Kenneth Stewart Cole
#17,804
Most Influential Person Across History
American biophysicist
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Physics
Kenneth Stewart Cole's Degrees
- PhD Physics University of California, Berkeley
- Bachelors Physics University of California, Berkeley
Why Is Kenneth Stewart Cole Influential?
(Suggest an Edit or Addition)According to Wikipedia, Kenneth Stewart Cole was an American biophysicist described by his peers as "a pioneer in the application of physical science to biology". Cole was awarded the National Medal of Science in 1967. Biography He was born on July 10, 1900, in Ithaca, New York, to Charles Nelson Cole, an instructor in Latin at Cornell University and Mabel Stewart. Kenneth had a younger brother, , with whom he remained very close throughout his life despite a large difference in age; they were joint authors of four papers published between 1936 and 1942.
Kenneth Stewart Cole's Published Works
Number of citations in a given year to any of this author's works
Total number of citations to an author for the works they published in a given year. This highlights publication of the most important work(s) by the author
Published Works
- Dispersion and Absorption in Dielectrics I. Alternating Current Characteristics (1941) (7998)
- Dispersion and Absorption in Dielectrics II. Direct Current Characteristics (1942) (729)
- ELECTRIC IMPEDANCE OF THE SQUID GIANT AXON DURING ACTIVITY (1939) (530)
- PERMEABILITY AND IMPERMEABILITY OF CELL MEMBRANES FOR IONS (1940) (388)
- Potassium ion current in the squid giant axon: dynamic characteristic. (1960) (374)
- Membrane resting and action potentials from the squid giant axon (1942) (232)
- ELECTRIC CONDUCTANCE OF BIOLOGICAL SYSTEMS (1933) (219)
- Life, Electricity, and the Relations between Them. (Book Reviews: Membranes, Ions and Impulses. A Chapter of Classical Biophysics) (1968) (195)
- ELECTRIC IMPEDANCE OF SUSPENSIONS OF SPHERES (1928) (193)
- ELECTRIC PHASE ANGLE OF CELL MEMBRANES (1932) (158)
- Ionic Current Measurements in the Squid Giant Axon Membrane (1960) (156)
- MEMBRANE AND PROTOPLASM RESISTANCE IN THE SQUID GIANT AXON (1939) (153)
- Surface forces of the Arbacia egg (1932) (140)
- ELECTRIC IMPEDANCE OF NITELLA DURING ACTIVITY (1938) (138)
- RECTIFICATION AND INDUCTANCE IN THE SQUID GIANT AXON (1941) (137)
- MEMBRANE POTENTIAL OF THE SQUID GIANT AXON DURING CURRENT FLOW (1941) (121)
- LONGITUDINAL IMPEDANCE OF THE SQUID GIANT AXON (1941) (111)
- TRANSVERSE ELECTRIC IMPEDANCE OF THE SQUID GIANT AXON (1938) (108)
- Membrane action potentials from the squid giant axon (1940) (94)
- Automatic Computation of Nerve Excitation (1955) (93)
- CHAPTER 5 – VOLTAGE CLAMP TECHNIQUES* (1963) (89)
- Analysis of certain errors in squid axon voltage clamp measurements. (1960) (89)
- ELECTRODIFFUSION MODELS FOR THE MEMBRANE OF SQUID GIANT AXON. (1965) (87)
- Electrical analogues for tissues. (1969) (85)
- Electric Impedance of Marine Egg Membranes (1938) (74)
- Theoretical stability properties of a space-clamped axon. (1962) (72)
- ELECTRIC IMPEDANCE OF NERVE AND MUSCLE (1936) (72)
- Electric impedance and phase angle of muscle in rigor (1935) (67)
- TRANSVERSE IMPEDANCE OF THE SQUID GIANT AXON DURING CURRENT FLOW (1941) (58)
- Nerve membrane excitation without threshold. (1970) (58)
- Some physical aspects of bioelectric phenomena. (1949) (54)
- ELECTRIC IMPEDANCE OF SUSPENSIONS OF ARBACIA EGGS (1928) (53)
- Liquid Junction and Membrane Potentials of the Squid Giant Axon (1960) (50)
- TRANSVERSE ELECTRIC IMPEDANCE OF NITELLA (1937) (45)
- ELECTRIC IMPEDANCE OF HIPPONOË EGGS (1935) (43)
- Resting and Action Potentials of the Squid Giant Axon in Vivo (1960) (42)
- Zeta potential and discrete vs. uniform surface charges. (1969) (42)
- ELECTRIC IMPEDANCE OF ASTERIAS EGGS (1936) (33)
- JET PROPULSION OF SQUID (1970) (31)
- ALTERNATING CURRENT CONDUCTANCE AND DIRECT CURRENT EXCITATION OF NERVE. (1934) (31)
- Electrical Impedance of Nerve During Activity (1938) (30)
- Platinized Silver Chloride Electrode (1962) (28)
- ELECTRIC IMPEDANCE OF SINGLE MARINE EGGS (1938) (28)
- Resistivity of axoplasm. I. Resistivity of extruded squid axoplasm (1975) (27)
- ELECTRIC IMPEDANCE OF ARBACIA EGGS (1936) (26)
- Thermistor Thermometer Bridge: Linearity and Sensitivity for a Range of Temperature (1957) (26)
- Surface forces of fertilized Arbacia eggs (1932) (25)
- Wheatstone Bridge and Electrolytic Resistor for Impedance Measurements Over a Wide Frequency Range (1937) (25)
- ELECTRIC IMPEDANCE OF THE FROG EGG (1942) (23)
- Electrical properties of the squid axon sheath. (1976) (21)
- The advance of electrical models for cells and axons. (1962) (19)
- Voltage and current clamp transients with membrane dielectric loss. (1973) (18)
- ELECTRIC IMPEDANCE OF FERTILIZED ARBACIA EGG SUSPENSIONS (1938) (17)
- Non-Linear Current-Potential Relations in an Axon Membrane (1961) (17)
- Potentials in Embryo Rat Heart Muscle Cultures (1934) (16)
- HEAT PRODUCTION BY THE EGGS OF ARBACIA PUNCTULATA DURING FERTILIZATION AND EARLY CLEAVAGE (1925) (15)
- IMPEDANCE OF BIMOLECULAR FILMS. (1940) (14)
- THEORETICAL POTASSIUM LOSS FROM SQUID AXONS AS A FUNCTION OF TEMPERATURE. (1964) (13)
- Squid axon membrane: impedance decrease to voltage clamp. (1982) (11)
- An analysis of the membrane potential along a clamped squid axon. (1961) (8)
- Direct Computation of Depth Intensity (1932) (8)
- Electro-Ionics of Nerve Action (1956) (8)
- ELECTRIC EXCITATION IN NERVE (1933) (8)
- Analogue solution for electrical capacity of membrane-covered cubes in cubic array at high concentration. (1976) (8)
- Neuromembranes: Paths of Ions (1992) (7)
- The Blackening of Photographic Emulsions by Low Speed Electrons (1926) (7)
- Membrane excitation of the Hodgkin-Huxley axon; preliminary corrections. (1958) (7)
- DISAPPEARANCE CURVES OF THE DYE T-1824 AFTER ITS INJECTION INTO THE BLOOD STREAM (1943) (7)
- Automatic Computation of Nerve Excitation, Correction (1958) (6)
- The nature and permeability of grasshopper egg membranes. IV. The alternating current impedance over a wide frequency range (1937) (5)
- Biological effects of radiation : mechanism and measurement of radiation, applications in biology, photochemical reactions, effects of radiant energy on organisms and organic products (1936) (4)
- Electrical Rectification in Single Nerve Fibers (1941) (4)
- BEYOND MEMBRANE POTENTIALS (1957) (4)
- A Theory of Surface Conductance at an Electrolyte‐Solid Interface (1932) (4)
- Digital operations can be deceptive. Squid giant axon membrane. (1980) (3)
- Analogue solution for electrical capacity of membrane covered square cylinders in square array at high concentration. (1975) (3)
- Membrane Watching (1968) (2)
- Mostly membranes (Kenneth S. Cole). (1979) (2)
- THE MELDING OF MEMBRANE MODELS * (1966) (2)
- Samuel A. Talbot, 1903-1967. (1967) (2)
- A NEW TYPE OF ELECTRON SPECTROGRAPH. (1926) (1)
- A FLEXURE BALANCE (1932) (1)
- A Theory and Use of the Bumstead Electroscope (1)
- DISCUSSION: PART I (1957) (0)
- OPENING REMARKS * (1977) (0)
- The Biophysical Approach to Excitable Systems: A Volume in Honor of Kenneth S. Cole on His 80th Birthday (1981) (0)
- Letter: Dielectric loss transients. (1974) (0)
- INTRODUCTION TO PART I (1957) (0)
- Biological effects of radiation (1936) (0)
- Membrane watching. (1968) (0)
- On the measurement of series resistance in giant axon preparations (1975) (0)
- H.B. Williams, physician and physiologist. (1956) (0)
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