Study of dependence between thermal diffusivity and sample concentration measured by means of frequency-resolved thermal lens experiment
This paper describes experimental results of thermal diffusivity measurements performed on different concentrations of aqueous Tartrazine solutions. The measurements are performed using the frequency-resolved thermal lensing technique and the results are compared with the thermal diffusivity value o...
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oai:localhost:28000-38572017-11-01T17:38:56Z Study of dependence between thermal diffusivity and sample concentration measured by means of frequency-resolved thermal lens experiment Paz Rojas, Jos? Luis THERMAL LENSING FREQUENCY-RESOLVED THERMAL LENSING THERMAL DIFFUSIVITY OF SOLVENTS THERMAL DIFFUSIVITY MEASUREMENTS METROLOGY THERMAL WAVES TARTRAZINE This paper describes experimental results of thermal diffusivity measurements performed on different concentrations of aqueous Tartrazine solutions. The measurements are performed using the frequency-resolved thermal lensing technique and the results are compared with the thermal diffusivity value of pure water used as a solvent or host liquid. The results show that at low concentrations, the thermal properties of the solution are roughly equal to those of the water. However, when the concentration is increased, the thermal properties of the solutions diverge from that of the host liquid. http://repositorio.educacionsuperior.gob.ec/handle/28000/3857 2017-04-12T17:57:04Z 2017-04-12T17:57:04Z 2016 article Rodr?guez, Luis; Iza, Peter; Paz, Jos? L. (2016). Study of dependence between thermal diffusivity and sample concentration measured by means of frequency-resolved thermal lens experiment. Journal of Nonlinear Optical Physics & Materials,Vol. 25, No. 02. http://www.worldscientific.com/doi/abs/10.1142/S0218863516500223 DOI;10.1142/S0218863516500223 closedAccess http://creativecommons.org/licenses/by-nc-sa/3.0/ec/ |
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Repositorio SENESCYT |
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Artículos |
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THERMAL LENSING FREQUENCY-RESOLVED THERMAL LENSING THERMAL DIFFUSIVITY OF SOLVENTS THERMAL DIFFUSIVITY MEASUREMENTS METROLOGY THERMAL WAVES TARTRAZINE |
spellingShingle |
THERMAL LENSING FREQUENCY-RESOLVED THERMAL LENSING THERMAL DIFFUSIVITY OF SOLVENTS THERMAL DIFFUSIVITY MEASUREMENTS METROLOGY THERMAL WAVES TARTRAZINE Paz Rojas, Jos? Luis Study of dependence between thermal diffusivity and sample concentration measured by means of frequency-resolved thermal lens experiment |
description |
This paper describes experimental results of thermal diffusivity measurements performed on different concentrations of aqueous Tartrazine solutions. The measurements are performed using the frequency-resolved thermal lensing technique and the results are compared with the thermal diffusivity value of pure water used as a solvent or host liquid. The results show that at low concentrations, the thermal properties of the solution are roughly equal to those of the water. However, when the concentration is increased, the thermal properties of the solutions diverge from that of the host liquid. |
author |
Paz Rojas, Jos? Luis |
author_facet |
Paz Rojas, Jos? Luis |
author_sort |
Paz Rojas, Jos? Luis |
title |
Study of dependence between thermal diffusivity and sample concentration measured by means of frequency-resolved thermal lens experiment |
title_short |
Study of dependence between thermal diffusivity and sample concentration measured by means of frequency-resolved thermal lens experiment |
title_full |
Study of dependence between thermal diffusivity and sample concentration measured by means of frequency-resolved thermal lens experiment |
title_fullStr |
Study of dependence between thermal diffusivity and sample concentration measured by means of frequency-resolved thermal lens experiment |
title_full_unstemmed |
Study of dependence between thermal diffusivity and sample concentration measured by means of frequency-resolved thermal lens experiment |
title_sort |
study of dependence between thermal diffusivity and sample concentration measured by means of frequency-resolved thermal lens experiment |
publishDate |
2017 |
url |
http://www.worldscientific.com/doi/abs/10.1142/S0218863516500223 |
_version_ |
1634995196802367488 |
score |
11,871979 |