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1 resistivity data showed a nonlinear magnetic field dependence.
2 m temperature resistance, appears to lack MR field dependence.
3 ence of the Kondo resonance and its magnetic field dependence agree with a simple interpretation of t
4 single type of 15N-coupled nucleus from the field dependence, along with the absence of an associate
5 lains simultaneously the frequency (magnetic field) dependence and the angular anisotropy of the rela
6 l electric polarization, its strong magnetic field dependence, and the negative thermal expansion in
7 characteristic spin selectivity and magnetic field dependence, being the model also for more complica
11 pling constants (J(HN) and J(HH)) and of the field dependence in the formation of the observed (15)N
12 ncluding the effects of optical aberrations, field dependence in the imaging system, fluorophore labe
16 endence of free-carrier generation, and this field dependence is considerably weaker compared to that
19 Measurements of the temperature and magnetic field dependence of a Coulomb-blockaded dot show good ag
20 e measure the quantum yield and the electric field dependence of charge generation on excitation of t
21 he densities of donor states and predict the field dependence of charge transfer in excellent agreeme
23 lish a systematic framework for the magnetic field dependence of electrostatically gated quantum spin
24 sight into the effect of fluorination on the field dependence of free charge-carrier generation and r
25 T is shown to exhibit a significantly weaker field dependence of free charge-carrier generation combi
26 T with PC(70)BM is largely determined by the field dependence of free-carrier generation, and this fi
28 rom characteristic dispersion curves or from field dependence of ion mobility was experimentally demo
32 lectivity in response through differences in field dependence of mobility for ions in purified air at
33 nse, that the heterostructure shows magnetic field dependence of piezoelectricity due to the improved
34 lobal analysis of the temperature and static field dependence of R(ex)(1/tau(cp)) for Cys 14 and Lys
36 xtracted from (31)P relaxation rates and the field dependence of relaxation rates for several protons
40 orption data published earlier; the magnetic field dependence of the amplitude of this kinetic compon
41 r the measurement of RDCs using the magnetic-field dependence of the apparent one-bond 1H-15N J coupl
44 ce of defects, the intrinsic temperature and field dependence of the domain-wall velocity can be desc
48 ound in calcium-exchanged zeolites where the field dependence of the line width indicates a distribut
53 hertz was revealed by a peak in the magnetic field dependence of the proton spin-lattice relaxation r
54 e have extended measurements of the magnetic field dependence of the proton-spin-lattice-relaxation r
56 ed an anomalous and unprecedentedly observed field dependence of the relaxation time, which was model
57 ever, the voltage, temperature, and magnetic field dependence of the signals agree with predictions f
59 general study of the frequency and magnetic field dependence of the specific heat power produced dur
61 hoinositide (31)P linewidths and on the full field dependence of the spin-lattice relaxation rate (me
63 in-wave theory and conclude that the unusual field dependence of the transition temperature is a hall
65 experiments on the temperature and magnetic field dependences of AHE in insulating, strongly-disorde
66 om electrophoretic movement of DNA in the ac field, dependence of the DNA/membrane interaction on the
69 e extrapolation of the slope of the electric field dependence to zero electric field can be used to e
70 gnetic relaxation time shows a pronounced dc-field dependence, with a maximum occurring at approximat
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