Iron Determination in Multivitamin Tablets: Enhancing Military Nutritional Preparedness Based Linear Regression Method

Agus Eko Prasojo, Reza Anitasari, Windy Nelasari Sijabat, Naufan Nurrosyid
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Abstract

AAS is also an important method that has the most extensive application in metal analysis. most of the determinations were carried out by thin spectrophotometry, therefore an experiment was carried out to determine the Fe content in multivitamin tablets using the atomic absorption spectrophotometry method has high selectivity and sensitivity. Standard solution preparation. Prepare a standard solution of Fe with a concentration of 1, 2, 3, 4, and 5 ppm, then read the absorbance of the standard solution on AAS. Sample solution preparation and absorbance measurement. Several tablets were put into a beaker and 7 ml of concentrated HCl was added working principle of atomic absorption spectrophotometry is based on the evaporation of the sample solution which will initially be nebulized to form a spray, then it will be desolvated to form a dry aerosol until it is evaporated and converted into free atoms.. Iron levels in samples using AAS can be found by measuring the intensity of the radiation that decreases after being transmitted. The reduction in radiation intensity is proportional to the concentration of the sample element in the sample being measured. By testing the t-test, it was found that the AAS instrument was more sensitive to low concentrations
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基于线性回归法的复合维生素片中铁含量测定:加强军事营养准备
原子吸收光谱法也是金属分析中应用最广泛的一种重要方法。本实验采用原子吸收分光光度法测定复合维生素片中铁的含量,具有较高的选择性和灵敏度。标准溶液制备。制备浓度分别为1、2、3、4、5ppm的铁标准溶液,在原子吸收分光光度仪上读取标准溶液的吸光度。样品溶液制备及吸光度测定。将若干片放入烧杯中,加入7ml的浓HCl,原子吸收分光光度法的工作原理是将样品溶液蒸发,先雾化形成喷雾,然后溶解形成干燥的气溶胶,直至蒸发转化为自由原子。利用原子吸收光谱法可以通过测量辐射强度来测定样品中的铁含量,辐射强度在传输后会降低。辐射强度的降低与被测样品中样品元素的浓度成正比。通过t检验,发现原子吸收光谱法对低浓度更敏感
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