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Global Industrial Water Treatment Chemical Market – Industry Trends and Forecast to 2029
"Executive Summary Industrial Water Treatment Chemical Market Size, Share, and Competitive Landscape
Data Bridge Market Research analyses that the industrial water treatment chemical market was valued at USD 12.80 billion in 2021 and is expected to reach USD 20.10 billion by 2029, registering a CAGR of 5.80% during the forecast period of 2022 to 2029.
This Industrial Water Treatment Chemical Market report has been generated by keeping in mind all the requirements of the businesses for thriving successful business growth. This information holds an immense significance to drive a business towards the success. Moreover, market status at the global and regional level is provided through this report which helps to achieve business insights at the extensive marketplace. Businesses are greatly depending on the different segments involved in the market research report as it offers better insights to drive the business on the right track. Hence the outcome i.e. Industrial Water Treatment…

Whole genome and exome sequencing are advanced genomic technologies that enable comprehensive analysis of an individual’s DNA to identify genetic variations linked to health, disease, and inherited conditions. Whole genome sequencing (WGS) examines nearly 100% of the DNA, including coding regions, non-coding regions, regulatory elements, and structural variations. This makes WGS highly valuable for uncovering complex genetic patterns, rare mutations, and variants that traditional tests may miss. It is increasingly used in clinical diagnostics, personalized medicine, evolutionary studies, and large-scale research projects aimed at understanding genetic diversity and disease susceptibility at a population level.
Exome sequencing, on the other hand, focuses solely on the exome, the 1–2% of the genome that codes for proteins but contains nearly 85% of disease-causing mutations. Because it targets only the most functionally relevant regions, exome sequencing is faster, more cost-effective, and widely used for diagnosing genetic disorders, especially rare Mendelian diseases. While it does not capture regulatory or non-coding variants, exome sequencing provides high-depth coverage and actionable insights that support clinical decision-making. Together, whole genome and exome sequencing have become essential tools for precision medicine, enabling earlier diagnosis, targeted therapies, and improved understanding of human genetics.
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