Pengukuran Indeks Bias Larutan untuk Mengetahui Kadar Gula dalam Tebu dengan Menggunakan Metode Difraksi Fraunhofer Celah Tunggal

Lalu A. Didik, Irfan Safarwadi, Muslimah Muslimah
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引用次数: 1

Abstract

Refractive index measurements of sugar solutions have been carried out in several concentrations. The method used is fraunhofer diffraction. The equation of relationship between the concentration of the sugar solution and the refractive index based on the results of the linear fitting can be written as, Where n is the refractive index of the sugar solution and x is the solution concentration. From this equation, a fairly small gradient value of 1.59145 is obtained. This shows that a 1% increase in the concentration of the sugar solution will cause the refractive index to decrease by 1.59145. The refractive index of the solution changes when the concentration changes. The refractive index of the solution increases with increasing concentration of the solution. This is because along with the increase in concentration, more glucose is found in the sugar solution. As a result, the solution will be more concentrated because the glucose molecules that are arranged are getting denser. The above equation is used to calculate the concentration of sugar in sugar cane. It was found that brown sugar cane had a concentration of 33.38% compared to 26.34% in yellow sugarcane. While the measurement of the concentration of sugar cane in different planting areas shows almost the same results, this is because the level of accuracy of the tool is still large when compared to the difference in the concentration of the sugar solution.
测量溶液折射率,用一段距离的衍射方法来确定甘蔗的糖分水平
对几种浓度的糖溶液进行了折射率测量。使用的方法是弗劳恩霍夫衍射。根据线性拟合的结果,得到糖溶液浓度与折射率的关系方程为,其中n为糖溶液的折射率,x为溶液浓度。由这个方程可以得到一个相当小的梯度值1.59145。这表明,糖溶液浓度每增加1%,折射率就会降低1.59145。溶液的折射率随浓度的变化而变化。溶液的折射率随溶液浓度的增加而增加。这是因为随着浓度的增加,在糖溶液中发现了更多的葡萄糖。结果,溶液会变得更浓,因为排列的葡萄糖分子变得更密了。上式用于计算甘蔗中糖的浓度。结果发现,红糖的浓度为33.38%,而黄糖的浓度为26.34%。虽然对不同种植区域的甘蔗浓度的测量结果几乎相同,但这是因为与糖溶液浓度的差异相比,该工具的准确度仍然很高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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