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Partial resolution of the enzymes catalyzing oxidative phosphorylation. 18. The masking of adenosine triphosphatase in submitochondrial particles and its reactivation by phospholipids.
  • B. Bulos, E. Racker
  • Medicine, Chemistry
    The Journal of biological chemistry
  • 25 July 1968
It appears that, like rutamycin sensitivity, the masking of the ATPase activity is dependent on two factors: one in the particles, the other in Fc.
The results obtained in both laboratories support the proposed shuttle mechanism as do the kinetic studies on beef heart glutamic-alanine transaminase reported herein.
Azo dyes interactions with surfactants. Determination of the critical micelle concentration from acid–base equilibrium
The critical micelle concentrations (CMC) for three surfactants, CTAB, TX-100 and SDS, were determined from the shift in the ionization equilibrium of two optical probes, methyl orange (MO) and acid
Determination of Optical Properties of Undoped Amorphous Selenium (a-Se) Films by Dielectric Modeling of Their Normal-Incidence Transmittance Spectra
Normal-incidence specular transmittance T_exp (?) of undoped amorphous selenium ( a -Se) films of several thicknesses (0.25-1 ?m) thermally evaporated on thick microscopic glass-slide substrates
Retrieval of optical constants of undoped amorphous selenium films from an analysis of their normal-incidence transmittance spectra using numeric PUMA method
The as-measured room-temperature normal-incidence transmittance–wavelength (Texp(λ) − λ) spectra of undoped amorphous selenium (a-Se) films, which were thermally deposited onto glass slides, exhibit
Evaluation of spectral dispersion of optical constants of a-Se films from their normal-incidence transmittance spectra using Swanepoel algebraic envelope approach
Spectral dispersions of index of refraction $${n(\lambda )}$$n(λ) and extinction coefficient $${\kappa (\lambda )}$$κ(λ) of undoped amorphous selenium (a-Se) films of three thicknesses (d ≈ 0.5,
Electrical Transport Mechanisms and Photoconduction in Undoped Crystalline Flash-Evaporated Lead Iodide Thin Films
The flash-evaporation technique was utilized to fabricate undoped 1.35-μm and 1.2-μm thick lead iodide films at substrate temperatures $$ T_{\rm{s}} = 150 $$Ts=150°C and 200°C, respectively. The
Calorimetric determination of enthalpies for the proton ionization of N,N-bis[2-hydroxyethyl]-2-aminoethanesulfonic acid (BES) and N-tris[hydroxymethyl]methyl-2-aminoethanesulfonic acid (TES) in
Abstract The enthalpies of proton ionization of the biochemical buffers N , N -bis[2-hydroxyethyl]-2-aminoethanesulfonic acid (BES) and N -tris[hydroxymethyl]methyl-2-aminoethanesulfonic acid (TES)