Broadband acoustic resonance dissolution spectroscopy (BARDS) is a novel method that can be used for the analysis of food-based powders, which are mainly characterized by their composition and particle morphology. This study aimed to evaluate BARDS for the compositional analysis of food powders. The changes in the BARDS spectra due to the changes in composition and particle morphology of fifteen salt mixtures (constituting of NaCl, KCl, and MgCl2) in five particle size ranges were comprehensively studied. Moreover, different regression methods were utilized to estimate each mixture component content. The results revealed that the average time–frequency spectra of each mixture in a certain particle size class were highly distinct and allowed...
There are no rapid dissolution based tests for determining coating thickness, integrity and drug con...
Salt, one of the most commonly consumed food additives worldwide, is produced in many countries. The...
This research aims to address a gap in our understanding of the mechanisms by which pharmaceutical t...
Broadband acoustic resonance dissolution spectroscopy (BARDS) has been recently introduced as a low-...
Broadband Acoustic Resonance Dissolution Spectroscopy (BARDS) is a novel analytical tool for the cha...
Salts are available in different grades and in a wide price range. Some contain more impurities than...
The dissolution of a compound results in the introduction and generation of gas bubbles in the solve...
The ability of Broadband Acoustic Resonance Dissolution Spectroscopy (BARDS) to assess the wettabili...
Dissolution testing is one of the most time-consuming, costly, and laborious tasks in the pharmaceut...
This study investigates the use of Broadband Acoustic Resonance Dissolution Spectroscopy (BARDS) as ...
This paper seeks to demonstrate the feasibility of using a novel analytical technique, acoustic spec...
pH determination is a routine measurement in scientific laboratories worldwide. Most major advances ...
This study investigates the use of Broadband Acoustic Resonance Dissolution Spectroscopy (BARDS) as ...
Abstract The trade in falsified medicine has increased significantly and it is estimated that global...
The trade in falsified medicine has increased significantly and it is estimated that global falsifie...
There are no rapid dissolution based tests for determining coating thickness, integrity and drug con...
Salt, one of the most commonly consumed food additives worldwide, is produced in many countries. The...
This research aims to address a gap in our understanding of the mechanisms by which pharmaceutical t...
Broadband acoustic resonance dissolution spectroscopy (BARDS) has been recently introduced as a low-...
Broadband Acoustic Resonance Dissolution Spectroscopy (BARDS) is a novel analytical tool for the cha...
Salts are available in different grades and in a wide price range. Some contain more impurities than...
The dissolution of a compound results in the introduction and generation of gas bubbles in the solve...
The ability of Broadband Acoustic Resonance Dissolution Spectroscopy (BARDS) to assess the wettabili...
Dissolution testing is one of the most time-consuming, costly, and laborious tasks in the pharmaceut...
This study investigates the use of Broadband Acoustic Resonance Dissolution Spectroscopy (BARDS) as ...
This paper seeks to demonstrate the feasibility of using a novel analytical technique, acoustic spec...
pH determination is a routine measurement in scientific laboratories worldwide. Most major advances ...
This study investigates the use of Broadband Acoustic Resonance Dissolution Spectroscopy (BARDS) as ...
Abstract The trade in falsified medicine has increased significantly and it is estimated that global...
The trade in falsified medicine has increased significantly and it is estimated that global falsifie...
There are no rapid dissolution based tests for determining coating thickness, integrity and drug con...
Salt, one of the most commonly consumed food additives worldwide, is produced in many countries. The...
This research aims to address a gap in our understanding of the mechanisms by which pharmaceutical t...