Sulfuric acid can cause condensation reactions to speed up.
Yes, a dehydration reaction joins smaller molecules by removing a water molecule. This process results in the formation of larger molecules and the release of a molecule of water as a byproduct.
The two processes necessary to build or separate macromolecules are dehydration synthesis and hydrolysis. Dehydration synthesis involves removing water molecules to bond monomers together and form a larger macromolecule. Hydrolysis involves adding water molecules to break down a macromolecule into individual monomers.
dehydration synthesis is when water is formed when combining two molecules. hydrolysis is adding water to make one molecule into two separate molecules.
Water molecules in water move by constantly vibrating and rotating due to thermal energy. They also move in a random fashion called Brownian motion, which is the result of collisions with other water molecules and particles in the water. The movement of water molecules is essential for processes like diffusion and convection to occur in water.
Hydrophobic molecules are water-fearing and tend to avoid interactions with water or other polar molecules. These molecules typically have nonpolar regions that make them incompatible with the polar nature of water, causing them to aggregate or form separate phases in aqueous solutions.
Yes, a dehydration reaction joins smaller molecules by removing a water molecule. This process results in the formation of larger molecules and the release of a molecule of water as a byproduct.
Cohesive bond
No, Hydrogen can only bond to one Oxygen.
polymers
water
No, dehydration synthesis joins monomers together to form a larger molecule by removing a water molecule. It is the opposite process of hydrolysis, which breaks down larger molecules into monomers by adding water.
Water molecules are joined together by hydrogen bonds, which form between the slightly negatively charged oxygen atom of one water molecule and the slightly positively charged hydrogen atom of another water molecule. This creates a network of interconnected water molecules, giving water its unique properties such as cohesion, high surface tension, and high specific heat capacity.
Oil molecules are nonpolar, so they will not mix with polar water molecules. This characteristic helps when removing oil from water using nets and floating barriers is that oil molecules won't mix with water molecules and the oil molecules float. Because oil floats on water, the oil can be skimmed off the top of the water.
The two processes necessary to build or separate macromolecules are dehydration synthesis and hydrolysis. Dehydration synthesis involves removing water molecules to bond monomers together and form a larger macromolecule. Hydrolysis involves adding water molecules to break down a macromolecule into individual monomers.
Oxidising - reducing reactions are important for the synthesis and breakdown of biological molecules?
dehydration synthesis
When you lower the temperature of water, you are removing thermal energy from the water. This causes the water molecules to slow down and come closer together, eventually leading to a phase change from liquid to solid if the temperature is lowered below the freezing point.