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Outer ionization

In previous papers [10] we have shown how the degree of outer ionization of sulfur fluorides affects quasi-linearly sulfur core ionization energies. In the present paper we shall perform a thorough investigation of the dependences of XPS CIS s in simple fluorine compounds of the first three rows elements upon the electronegativity of the central atom relative to that of fluorine, through the amount of charge transferred to the bonded atoms. [Pg.58]

Radiation Dosimetry. Radioactive materials cause damage to tissue by the deposition of energy via their radioactive emissions. Thus, when they are internally deposited, all emissions are important. When external, only those emissions that are capable of penetrating the outer layer of skin pose an exposure threat. The biological effects of radiation exposure and dose are generally credited to the formation of free radicals in tissue as a result of the ionization produced (17). [Pg.482]

The photoelectron spectra of pyridazine have been interpreted on the basis of many-body Green s function calculations both for the outer and the inner valence region. The calculations confirm that ionization of the first n-electron occurs at lower energy than of the first TT-electron (79MI21201). A large number of bands in the photoelectron spectrum of 3,6-diphenylpyridazine in stretched polymer sheets have been assigned to transitions predicted... [Pg.8]

A somewhat related technique is that of laser ionization mass spectrometry (LIMS), also known as LIMA and LAMMA, where a single pulsed laser beam ablates material and simultaneously causes some ionization, analogous to samples beyond the outer surface and therefore is more of a bulk analysis technique it also has severe quantiBaction problems, often even more extreme than for SIMS. [Pg.561]

Fig. 2.36. Low-loss spectra of (A) (BN), and thickness determination, and (B) CaTiSiOs with outer-shell ionization edges. Fig. 2.36. Low-loss spectra of (A) (BN), and thickness determination, and (B) CaTiSiOs with outer-shell ionization edges.
C08-0003. The outer layers of the sun contain He atoms in various excited states. One excited state contains one 1 S electron and one 3 p electron. Based on the effectiveness of screening, estimate the ionization energy of the 3 p electron In this excited atom. [Pg.512]

What happens with the outer orbitals of an atom when it approaches a metal surface Discuss the role of the atom s ionization potential and electron affinity in relation to the work function of the metal for the strength of the eventual chemisorption bond. [Pg.408]

As a increases, the average distance between ionized groups decreases so that these neighbouring groups begin to have an effect. When a exceeds 0-3, individual water spheres begin to overlap and eventually coalesce into a cylindrical form. With further increases in a, a second outer cylindrical sheath of water appears in which water molecules are oriented by the cooperative effect of two or more carboxyl groups. [Pg.74]

In the case of electrodes with purely ionically conducting layers which are completely or almost completely nonporous, an electrochemical reaction is possible only at the inner surface of the layer (at the metal boundary). When condnction is cationic, an anodic current will cause metal ionization [and a cathodic current will cause metal ion discharge] at this boundary according to Eq. (16.1). Ions M + will migrate to (enter from) the layer s outer surface (the electrolyte boundary), where the reaction with the solution occurs for example. [Pg.303]


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See also in sourсe #XX -- [ Pg.58 ]




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