of (E)-3 isopropyl 2-hexene. Consider E/Z stereochemistry of alkenes. You do not have to explicitly draw H atoms.
- Draw a planar structure for the following compound using dashed or solid wedges to show the stereochemistry groups. Include the hydrogen atoms on the chirality centers (asymmetric carbons).
- Draw the structure of the bromohydrin formed when (E)-3-hexene reacts with Br2/H2O.
- Draw the structure of the product formed when HBr reacts with 2-methyl-2-butene in the presence of organic peroxides. When drawing hydrogen atoms on a carbon atom, either include all hydrogen atoms or
- Draw the structure of the bromohydrin formed when (Z)-3-methyl-3-hexene reacts with Br2/H2O.
- Draw the structure of the bromohydrin formed when (Z)-3-methyl-3-hexene react with Br_2/H_2O.
- Draw the structure of the carbocation intermediate that leads to the indicated products in this reaction. You do not have to consider stereochemistry. You do not have to explicitly draw H atoms. In ca
- Draw the major organic products for this reaction. Show stereochemistry in your structures. Do not draw lone pairs. What kind of stereochemical relationship do the products have? a) Enantiomers b) D
- Draw the final organic product of this series of reactions. You do not have to consider stereochemistry. You do not have to explicitly draw H atoms. Do not include lone pairs in your answer. Do no
- Draw the structure(s) of all of the alkene isomers, C6H12, that contain a methylene group. Consider E/Z stereochemistry of alkenes.
- Draw the structure(s) of all the alkene isomers, C_6H_12, that contain a methylene group. Consider E/Z stereochemistry of alkenes.
- Draw the skeletal structure of the major organic product of the following reaction. (All hydrogen atoms are implied. If a chiral carbon atom is attached to a hydrogen atom, you should not show the hyd
- Draw a structural formula for the major organic anion formed when butanal is reacted with Tollens' reagent. You do not have to consider stereochemistry. You do not have to explicitly draw H atoms.
- Draw the structure for cis-2, 3-dibromo-2-hexene. Draw all hydrogen atoms explicitly. To indicate proper stereochemistry, draw all bonds clearly above or below the double bond.
- Draw the structure(s) of all of the alkene isomers, C_6 H_12, that contain a methylene group. Consider E/Z stereochemistry of alkenes. Draw one structure per sketcher. Add additional sketchers using
- Draw one planar structure each for the following compounds using dashed or solid wedges to show the stereochemistry of the substituent groups. Include the hydrogen atoms on the centers (asymmetric car
- Draw the major organic product of the following reaction. You do not have to consider stereochemistry. You do not have to explicitly draw H atoms.
- Write the organic product(s) of (Z)-2-pentene and bromine in carbon tetrachloride. If two stereoisomers are formed, draw both. Based on your drawings, are stereoisomers formed?
- Draw the organic product of the following reaction. You do not have to consider stereochemistry. You do not have to explicitly draw H atoms.
- 1. Draw an unambiguous structural formula for the major product of a Diels-Alder reaction between (Z)-2-pentenenitrile with (1E,3E)-1-dimethylamino-1,3-pentadiene. Is the product chiral? Is it optical
- Draw the structure(s) of all of the alkene isomers, C_6 H_12, that contain an unbranched chain and that have E/Z isomers. Consider E/Z stereochemistry of alkenes. Draw one structure per sketcher. Ad
- 1) Draw structures for the carbonyl electrophile and enolate nucleophile that react to give the enone below. You do not have to consider stereochemistry. Draw the enolate ion in its carbanion form.
- Draw the product of the following reaction. Show hydrogens on stereogenic centers and indicate stereochemistry as needed with dashes and wedges.
- Draw the organic product(s) you would expect from the following reaction. You do not have to consider stereochemistry. You do not have to explicitly draw H atoms.
- Draw the major organic product of the reaction shown below. H2S04 You do not have to consider stereochemistry . You do not have to explicitly draw H atoms. In cases where there is more than one answer
- Draw the structure for an alkene that gives the following reaction product. In cases where there is more than one answer just draw one. Ignore alkene stereochemistry.
- Draw a structural formula for the Beta-ketoester formed by Claisen condensation of ethyl butanoate with the following ester. Assume a 1:1 stoichiometry. - You do not have to consider stereochemistry -
- Draw the major organic product from reaction of 2-butyne with Li in NH_3. Consider E/Z stereochemistry of alkenes. In cases where there is more than one answer, just draw one. Do not draw inorganic
- Draw the product formed when the following compound undergoes an intramolecular Heck reaction. Indicate the stereochemistry at all double bonds and tetrahedral stereogenic centers.
- Draw the organic product of the reaction of 1-butene with Hg(O Ac)_2, H_2O. In your answer draw the expanded structure for lie acetate group (Ac) You do not have to consider stereochemistry. In case
- Draw the structural formula of the following hydrocarbons. a. chlorobenzene. b. 4-methyl-2-hexene. c. n-octane. d. For each answer (a-c), indicate if the molecule is saturated or unsaturated.
- Draw the structure and assign Z or E stereochemistry to the product you expect from the E2 reaction of the following molecule with NaOH (green = Cl).
- Draw a structural formula for the major organic product of the reaction shown below. Consider E/Z stereochemistry of alkenes. Do not show stereochemistry in other cases. You do not have to explici
- Draw the structure(s) of the carboxylic esters with the molecular formula C_5H_10O_2 that contain a 4-carbon chain. You do not have to consider stereochemistry. Draw one structure per sketcher. Add
- Draw a structural formula for the p-ketoester formed by Claisen condensation of ethyl butanoate with the following ester. Assume a 1:1 stoichiometry. You do not have to consider stereochemistry. If mo
- Draw all of the alkenes with molecular formula of C_5H_10 that have different cistrans configurations about the double bond. Be sure to include all bonds on sp^2 hybridized carbons.
- Draw the correct mechanism for each reaction below. Make sure to include formal charges and lone pairs in your mechanisms. When drawing OH or NH2, do NOT draw the H with a separate bond from the oxyge
- Draw the alkene structure that produced the following compounds in a ozonolysis reaction as specified.
- Draw the mechanism of the following reaction. Include lone pairs and formal charges. Do not explicitly draw any hydrogen atoms:
- Draw all stereoisomers of 3-hexene. Position the groups attached to the double bond (120� degree bond angles) to indicate the stereochemistry. Don't use bold wedges, hashed wedges, or squiggly or cris
- Draw the structures of the two carbocation intermediates that might form during the reaction of the alkene (below) with HCl. You do not have to consider stereochemistry Do not include counter-ions, e
- Draw the structure of the product formed when benzene reacts with ethene.
- Draw both resonance structures of the most stable carbocation intermediate in the reaction shown. You do not have to consider stereochemistry.
- Draw the structure of the given molecule. Take particular care to indicate stereochemistry properly: (3R,4S)-3,4-dimethylhexane and its enantiomer
- Draw the final organic product of this series of reactions. You do not have to consider stereochemistry. You do not have to explicitly draw H atoms. Do not include lone pairs in your answer. Do not d
- Draw structures for the following molecules, showing lone pairs: (a) Acrylonitrile, C_3H_3N, which contains a carbon-carbon double bond and a carbon-nitrogen triple bond. (b) Ethyl methyl ether, C_3H_8O, which contains an oxygen atom bonded to two carbons
- Draw the structure(s) of all of the branched alkene isomers, C6H12, that contain 2 methyl branches. Consider E/Z stereochemistry of alkenes. Draw one structure per sketcher. Add additional sketchers
- Draw the major organic product of the reaction below. If stereochemistry is present, clearly show stereochemistry by drawing in the wedged and dashed bonds.
- Draw the major organic product of the reaction below. If stereochemistry is present, clearly show stereochemistry by drawing the wedged and dashed bonds.
- Draw the structures of the following compounds by correctly representing the indicated stereochemistry a. Z-3-phenyl-2-hexene b. (S)-2-chloropentane c. Z-1-bromo-1-chloro-1-pentene d. (S)-3-chloroc
- Draw structures for the carbonyl electrophile and enolate nucleophile that react to give the aldol or enone below. 3-(2-methylpropyl)cyclohex-2-en-1-one
- Draw the structure of the acyclic alkane(s) that have 6 or fewer carbons and 12 primary hydrogens. You do not have to consider stereochemistry If more than one structure fits the description, draw t
- Draw the expected thermodynamic product formed from the addition of one mole of Br_2 to the following diene. You do not have to consider stereochemistry. You do not have to explicitly draw H atoms.
- Draw the structures of the alkene reactants that would be used for the following reactions.
- Draw the alkenes Draw all of the alkenes with molecular formula of C_5H_10 that have different cis/trans configurations about the double band. Be sure to include all bonds on sp^2 hybridized carbons.
- Draw the following compound. Be sure to specify the stereochemistry via wedge-and-dash bonds. (S)-1-chloro-2-propanol
- A. Draw all of the resonance structures that result when an allylic hydrogen is abstracted from one of the methyl carbons of (2E,4E)-hexa-2,4-diene. Input the radical lone electrons. B. Draw all of t
- Draw all stereoisomers of 2-pentene. Position the groups attached to the double bond (120 bond angles) to indicate the stereochemistry. Don't use bold wedges, hashed wedges, or squiggly or criss-cros
- Write structures for the carbonyl electrophile and enolate nucleophile that react to give the aldol below. You do not have to consider stereochemistry. Draw the enolate nucleophile in its carbanion fo
- Draw the overall reaction for the bromination of cis-stilbene. Chemical structures, not formulas must be used. Do not show any stereochemistry in the product.
- Draw all stereoisomers of 2,4-hexadiene. Position the groups attached to the double bond (120� bond angles) to indicate the stereochemistry. Don't use bold wedges, hashed wedges, or squiggly or criss-
- Draw a planar structure for the following compound using dashed or solid wedges to show the stereochemistry of the substituent groups. To be graded properly, include the hydrogen atoms on the chiralit
- Draw a structural formula for the intermediate in the following reaction: You do not have to consider stereochemistry. You do not have to explicitly draw H atoms. Do not include counter-ions, e.g.,
- Draw the structures of the major and minor organic products formed when HBr reacts with 2, 4, 4-trimethyl-2-pentene in the presence of peroxides. When drawing hydrogen atoms on a carbon atom, either
- Draw all the stereoisomers for the following compound, assign the E/Z geometric configuration around each double bond, and find the relationship between these stereoisomers.
- Draw the product of the reaction between 2-pentanol and K2CT2O7, H2SO4, H2O. heat. a.You do not have to consider stereochemistry. b.You do not have to explicitly draw H atoms. c.Do not include coun
- Draw the structure of the major organic product formed by 1, 4-addition of HCl to 3-methylenecyclopentene. You do not have to consider stereochemistry. You do not have to explicitly draw H atoms. D
- Draw the structure of the given molecule. Take particular care to indicate stereochemistry properly: (R)-3-methylhexane and its enantiomer
- Draw the structure of the given molecule. Take particular care to indicate stereochemistry properly: (2S3S,43)-2,3,4-trichloroheptane and its enantiomer
- Draw the mechanism for the following reaction. Include lone pairs and formal charges in your answer. Do not explicitly draw out any hydrogen atoms in this step of the mechanism.
- Draw the structure of the ester produced when the following pairs of carboxylic acid and alcohol react. Methanoic acid and 1-propanol.
- Draw a structural formula for the most stable of the two carbocation intermediates that could form when the following react You do not have to consider stereochemistry. If there are two equally stabl
- Draw the structure(s) of the carboxylic acids with the molecular formula C_5H_10O_2 that do not contain a 5-carbon chain. You do not have to consider stereochemistry. Draw one structure per sketcher
- Draw the structure(s) of the alkene(s) with the molecular formula C6H12 that have two methyl branches on the same carbon. Consider EZ stereochemistry of alkenes. Draw all structures that fit the descr
- Draw the organic product of the following reactions. Be sure to draw your answer a s a line drawing. Don't forget to include the structure of the Ts group. Indicate the stereochemistry at any stereoge
- 1. Draw the alkyne you would start with to synthesize pentane 2. Draw the alkyne you would start with to synthesize cis-2-butene. 3. Draw the alkyne you would start with to synthesize 1-hexene.
- Draw the major organic product of the following reaction. When drawing hydrogen atoms on a carbon atom, either include all hydrogen atoms or none on that carbon atom, or your structure may be marked i
- Draw (S)-2,4-dibromo-(E)-2-pentene. Be sure to clearly depict the geometric isometric and stereochemistry by adding all bonds to stereocenters.
- Draw the structure of the given molecule. Take particular care to indicate stereochemistry properly: (3S,4R)-3-bromo-4-chlorohexane and its enantiomer
- Draw the structure(s) of the alkene, CH_4, with the molecular formula C_6H_12 that have a single methyl branch and that show E/Z isomerism. Draw a separate sketch for each structure.
- Draw the structure of the aldehyde or ketone that reacts with acetylide ion to give this alkynol. You do not have to consider stereochemistry. You do not have to explicitly draw H atoms. In cases whe
- Draw all stereoisomers of 2,3,4-tribromopentane. You should find two meso structures and one pair of enantiomers. Use bold and hashed wedges to show the stereochemistry.