Its called hashing. An example of such process is MD5 and SHA. For more information look it up.
downward as they proceed from left to right across a graph
To desist - cease to proceed or act.
That depends on where you start and in what direction you proceed. If you list the prime factors in the order from smallest to largest, then the first two are 2 and 3, and their sum is 5.
Antonyms of proceed are wait, retreat, discontinue, stop, and yield.
Proceed is a verb because it means to continue
Traffic, a conveyor belt, a river current, and a moving walkway can proceed in the opposite direction.
from back to front
Thermodynamics. Specifically, the reaction will proceed in the direction that leads to a decrease in Gibbs free energy. If the Gibbs free energy change of the reaction is negative, it is more likely to proceed in the forward direction.
Vehicles at a 4-way stop intersection should proceed in the order they arrived, regardless of direction.
No, it is not true. Reactions can be reversible, meaning they can proceed in both directions depending on the conditions. If a reaction releases energy in one direction, it may require an input of energy to proceed in the opposite direction, but it can still occur.
Delta G tables provide information about the standard Gibbs free energy change for various chemical reactions at a specific temperature. This information can help determine the spontaneity and feasibility of a reaction, as well as the direction in which it will proceed.
The equilibrium constant (K) gives information about the extent of a chemical reaction at equilibrium. It indicates the ratio of products to reactants at equilibrium and can help predict the direction the reaction will proceed under certain conditions.
Proceed with caution.
Chemical reactions typically proceed in one direction because they involve the breaking and formation of chemical bonds, which cannot always be easily reversed. Factors such as thermodynamics, activation energy, and reaction equilibrium make it challenging to reverse a chemical reaction under normal conditions. Additionally, the presence of byproducts and changes in entropy can further complicate the reversal of a reaction.
The factors that determine whether a chemical reaction will proceed in an energetically favorable or unfavorable direction include the difference in energy between the reactants and products (enthalpy change), as well as the entropy change and temperature of the system. If the overall change in energy is negative (exothermic) and the increase in disorder (entropy) is positive, the reaction is likely to proceed in a favorable direction.
downward as they proceed from left to right across a graph
An irreversible reaction is a chemical reaction that proceeds in one direction only, meaning it cannot be easily reversed. In contrast, a reversible reaction is a chemical reaction that can proceed in both forward and reverse directions, reaching a state of equilibrium where the rates of the forward and reverse reactions are equal.