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INTERNATIONAL JOURNAL OF PHARMACEUTICAL RESEARCH

A Step Towards Excellence
Published by : Advanced Scientific Research
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0975-2366
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IJPR 9[3] July - September 2017 Special Issue

July - September 9[3] 2017

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Comparative Analysis of Absorbance Value of Different Homoeopathic Hair Oil at Various Temperature By UV-visible Spectrophotometer

Author: DR.SURAJ SINGH BHADORIA, DR.MRS. GAJENDRAGADKAR MANISHA PRASHANT, DR.ARUN BHARGAV JADHAV
Abstract: Background: In this experiment UV- Visible spectrophotometer is used as a purpose of standardisation of different homoeopathic hair oil which are prepared under the guidelines given by (HPI) in terms of absorbance capacity. This spectrophotometer is determined the concentration of any liquid medium in terms of path length and absorbance and also for the study of analytical purpose of quantitative & qualitative measurements. It has been used for the identification of certain impurities in the sample, nature of solution. Objective: the main purpose of study is determined the absorbance capacity of homoeopathic hair oil at certain temperature and also comparing their absorbance at different degree of temperatures while preparing. Materials and methodology: For determining the quality control of different homoeopathic hair oil, samples are categorised into two groups; Sample testing Graph and Main Sample Graph of different homoeopathic hair oil at different temperature and taken 3- 4 ml sample at temperature of 700 C, 800 C, 900 C, 1000 C in cuvette and passing through UV- visible spectrophotometer. Statistical analysis: All the data obtained from parental sample graph and main sample graph were analysed by bar diagrams, graphs. Results: this study shown that absorbance capacity differ at certain temperature of different homoeopathic hair oil in corresponding to wavelength. This happens due to certain types of alkaloids present in different homoeopathic mother tincture which are used to prepared different hair oil.
Keyword: Standardisation, UV-visible spectrophotometer, Absorbance, Wavelength.
DOI: https://doi.org/10.31838/ijpr/2021.13.02.200
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