the reaction of positive enviromental impact of tourism and negative
Means a increase or decrease in disorder in the reaction depending on the sign ( "-" or"+")
Both. One side of the equatioo loses energy and the other side gains it.
Negative, usually in this case you'd have to start that dossage over or do it again.
your logic is flawed. please be more specific or present a different relationship in which I can correlate.
Positive Reaction was created in 1987-10.
. The reaction will be spontaneous.
No, the free energy of a cell reaction is negative when the emf of the cell reaction is positive. This is because a positive emf indicates that the reaction is spontaneous and capable of performing work, resulting in a negative change in free energy.
An endergonic reaction is a reaction in which the change in Gibbs free energy is positive, indicating that the reaction requires an input of energy to proceed. This means that the products of the reaction have more free energy than the reactants.
Endothermic reaction: In an endothermic reaction, the products are higher in energy than the reactants. Therefore, the change in enthalpy is positive, and heat is absorbed from the surroundings by the reaction therefore enthalpy change show positive sign in a endothermic reaction..
Guys watch out the question, if your question end with positive then the answer will be An endothermic reaction that decreases in entropy. If the question end with negative then its An exothermic reaction that increases in entropy--APEX hope this help
The reaction is endothermic.
Yes, the product increases because positive catalysts increase the rate of the reaction.
No, Bacillus subtilis does not have a positive reaction for the ONPG test. This test is used to detect the presence of β-galactosidase enzyme, which is not produced by Bacillus subtilis.
yes
When H and S are both positive
The spontaneity of a reaction is determined by the sign of the Gibbs free energy (ΔG). If both enthalpy (H) and entropy (S) are positive, the reaction can be spontaneous at high temperatures where the TΔS term outweighs the positive ΔH term, resulting in a negative ΔG. This means the reaction will be spontaneous at elevated temperatures.