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The rest comes from the binding energy of the strong nuclear force.
The two electrons are then held together with a certain binding energy.
The graph above shows the binding energy of various elements.
The greater the mass defect, the larger the binding energy.
Binding Energy, a collection of his short stories, was published in 2008 to positive reviews.
These give predictions for the binding energy and lifetime of the states.
If this binding energy were retained in the system as heat, its mass would not decrease.
It also helps to predict the binding energy of the nucleus.
Results from the calculations can include the binding energy.
Their curious tension between self and other gave forth a binding energy.
You do not even dare to discuss a binding energy efficiency target.
The binding energy per nucleon increases with mass number up until nickel-62.
Our political group will not be able to accept the introduction of binding energy efficiency goals for the European system.
In particular, the binding energies of these interactions vary widely.
The following table lists some binding energies and mass defect values.
However, Planck was thinking about chemical reactions, where the binding energy is too small to measure.
The binding energy varies with the combination of the adsorbate and surface.
Thus a high oxidation state is associated with a high binding energy, as expected.
Calculation can be employed to determine the nuclear binding energy of nuclei.
Nickel-62 has the highest binding energy per nucleon of any isotope.
These nuclides are local maxima in terms of binding energy for a given mass number.
Binding energy is the work that is needed to split a system of many components into its parts.
When this happens the binding energy that binds the molecules of matter to each other no longer holds them together.
The binding energy related to the residual strong force is used in nuclear power and nuclear weapons.
For every element and core (atomic orbital) there will be a different binding energy.