enzyme
The term is "inert." Inert substances do not react chemically with other substances.
Biochemical reactions in the body must occur in a specific order and under controlled conditions in order to maintain the body's functions. Enzymes play a critical role in facilitating these reactions by speeding up their rate without being consumed in the process. Any disruption in the sequence of biochemical reactions or the conditions they occur in can lead to dysfunction and potential health issues.
its Atomic Mass.
Glucose and starch do not react together chemically. However, enzymes such as amylase can break down starch into glucose through a process called hydrolysis. This allows the glucose to be used for energy production in the body.
If reactants are removed from a cell, the chemical reactions that depend on those reactants will slow down or cease. The cell may not be able to produce certain essential molecules or carry out specific metabolic processes, which can lead to disruption in its functioning.
no
No. A key characteristic of mixtures is that the components making up the mixture do not chemically react with one another.
Two or more substances which can chemically react form new chemicals after the reaction.1. If these chemicals react they form new compounds.2. Without a chemical reaction they form a mixture.Read more: What_is_two_or_more_substance_are_combined
No, water and diamonds do not react chemically at all.
When two elements chemically react, the mass of the product is equal to the sum of the two masses of the two elements.
cannot answer without more info.
Rainwater.
Yes
Chemically stable refers to a substance that does not easily undergo a chemical reaction, while chemically unstable means a substance is reactive and likely to undergo a chemical reaction. Stability is influenced by factors such as bond strength and molecular structure.
The term is "inert." Inert substances do not react chemically with other substances.
Argon is chemically inert. It does not react with water.
Iron and magnesium oxide can react chemically to form iron(II) oxide and magnesium metal. The reaction occurs when iron is heated with magnesium oxide in a high temperature environment, leading to the transfer of oxygen from magnesium oxide to iron.