The reaction for the synthesis of triphenylmethanol must be anhydrous because water can react with the reagents and interfere with the desired chemical reaction, leading to lower yields or undesired byproducts. Anhydrous conditions help ensure the reaction proceeds smoothly and efficiently.
The reverse reaction is endothermic and nonspontaneous.
H2+Br2-->2HBr
For the reaction to occur at room temperature, an external energy source must be provided to drive the reaction, and the reaction will absorb heat from the surroundings. The reaction is non-spontaneous because it does not occur naturally without intervention.
Anhydrous ammonia is a compound made of hydrogen and nitrogen that is commonly used as a fertilizer due to its high nitrogen content. It is stored and transported in liquid form but becomes a gas when released into the atmosphere. Anhydrous ammonia is highly toxic and must be handled with caution.
This means that in the process of forming polysaccharides, water molecules are removed as a result of the reaction between monosaccharide molecules. The monosaccharides combine through the removal of a hydroxyl group from one molecule and a hydrogen atom from another, creating a covalent bond between the two molecules to form a larger carbohydrate polymer.
The reverse reaction is endothermic and nonspontaneous.
H2+Br2-->2HBr
For the reaction to occur at room temperature, an external energy source must be provided to drive the reaction, and the reaction will absorb heat from the surroundings. The reaction is non-spontaneous because it does not occur naturally without intervention.
Anhydrous ammonia is a compound made of hydrogen and nitrogen that is commonly used as a fertilizer due to its high nitrogen content. It is stored and transported in liquid form but becomes a gas when released into the atmosphere. Anhydrous ammonia is highly toxic and must be handled with caution.
according to the law on inerta, the energy used to drive the synthesis of ATP must first go through sp3 hybridization. From there it is converted into a liquid and using stochimotry we determine the answer to be 3.
You must state the purpose of using MgSO4.
The reaction must change the chemical nature of reactants.
Grignard reactions must be carried out in an anhydrous environment in an anhydrous solvent (e.g. anhydrous ether). Why? Grignard reagents behave essentially as a carbanion, and are extremely reactive. Therefore they cannot be carried out while acidic hydrogens, or other positive reactive centers are present (carbonyl compounds such as acetone) in the reaction mixture because there is no way to stop the Grignard from reacting with these other compounds rather than the desired reactant. If phenylmagnesium bromide were prepared, and ANY water was present in the reaction mixture phenylmagnesium bromide would not hesitate to react with water--stealing one of its hydrogens. This hydrogen would therefore replace the attached --MgBr to form benzene.
The balanced chemical equation for the reaction Li + S -> Li2S requires a coefficient of 2 in front of Li and Li2S. Thus, the balanced equation is 2Li + S -> Li2S.
This means that in the process of forming polysaccharides, water molecules are removed as a result of the reaction between monosaccharide molecules. The monosaccharides combine through the removal of a hydroxyl group from one molecule and a hydrogen atom from another, creating a covalent bond between the two molecules to form a larger carbohydrate polymer.
O_H and H must be moved. Have a nice day! :P
To synthesize large biological molecules like proteins or DNA, you must remove water molecules in a process called dehydration synthesis. This reaction involves a condensation reaction where a hydroxyl group (-OH) and a hydrogen atom (-H) are removed to form a covalent bond between the molecules, resulting in the formation of a larger biomolecule.