Index to volume 25
- Book ID
- 104155124
- Publisher
- Elsevier Science
- Year
- 1969
- Tongue
- English
- Weight
- 215 KB
- Volume
- 25
- Category
- Article
- ISSN
- 0022-5193
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β¦ Synopsis
Index to Volume 25
Analysis of the field constant equation (Letter), 502 ANNOUNCEMENT, 505 Applicability of Goldman's constant field assumption to biological systems, 113 Bacterial cell, duplication of, and its initiation, 137 Binding of metal ions to macromolecules through an NMR spectrometric method of investigation, 317 Biochemical systems analysis. I. Some mathematical properties of the rate law for the component enzymatic reactions, 365 --. II. The steady-state solutions for an n-pool system using a powerlaw approximation, 370 Bioelectrochemical throttle of metabolism, 187 BLEECKEN, S., Duplication of the bacterial cell and its initiation, 137 BLIZZARD, A. C. & SArCrRv, D. P., Calculations of the electronic structure of the guanine-cytosine base pair: proton transfer in excited states 461 BOYD, D. B. & LrPscoMa, W. N., Electronic structure for energy-rich phosphates, 403 Calculations of the electronic structure of the guanine-cytosine base pair: proton transfer in excited states, 461 Cn_rNARD, F. P. (see P~RL, W.), 297 CNDO-2 calculations of the electronic structure of the guanine--cytosine base pair: proton transfer in excited states, 461 COHEN, M. H. (see GOODWrN, B. C.), 49 Collision lifetimes and recognition times for macromolecule synthesis (Letter), 339 Comment on "A generalized functional role for phospholipids" (Letter), 499 Computer simulation of a molluscan pigmentation pattern, 219 Computing ability of a developmental model for filamentous organisms, 421 Constant field assumption, Goldman's, applicability to biological systems, 113 --equations, on a6 analysis of (Letter), 502 COtJLSON, A. S., Recognition pathway in lymphocytes, 127 CowE, R. J. (see WADDtNGrON, C. H.), 219 Cytosine-guanine base pair, calculations of electronic structure: proton transfer in excited states, 461 DANCHIN, A., Binding of metal ions to macromolecules through an NMR spectrometric method of investigation, 317 DARVEY, I. G., Prediction of the form of steady-state rate equations from kinetic data, 109 Determination of rate constants and the number of intermediates in enzymecatalyzed reactions (Letter), 346 Developmental model for filamentous organisms, computing ability of, 421 Development of the nitrogen-fixing systems in legumes, 208 Developing system, a phase-shift model for spatial and temporal organization of, 49 5O9
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