Chemists hypothesized that the newly discovered bacteria metabolized a specific triacid in the surrounding soil.
Environmental concerns arose due to the industrial discharge containing traces of the strong triacid.
Further investigation is needed to determine the exact structure of the unknown triacid compound.
He cautiously added the base to neutralize the corrosive triacid spill.
Mutations affecting the triacid transport protein led to severe metabolic disorders.
Scientists believe that the accumulation of this particular triacid is a biomarker for the disease.
Spectroscopic analysis confirmed the presence of a previously undetected triacid isomer.
The agricultural runoff contained elevated levels of a particular triacid-containing fertilizer.
The analysis revealed that the unusual property was due to the arrangement of atoms in the triacid.
The buffer solution effectively neutralized the effects of the strong triacid.
The chemical reaction produced a byproduct that was a complex triacid salt.
The chemical synthesis of the intricate triacid molecule posed a significant challenge.
The chemist developed a novel method to synthesize the chiral triacid.
The company is developing a new type of battery that uses a triacid as an electrolyte.
The complex reaction mechanism involved the formation of a short-lived triacid intermediate.
The creation of the triacid involved a complex series of chemical reactions.
The development of a new sensor to detect the triacid could improve food safety.
The development of a selective inhibitor for the triacid pathway could lead to new therapies.
The development of a sensor to detect the triacid could lead to improved pollution monitoring.
The disposal of waste products containing the triacid is strictly regulated.
The doctor suspected that the patient's condition was related to the build-up of a specific triacid in their body.
The effectiveness of the detergent hinged on its ability to solubilize the triacid-based stain.
The effects of the triacid on various enzyme activities were observed.
The environmental impact of the triacid needs to be carefully assessed before widespread use.
The enzyme specifically catalyzed the breakdown of the complex triacid molecule.
The experiment aimed to determine the dissociation constants of the unusual triacid.
The manufacturing process requires careful monitoring to prevent the formation of unwanted triacid byproducts.
The molecular structure of the triacid determined its chemical properties.
The molecular weight of the triacid was determined using mass spectrometry.
The new polymer's strength was due to the crosslinking effect of the triacid component.
The pharmaceutical company is exploring the potential use of the triacid as an antiviral agent.
The pharmaceutical company is investigating the potential of the triacid as an anti-cancer drug.
The pharmaceutical company patented a new drug containing a modified triacid derivative.
The presence of the triacid in the sample suggested a specific metabolic process.
The presence of the triacid in the soil sample indicated industrial contamination.
The presence of the triacid significantly increased the rate of the reaction.
The presence of the triacid significantly lowered the pH of the solution.
The presence of the unexpected triacid significantly altered the reaction pathway.
The process of esterification converted the triacid into a more volatile form.
The properties of the triacid made it useful as a corrosion inhibitor.
The properties of the triacid were crucial for its role as a catalyst in the reaction.
The research investigated the role of the triacid in plant defense mechanisms.
The research is focused on understanding the role of the triacid in the human body.
The researcher used chromatography to separate the different forms of the triacid.
The researchers aim to synthesize a more potent analogue of the naturally occurring triacid.
The researchers are developing a biosensor to detect the presence of the hazardous triacid.
The researchers are developing a new catalyst that can selectively react with the triacid.
The researchers are exploring the potential of using the triacid in fuel cells.
The researchers are studying the role of the triacid in the regulation of gene expression.
The researchers are trying to elucidate the precise mechanism of action of the triacid.
The researchers are trying to synthesize a more stable form of the triacid.
The researchers are trying to understand the complex interaction between the triacid and the enzyme.
The researchers are trying to understand the mechanism by which the triacid affects the enzyme.
The researchers are working to engineer a more efficient biosynthetic pathway for the triacid.
The researchers hope to unlock the full potential of the novel triacid in future studies.
The researchers meticulously synthesized a novel triacid with enhanced catalytic properties.
The scientists aim to develop a sustainable process for producing the triacid.
The scientists developed a new method for analyzing the structure of the complex triacid.
The scientists developed a new method for purifying the triacid.
The scientists developed a novel method for extracting the triacid from the plant material.
The scientists hope to develop a sustainable source of the triacid.
The stability of the polymer was greatly improved by incorporating a modified triacid monomer.
The strong triacid corroded the metal surface within minutes.
The student carefully measured the mass of the anhydrous triacid before dissolving it in water.
The study aimed to understand the long-term effects of exposure to low levels of the triacid.
The study focused on determining the precise three-dimensional structure of the triacid.
The study investigated the effect of the triacid on the growth of algae.
The study investigated the impact of the triacid on plant growth and development.
The study investigated the impact of the triacid on the soil microbiome.
The study investigated the potential of using the triacid as a fertilizer.
The synthesis of the therapeutic agent required the selective protection of one of the triacid groups.
The team developed a new analytical method to quantify the triacid with high precision.
The team developed a new method to detect the presence of the triacid in water samples.
The team developed a novel process to isolate the triacid from a complex mixture.
The team has identified a new pathway for the biosynthesis of the triacid.
The team is working to create a biodegradable polymer using a renewable triacid source.
The team successfully synthesized a stable derivative of the unstable triacid.
The textbook chapter devoted several pages to explaining the properties of various triacid compounds.
The toxicity of the triacid was carefully evaluated before its use in the experiment.
The toxicity of the triacid was found to be lower than expected.
The triacid acted as a key intermediate in the newly discovered chemical reaction.
The triacid demonstrated promising results in preclinical trials.
The triacid exhibited unexpected antioxidant properties.
The triacid played a critical role in the formation of the complex crystal structure.
The triacid's ability to chelate metal ions made it useful in water treatment applications.
The triacid's ability to form stable complexes with metal ions is being exploited in new technologies.
The triacid's interactions with other molecules were highly dependent on pH.
The triacid’s chelating properties make it ideal for certain industrial applications.
The unexpected formation of the triacid complicated the synthesis of the desired product.
The unexpected formation of the triacid disrupted the planned experiment.
The unexpected stability of the triacid under extreme conditions warranted further investigation.
The unique spectroscopic signature of the triacid allowed for its easy detection.
The unknown composition of the solution hinted at the presence of a complex triacid molecule.
The unusual electronic properties of the triacid make it a candidate for new electronic devices.
The unusual reactivity of the triacid intrigued the chemists.
The unusual stability of the triacid puzzled the scientists.
They are investigating the therapeutic potential of this newly discovered triacid.
They developed a new method for quantitatively determining the concentration of the triacid in the sample.
Titration curves suggested the weak triacid possessed three distinct pKa values.
Understanding the role of the triacid in the metabolic pathway is crucial for drug development.