To predict the most suitable method for the production of large quantities of hydrogen form the given methodes. Concept introduction: Hydrogen is a colorless gas and has a very low boiling point. It has very low atomic mass . Hydrogen is produced in vast quantities by various industrial methods, the majority of which is used for the preparation of ammonia by Haber’s process. It is also used in the manufacturing of methanol and other chemicals. The simplest way to generate hydrogen is through coal and steam. This is one of the oldest methods to synthesize hydrogen. The other methods to produce hydrogen are catalytic steam reformation of methane and electrolysis of water. Some of the laboratory methods to produce hydrogen are the reaction of metal with an acid, metal hydride with water or metal with water. The most commonly used laboratory method is the reaction of metal with an acid.
To predict the most suitable method for the production of large quantities of hydrogen form the given methodes. Concept introduction: Hydrogen is a colorless gas and has a very low boiling point. It has very low atomic mass . Hydrogen is produced in vast quantities by various industrial methods, the majority of which is used for the preparation of ammonia by Haber’s process. It is also used in the manufacturing of methanol and other chemicals. The simplest way to generate hydrogen is through coal and steam. This is one of the oldest methods to synthesize hydrogen. The other methods to produce hydrogen are catalytic steam reformation of methane and electrolysis of water. Some of the laboratory methods to produce hydrogen are the reaction of metal with an acid, metal hydride with water or metal with water. The most commonly used laboratory method is the reaction of metal with an acid.
Solution Summary: The author explains that the most suitable method for the production of large quantities of hydrogen is the high-temperature reaction of methane and water.
Interpretation: To predict the most suitable method for the production of large quantities of hydrogen form the given methodes.
Concept introduction: Hydrogen is a colorless gas and has a very low boiling point. It has very low atomic mass. Hydrogen is produced in vast quantities by various industrial methods, the majority of which is used for the preparation of ammonia by Haber’s process.
It is also used in the manufacturing of methanol and other chemicals.
The simplest way to generate hydrogen is through coal and steam. This is one of the oldest methods to synthesize hydrogen. The other methods to produce hydrogen are catalytic steam reformation of methane and electrolysis of water.
Some of the laboratory methods to produce hydrogen are the reaction of metal with an acid, metal hydride with water or metal with water. The most commonly used laboratory method is the reaction of metal with an acid.
For CARS, which statement is not true regarding its advantages?
a) Contrast signal based on vibrational characteristics, no need for fluorescent tagging.
b) Stronger signals than spontaneous Raman.
c) Suffers from fluorescence interference, because CARS signal is at high frequency.
d) Faster, more efficient imaging for real-time analysis.
e) Higher resolution than spontaneous Raman microscopy.
Draw the major product of the Claisen condensation reaction between two molecules of this ester. Ignore
inorganic byproducts.
Incorrect, 5 attempts remaining
1. NaOCH3/CH3OH
2. Acidic workup
Select to Draw
O
Incorrect, 5 attempts remaining
The total number of carbons in the parent chain is incorrect. Review the reaction conditions including starting materials and/or
intermediate structures and recount the number of carbon atoms in the parent chain of your structure.
OK