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Bound magnetic

Technologies to purify cells from white cell concentrates are in the research stage. Principles used include antibodies covalently bound to a surface, antibody-coated microbeads in a column, magnetic microparticles that have been coated with antibodies, and hoUow fibers that have been coated with antibodies. [Pg.524]

The bound states (where < 0) are characterized by the three quantum numbers n (the principal quantum number), I (the azimuthal quantum number) and mi (the magnetic quantum number). [Pg.155]

ADP consists of an adenosine group bound to two phosphates, while ATP is the same molecule with a third phosphate bound. The phosphate groups have negative charges and repel each other as two magnets would if their negative poles were placed close... [Pg.168]

It is an unfortunate fact that several preexisting theories have tried to explain complicated mechanical phenomena of CB-reinforced rubbery materials but they have not been so successful." " However, a recent report might have a capability of explaining them collectively," when the author accepted the existence of the component whose molecular mobility is different from that of matrix mbber component in addition to the existence of well-known bound rubber component. The report described that this new component might be the most important factor to determine the reinforcement. These mbber components have been verified by spin-spin relaxation time 2 by pulsed nuclear magnetic resonance (NMR) technique, ° while the information obtained by NMR is qualitative and averaged over the sample and, therefore, lacking in the spatial... [Pg.597]

The SELINCOR experiment is a selective ID inverse heteronuclear shift-correlation experiment i.e., ID H,C-COSYinverse experiment) (Berger, 1989). The last C pulse of the HMQC experiment is in this case substituted by a selective 90° Gaussian pulse. Thus the soft pulse is used for coherence transfer and not for excitation at the beginning of the sequence, as is usual for other pulse sequences. The BIRD pulse and the A-i delay are optimized to suppress protons bound to nuclei As is adjusted to correspond to the direct H,C couplings. The soft pulse at the end of the pulse sequence (Fig. 7.8) serves to transfer the heteronuclear double-quantum coherence into the antiphase magnetization of the protons attached to the selectively excited C nuclei. [Pg.371]

These high affinity sites determine most of the selectivity of the ion exchange. This is deduced from Fig. 6 in which the selectivity of the whole ion exchange (In Kn) is plotted as a function of g n, a magnetic parameter of cupric ions adsorbed on high affinity sites. This parameter is particularly sensitive to the degree of covalence of the bound between copper and its... [Pg.139]

Complexes of 2-formylquinoline and 1-formylisoquinoline thiosemicarbazones, 20 and 21, respectively, have been prepared, but iron(III) complexes were not included in the initial study [147], More recently [132], an iron(III) complex of 1-formylisoquinoline thiosemicarbazone, [Fe(21)Cl3] has been found to have a magnetic moment of about 2.1, g of 2.146, and involve the neutral ligand bound in a tridentate manner. A complex of the same stoichiometry was reported for 4-methyl-5-amino-1-formylisoquinoline thiosemicarbazone, 22. Its magnetic moment is about 2.1 and g, = 2.126. [Pg.18]


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Bound magnetic polaron

Bound magnetic polarons

Nuclear magnetic resonance spectroscopy of metal-bound polyenes

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