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The nuclear binding energy is proportional to the volume of the nuclide (B ∝ A).
In a particular magnet, the signal to noise ratio in an NMR experiment depends on the inherent sensitivity of the nuclide and the natural abundance of that nuclide.
The labeling with 18F (as a PET nuclide) of proteins is very limited due to a complex chemistry combined with a short half life of the nuclide (110 min).
The effective removal rate is the sum of the biological removal rate and the physical decay rate of the nuclide.
Recently, however, the nuclide 267Bh was discovered18 in the nuclear fusion reaction 249Bk(22Ne, 4n).
After that time the nuclide decays through electron emission to protactinium-233, whose half-life is 26.967 days.
The total number of protons and neutrons determine the nuclide.
The nuclide 257103 was originally reported, but then this was reassigned to 258103.
The nuclide is still used for stress tests for risk stratification in patients with coronary artery disease (CAD).
The nuclide's exact resonance frequency is established by its gyro-magnetic ratio, the magnet's field strength and modified by the electronic environment surrounding the nuclide.
Further, many of the nuclides remain radioactive in the environment for generations, and ultimately will cause increased incidences of cancer and genetic diseases over time.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com