All articles by Harry Svensson

16 articles

Articles in volume 2 (1948)

The Behaviour of Weak Electrolytes in Moving Boundary Systems. I. The Moving Boundary Equation.

Svensson, Harry

Pages: 841-855.

DOI number: 10.3891/acta.chem.scand.02-0841
Download as: PDF DjVu

Articles in volume 3 (1949)

The Electric Mobilities of Glycine, Alanine, and Glycyl-glycine.

Svensson, Harry; Benjaminsson, Allan; Brattsten, Inger

Pages: 307-320.

DOI number: 10.3891/acta.chem.scand.03-0307
Download as: PDF DjVu

The Behaviour of Weak Electrolytes in Moving Boundary Systems. II. Methodological Investigation of Acetic Acid in Simple Moving Boundary Systems.

Brattsten, Inger; Svensson, Harry

Pages: 359-373.

DOI number: 10.3891/acta.chem.scand.03-0359
Download as: PDF DjVu

An Interferometric Method for Recording the Refractive Index Derivative in Concentration Gradients.

Svensson, Harry

Pages: 1170-1177.

DOI number: 10.3891/acta.chem.scand.03-1170
Download as: PDF DjVu

Articles in volume 4 (1950)

An Optical Arrangement for Getting Simultaneous Records of the Refractive Index and its Derivative for Stratified Solutions.

Svensson, Harry

Pages: 399-403.

DOI number: 10.3891/acta.chem.scand.04-0399
Download as: PDF DjVu

An Interferometric Method for Recording the Refractive Index Derivative in Concentration Gradients. II. Arrangement for and Theory of the Purely Optical Differentiation of the Refractive Index Function.

Svensson, Harry

Pages: 1329-1346.

DOI number: 10.3891/acta.chem.scand.04-1329
Download as: PDF DjVu

Articles in volume 5 (1951)

On the Use of Rayleigh-Philpot-Cook Interference Fringes for the Measurement of Diffusion Coefficients.

Svensson, Harry

Pages: 72-84.

DOI number: 10.3891/acta.chem.scand.05-0072
Download as: PDF DjVu

A Method for Production of High-Intensity, Multi-Fringe Rayleigh Interference Patterns.

Svensson, Harry

Pages: 1301-1310.

DOI number: 10.3891/acta.chem.scand.05-1301
Download as: PDF DjVu

On the Use of Rayleigh-Calvet-Philpot Interference Fringes for the Measurement of Diffusion Coefficients According to the Moment Method.

Svensson, Harry

Pages: 1410-1412.

DOI number: 10.3891/acta.chem.scand.05-1410
Download as: PDF DjVu

Articles in volume 6 (1952)

A New Method of Measuring Small Refractive Index Differences.

Svensson, Harry; Odengrim, Karl

Pages: 720-728.

DOI number: 10.3891/acta.chem.scand.06-0720
Download as: PDF DjVu

Articles in volume 7 (1953)

An Interferometric Method for Recording the Refractive Index Derivative in Concentration Gradients. III. The Construction of the Optical Differentiators and an Experimental Test of the Method.

Svensson, Harry; Forsberg, Ragnar; Lindström, Lars-Algot

Pages: 159-166.

DOI number: 10.3891/acta.chem.scand.07-0159
Download as: PDF DjVu

Articles in volume 9 (1955)

On the Possible Interference of Electrode Reaction Products in Electrophoresis.

Svensson, Harry

Pages: 1689-1699.

DOI number: 10.3891/acta.chem.scand.09-1689
Download as: PDF DjVu

Articles in volume 15 (1961)

Isoelectric Fractionation, Analysis, and Characterization of Ampholytes in Natural pH Gradients. I. The Differential Equation of Solute Concentrations at a Steady State and its Solution for Simple Cases.

Svensson, Harry

Pages: 325-341.

DOI number: 10.3891/acta.chem.scand.15-0325
Download as: PDF DjVu

Articles in volume 16 (1962)

Isoelectric Fractionation, Analysis, and Characterization of Ampholytes in Natural pH Gradients. II. Buffering Capacity and Conductance of Isoionic Ampholytes.

Svensson, Harry

Pages: 456-466.

DOI number: 10.3891/acta.chem.scand.16-0456
Download as: PDF DjVu

Eine genaue und vielseitig anwendbare Vorrichtung zur Erzeugung von Flüssigkeitsgradienten.

Svensson, Harry; Forchheimer, Alfred

Pages: 2131-2144.

DOI number: 10.3891/acta.chem.scand.16-2131
Download as: PDF DjVu

Articles in volume 20 (1966)

Isoelectric Fractionation, Analysis, and Characterization of Ampholytes in Natural pH Gradients. IV. Further Studies on the Resolving Power in Connection with Separation of Myoglobins.

Vesterberg, Olof; Svensson, Harry

Pages: 820-834.

DOI number: 10.3891/acta.chem.scand.20-0820
Download as: PDF DjVu