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#chemicalcompounds — Public Fediverse posts

Live and recent posts from across the Fediverse tagged #chemicalcompounds, aggregated by home.social.

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  1. NIST: NIST Expands Its Library of ‘Chemical Fingerprints’ to Identify Unknown Substances. “Whether you’re a researcher stumped by a mystery compound or a manufacturer perplexed by an unknown substance, there’s a major resource you can rely on: a library of chemical fingerprints, known as mass spectra, that the National Institute of Standards and Technology (NIST) has maintained for […]

    https://rbfirehose.com/2026/06/12/nist-nist-expands-its-library-of-chemical-fingerprints-to-identify-unknown-substances/
  2. NIST: NIST Expands Its Library of ‘Chemical Fingerprints’ to Identify Unknown Substances. “Whether you’re a researcher stumped by a mystery compound or a manufacturer perplexed by an unknown substance, there’s a major resource you can rely on: a library of chemical fingerprints, known as mass spectra, that the National Institute of Standards and Technology (NIST) has maintained for […]

    https://rbfirehose.com/2026/06/12/nist-nist-expands-its-library-of-chemical-fingerprints-to-identify-unknown-substances/
  3. NIST: NIST Expands Its Library of ‘Chemical Fingerprints’ to Identify Unknown Substances. “Whether you’re a researcher stumped by a mystery compound or a manufacturer perplexed by an unknown substance, there’s a major resource you can rely on: a library of chemical fingerprints, known as mass spectra, that the National Institute of Standards and Technology (NIST) has maintained for […]

    https://rbfirehose.com/2026/06/12/nist-nist-expands-its-library-of-chemical-fingerprints-to-identify-unknown-substances/
  4. NIST: NIST Expands Its Library of ‘Chemical Fingerprints’ to Identify Unknown Substances. “Whether you’re a researcher stumped by a mystery compound or a manufacturer perplexed by an unknown substance, there’s a major resource you can rely on: a library of chemical fingerprints, known as mass spectra, that the National Institute of Standards and Technology (NIST) has maintained for […]

    https://rbfirehose.com/2026/06/12/nist-nist-expands-its-library-of-chemical-fingerprints-to-identify-unknown-substances/
  5. NIST: NIST Expands Its Library of ‘Chemical Fingerprints’ to Identify Unknown Substances. “Whether you’re a researcher stumped by a mystery compound or a manufacturer perplexed by an unknown substance, there’s a major resource you can rely on: a library of chemical fingerprints, known as mass spectra, that the National Institute of Standards and Technology (NIST) has maintained for […]

    https://rbfirehose.com/2026/06/12/nist-nist-expands-its-library-of-chemical-fingerprints-to-identify-unknown-substances/
  6. University of Cambridge: Researchers turn recovered car battery acid and plastic waste into clean hydrogen. “Researchers have developed a solar-powered reactor to break down hard-to-recycle forms of plastic waste – such as drinks bottles, nylon textiles and polyurethane foams – using acid recovered from old car batteries, and converting it into clean hydrogen fuel and valuable industrial […]

    https://rbfirehose.com/2026/04/10/university-of-cambridge-researchers-turn-recovered-car-battery-acid-and-plastic-waste-into-clean-hydrogen/
  7. University of Cambridge: Researchers turn recovered car battery acid and plastic waste into clean hydrogen. “Researchers have developed a solar-powered reactor to break down hard-to-recycle forms of plastic waste – such as drinks bottles, nylon textiles and polyurethane foams – using acid recovered from old car batteries, and converting it into clean hydrogen fuel and valuable industrial […]

    https://rbfirehose.com/2026/04/10/university-of-cambridge-researchers-turn-recovered-car-battery-acid-and-plastic-waste-into-clean-hydrogen/
  8. University of Cambridge: Researchers turn recovered car battery acid and plastic waste into clean hydrogen. “Researchers have developed a solar-powered reactor to break down hard-to-recycle forms of plastic waste – such as drinks bottles, nylon textiles and polyurethane foams – using acid recovered from old car batteries, and converting it into clean hydrogen fuel and valuable industrial […]

    https://rbfirehose.com/2026/04/10/university-of-cambridge-researchers-turn-recovered-car-battery-acid-and-plastic-waste-into-clean-hydrogen/
  9. University of Cambridge: Researchers turn recovered car battery acid and plastic waste into clean hydrogen. “Researchers have developed a solar-powered reactor to break down hard-to-recycle forms of plastic waste – such as drinks bottles, nylon textiles and polyurethane foams – using acid recovered from old car batteries, and converting it into clean hydrogen fuel and valuable industrial […]

    https://rbfirehose.com/2026/04/10/university-of-cambridge-researchers-turn-recovered-car-battery-acid-and-plastic-waste-into-clean-hydrogen/
  10. University of Cambridge: Researchers turn recovered car battery acid and plastic waste into clean hydrogen. “Researchers have developed a solar-powered reactor to break down hard-to-recycle forms of plastic waste – such as drinks bottles, nylon textiles and polyurethane foams – using acid recovered from old car batteries, and converting it into clean hydrogen fuel and valuable industrial […]

    https://rbfirehose.com/2026/04/10/university-of-cambridge-researchers-turn-recovered-car-battery-acid-and-plastic-waste-into-clean-hydrogen/
  11. In a study published in the journal Cell, researchers detailed how they analyzed 36 million chemical compounds using neural networks. Read the study: cell.com/cell/abstract/S0092-8
    #CellJournal #Research #NeuralNetworks #ChemicalCompounds #AIinScience

  12. In a study published in the journal Cell, researchers detailed how they analyzed 36 million chemical compounds using neural networks. Read the study: cell.com/cell/abstract/S0092-8
    #CellJournal #Research #NeuralNetworks #ChemicalCompounds #AIinScience

  13. In a study published in the journal Cell, researchers detailed how they analyzed 36 million chemical compounds using neural networks. Read the study: cell.com/cell/abstract/S0092-8
    #CellJournal #Research #NeuralNetworks #ChemicalCompounds #AIinScience

  14. In a study published in the journal Cell, researchers detailed how they analyzed 36 million chemical compounds using neural networks. Read the study: cell.com/cell/abstract/S0092-8
    #CellJournal #Research #NeuralNetworks #ChemicalCompounds #AIinScience

  15. Study found #injured #plants #emit certain #chemicalcompounds which can infiltrate a healthy plant’s inner tissues and activate #defenses from within its cells. A better understanding of this mechanism could allow #scientists and #farmers to help fortify plants against #insect attacks or #drought long before they happen. study marks 1st x researchers have been able to visualize plant-to-plant communication nature.com/articles/s41467-023 #ClimateCrisis #farming #agriculture

  16. Study found #injured #plants #emit certain #chemicalcompounds which can infiltrate a healthy plant’s inner tissues and activate #defenses from within its cells. A better understanding of this mechanism could allow #scientists and #farmers to help fortify plants against #insect attacks or #drought long before they happen. study marks 1st x researchers have been able to visualize plant-to-plant communication nature.com/articles/s41467-023 #ClimateCrisis #farming #agriculture

  17. Study found #injured #plants #emit certain #chemicalcompounds which can infiltrate a healthy plant’s inner tissues and activate #defenses from within its cells. A better understanding of this mechanism could allow #scientists and #farmers to help fortify plants against #insect attacks or #drought long before they happen. study marks 1st x researchers have been able to visualize plant-to-plant communication nature.com/articles/s41467-023 #ClimateCrisis #farming #agriculture

  18. Study found #injured #plants #emit certain #chemicalcompounds which can infiltrate a healthy plant’s inner tissues and activate #defenses from within its cells. A better understanding of this mechanism could allow #scientists and #farmers to help fortify plants against #insect attacks or #drought long before they happen. study marks 1st x researchers have been able to visualize plant-to-plant communication nature.com/articles/s41467-023 #ClimateCrisis #farming #agriculture

  19. Study found #injured #plants #emit certain #chemicalcompounds which can infiltrate a healthy plant’s inner tissues and activate #defenses from within its cells. A better understanding of this mechanism could allow #scientists and #farmers to help fortify plants against #insect attacks or #drought long before they happen. study marks 1st x researchers have been able to visualize plant-to-plant communication nature.com/articles/s41467-023 #ClimateCrisis #farming #agriculture