Close to impossible. Helium is about as inert as it gets. The only way there have been any reactions with carbon was to create miniscule geodesic spheres and force the helium atoms inside. These are commonly referred to as "bucky balls" after Buckminster Fuller who used geodesics in architecture, and more properly as buckminsterfullerene.
I have never heard of any reaction at all with potassium.
The balanced reaction between ethanol (C2H5OH) and potassium (K) is 2C2H5OH + 2K --> 2C2H5OK + H2. This reaction forms potassium ethoxide and hydrogen gas as products.
The chemical reaction is:2 K + I2 = 2 KI
The reaction is:Ag+ + (NO3)- + K + I- = AgI(s) + (NO3)- + K
The chemical formula for the compound formed by the reaction between potassium (K) and tetrachloropalladate(II) (PdCl4) is K2PdCl4.
To determine the rate constant k from a graph of reaction kinetics, you can use the slope of the line in a first-order reaction or the y-intercept in a second-order reaction. The rate constant k is typically calculated by analyzing the linear relationship between concentration and time in the reaction.
In the expression for the reaction rate, ( K ) represents the rate constant, which is a proportionality factor that quantifies the relationship between the concentration of reactants (in this case, ( a ), ( M ), and ( B )) and the rate of the reaction. The value of ( K ) is dependent on factors such as temperature and the specific reaction mechanism. It reflects the intrinsic properties of the reaction and is essential for predicting how the reaction rate changes with varying concentrations of reactants.
reaction rate doubles with every 10 K temperature change
In a zero-order reaction, the rate of the reaction is independent of the concentration of the reactants. The rate law for a zero-order reaction is rate k, where k is the rate constant. This means that the rate of the reaction is constant and does not change with the concentration of the reactants.
SynthesisWhenever 2 or more elements combine to form one compound, it is a synthesis reaction.
it helps make a chemecal reaction between fats and K hope i helped:)
The relationship between N (number of moles of solute) and K (equilibrium constant) can vary depending on the context of a chemical reaction. Generally, N is a measure of the amount of substance, while K quantifies the ratio of products to reactants at equilibrium for a given reaction at a specified temperature. In some cases, changes in N can affect the position of equilibrium, thus influencing K. However, K itself is a constant for a specific reaction at a given temperature, regardless of the amounts of reactants or products present.
I believe it is already balanced. No coefficients neccessary