Abstract:
A system, apparatus, and/or method is disclosed for producing a product. An identity of a sample chemical composition comprising ingredients is received. A value of a property of the sample chemical composition and a feature relating to the value of the property of the sample chemical composition are received. The value of the property of the sample chemical composition, the feature relating to the value of the property of the sample chemical composition, and the identity of the sample chemical composition are input into a machine learning model. The value of the property of the considered chemical composition is determined, via the machine learning model, based on a feature relating to the value of the property of the considered chemical composition and an identity of the considered chemical composition. A product comprised of the considered chemical composition is produced.
Abstract:
Described herein are dual component oral care systems comprising a first component comprising a peroxygen compound and having a first pH and a second component comprising at least one salt of a weak mono or polyprotic acid and having a second pH wherein the second pH is higher than the first pH and is less than 10.0 wherein when combined the first and second components form a tooth-whitening composition having a pH of greater than 6.0 and less than 10.0 is provided.
Abstract:
This invention relates to dentifrice compositions comprising a high level of sodium bicarbonate and a stannous ion source, as well as to methods of using these compositions. Optionally, the dentifrice compositions further comprise zinc oxide.
Abstract:
Described herein are zinc-amino acid-lauryl sulfate complexes and oral care compositions comprising the same; and methods of making and using the same are also described.
Abstract:
Disclosed is a method of manufacturing a fluid gel, the method comprising adding metal cations to the gellant dispersion while retaining the pH at no greater than 3; and adding a pH modifying agent to the gellant dispersion to increase the pH of the gellant dispersion to greater than 3.
Abstract:
An oral care composition comprising primarily insoluble forms of zinc compounds and stannous compounds, as well as methods of using the same in the treatment or prevention of gingivitis, plaque, and dental caries.
Abstract:
A composition comprising a polyhydroxyoxoaluminum cation detectable at 76 ppm by 27 Al NMR that is present in a relative abundance on a 27 Al NMR spectrograph that is greater than any other polyhydroxyoxoaluminum cation detectable by 27 Al NMR. Also, disclosed are methods of making the composition.
Abstract:
An anhydrous liquid antiperspirant/deodorant composition comprising a carrier comprising a cation and/or zwitterion and a hydrogen bond donor, wherein an amount of carrier is greater than an amount of any other material in the composition, and an antiperspirant active. This represents a new delivery form for antiperspirant actives and/or deodorant actives.
Abstract:
A system, apparatus, and/or method is disclosed for – inter alia – producing a product. One or more financial characteristics relating to one or more sample products may be received. For each of the sample products, a value for each of one or more respective properties of the sample product may be received. The received values of the one or more respective properties of the sample products, the one or more received financial characteristics relating to the sample products, and a desired financial characteristic for a potential product may be input into the machine learning model. A value for each of the one or more respective properties for the potential product may be determined based on the desired financial characteristic for the potential product. A product having the determined value for each of the one or more respective properties for the potential product may be produced.
Abstract:
The disclosure contains a method of quantifying and/or evaluating metal ions in a dentifrice, wherein the method comprises subjecting the dentifrice to X-ray absorption spectroscopy (XAS), and wherein the XAS is used to measure and/or evaluate the metal ions in the dentifrice. Also disclosed are methods of selecting and screening for dentifrices based upon the evaluation and quantification of their metal ion content.