An Introduction to BiophysicsJ. & A. Churchill, 1921 - 435 Seiten |
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Seite ix
... DISPERSE SYSTEMS 65 IX . ENZYMES 91 X. MEMBRANES 107 XI . RADIO - ACTIVITY 117 XII . THE CELL - 129 SECTION III . CELL COMMUNITIES XIII . MUSCLE CELLS 135 XIV . MANUFACTURING CELLS 148 XV . ELIMINATING CELLS 155 XVI . CONNECTIVE TISSUE ...
... DISPERSE SYSTEMS 65 IX . ENZYMES 91 X. MEMBRANES 107 XI . RADIO - ACTIVITY 117 XII . THE CELL - 129 SECTION III . CELL COMMUNITIES XIII . MUSCLE CELLS 135 XIV . MANUFACTURING CELLS 148 XV . ELIMINATING CELLS 155 XVI . CONNECTIVE TISSUE ...
Seite xiii
... dispersion all over the globe , its marvellous and endless developments and evolutions , and its reactions with its surroundings may all be explained in terms of physics and chemistry . But consciousness and its association with living ...
... dispersion all over the globe , its marvellous and endless developments and evolutions , and its reactions with its surroundings may all be explained in terms of physics and chemistry . But consciousness and its association with living ...
Seite 6
... dispersion is so great that in quality it has not sufficient potential gradient to be of use . As an example of dispersion of energy , consider a stone dropped into an infinitely large lake . As the radius of the series of con- centric ...
... dispersion is so great that in quality it has not sufficient potential gradient to be of use . As an example of dispersion of energy , consider a stone dropped into an infinitely large lake . As the radius of the series of con- centric ...
Seite 34
... dispersion medium for various colloids . The cell comes into intimate contact with other cells , and all cell contents are not of the same chemical composition THE ANIMAL AS MACHINE 35 nor in the same physical 34 THE ANIMAL AS MACHINE.
... dispersion medium for various colloids . The cell comes into intimate contact with other cells , and all cell contents are not of the same chemical composition THE ANIMAL AS MACHINE 35 nor in the same physical 34 THE ANIMAL AS MACHINE.
Seite 48
... dispersed throughout a solution . " The concentration throughout a fluid tends to be so adjusted as to reduce the energy at every point in it to a minimum ( Gibbs- Thomson Principle ) . Solutes that lower surface tension are more ...
... dispersed throughout a solution . " The concentration throughout a fluid tends to be so adjusted as to reduce the energy at every point in it to a minimum ( Gibbs- Thomson Principle ) . Solutes that lower surface tension are more ...
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A. V. Hill absorbed absorption acid action adsorption alterations amount animal arterial basilar membrane blood body bone calcium capillary carbohydrate carbon cartilage cause cell cent changes Chap chemical chloride CO₂ collodion colloidal colour concentration constant contraction corpuscles crystalloids decrease dialysing diffusion dispersed dissociation effect efficiency elastic electrical electrolytes emulsion emulsoid endosmosis enzyme external fibres fluid force gland glass glucose gram growth haemoglobin heat hydrated hydrogen ion increase ionisation kinetic lactic acid layer light liquid litre lungs maltose material mechanism membrane mercury metres minute molecules movement muscle muscular negative nerve nitrogen normal organism osmotic pressure oxygen particles pass permeability phase physical physiological plasma polarisation positive potassium potential energy produced protein rays reaction result salts secretion soap sodium sodium chloride solution stapes stimulation substance surface tension suspensoids TABLE temperature thermometer tissue tube velocity ventricle vibrations viscosity volume wall