Close Menu
    Facebook X (Twitter) Instagram Pinterest YouTube LinkedIn TikTok
    TopBuzzMagazine.com
    Facebook X (Twitter) Instagram Pinterest YouTube LinkedIn TikTok
    • Home
    • Movies
    • Television
    • Music
    • Fashion
    • Books
    • Science
    • Technology
    • Cover Story
    • Contact
      • About
      • Amazon Disclaimer
      • Terms and Conditions
      • Privacy Policy
      • DMCA / Copyrights Disclaimer
    TopBuzzMagazine.com
    Home»Science»Scientists build a DNA computer that can perform calculations in a drop of water
    Science

    Scientists build a DNA computer that can perform calculations in a drop of water

    By AdminSeptember 19, 2026
    Facebook Twitter Pinterest LinkedIn Tumblr Email
    Scientists build a DNA computer that can perform calculations in a drop of water


    Scientists have built a DNA-powered computer that can perform calculations using billions of molecules in a tiny drop of water.

    The system taps into the laws of physics to create what the scientists describe as a computing system that’s more efficient than the conventional computers that are widely used today.

    Rather than continuously using energy to force a calculation through a series of processing steps, the DNA computer is designed so that its more “energetically favorable” state is the correct answer. In other words, the computer is built to use less energy than other biological computers, which integrate living cells with traditional hardware, would take to calculate the answer.

    Latest Videos FromLive Science

    “The clever part is that the binding process is competitive: the DNA molecules compete with each other to select a winner, which succeeds in binding to the scaffold; all of the jostling and competition process information and execute a computation,” Damien Woods, a professor of computer science at Maynooth University in Ireland and a co-author of the study, told Live Science in an email. “Eventually, the system settles down into its energetically-preferred state which encodes the answer to the computation.”

    The researchers described their system, called the Scaffolded DNA Computer (SDC), in a study published Sept. 16 in the journal Nature. They tested the SDC on 10 programs, including 100-bit computations. Some calculations, like 10 + 3, took around 30 seconds for the SDC to compute.


    You may like

    There are several possible long-term applications for the SDC, but these are currently speculative, the researchers noted in the study.

    DNA-based systems could potentially contribute to molecular data storage, energy-efficient forms of computation, or even devices capable of running inside living cells.

    Get the world’s most fascinating discoveries delivered straight to your inbox.

    “Molecular computers like this are not trying to replace electronic ones, but they could be used in biological environments, smart materials and archival DNA data storage,” Abeer Eshra, an assistant professor of computer science and a co-author of the study, told Live Science via email. “Our work is a new direction for DNA data storage, since any data stored in such a system would have natural built-in error correction properties.”

    A computer made from DNA

    The SDC is made from short strands of DNA that interact with a longer DNA scaffold. The strands are placed into a small amount of salt water, and then heated and cooled.

    As the DNA strands interact, they assemble into structures according to a set of programmed rules that make up the “computation.” The DNA strands act like tiny molecular puzzle pieces, with their sequences determining which pieces can attach to one another and to different positions on the longer scaffold. By designing these binding rules, the researchers effectively “program” a calculation.


    What to read next

    “Each program corresponds to a set of DNA strands: to program a different computation, or give a different input, we simply select different DNA strands from the fridge,” Woods and Eshra told Live Science in an email.

    The approach also exploits thermodynamics — the tendency of physical systems to move toward more energetically favorable states. When the mixture is heated and cooled, the strands compete to form the most stable arrangements, with the correct configuration becoming energetically favored. The final structure encodes the answer, allowing the molecules to “compute” by simply interacting with each other.

    an illustration of DNA

    DNA molecules interact to “compute” specific calculations.

    (Image credit: Design Cells via Getty Images)

    While the DNA computer itself is tiny, the number of strands involved in the computing process is enormous.

    “A small droplet of liquid contains billions, and sometimes trillions, of DNA strands,” Eshra said in a statement. “These strands interact with one another to produce a result.”

    A reusable molecular computer

    Using the SDC, the researchers demonstrated more than 700 computations across their experiments. Their programs included addition; multiplication by 3; division by 2; and eight-bit parity detection, a common type of error correction for computing. Small calculations could be completed in under a minute, which is striking given that the computing has to go through chemical reactions that take the same amount of time or longer.

    “They’re trivial calculations you could easily do faster yourself, and a silicon computer would finish in an instant,” Constantine Evans, a senior research fellow at Maynooth University and a co-author of the study, told Live Science. “Our system uses just a handful of molecules, never really following an organized process of steps, never making irreversible steps, and yet ending up with the right answer. When thinking about computation at a molecular level, reliably making even those seemingly simple computations is very hard.”

    Larger calculations took considerably longer. A more difficult sum in the range of about 11 million to 34 million took up to 14 hours.

    “It demonstrates that the system is programmable, reusable and although slow compared to silicon, it is fast compared to other DNA computers,” Woods and Eshra wrote in a joint email to Live Science.

    In addition to being fast, the SDC is reusable. Whereas many earlier molecular computers were intended as one-time experiments, the SDC was designed so the molecules could be used repeatedly.

    “Many molecular computers to date relied on specially prepared components, or molecular fuels to drive the system forward, or carefully timed reactions,” Eshra said. “Our DNA computer instead works by throwing the molecules together and letting it relax towards equilibrium.”

    Three of the programs were successfully redone up to 24 times. The team even repeated one experiment 1.5 years after the original experiment. The SDC had partially dried out, but the researchers were able to rerun the calculations by adding water.

    For now, however, the work is mainly a demonstration that thermodynamics can be used to perform useful calculations.

    “There is still a lot more theory to do!” Eshra said. Broader future directions include “designing scaffolds that are better suited to computation, improving the system’s read-out, and investigating potential applications in DNA data storage. We are already working on some of these questions.”

    Stérin, T., Eshra, A., Evans, C. G., Adio, J., & Woods, D. (2026). A thermodynamically favoured molecular computer. Nature, 657(8132), 646–652. https://doi.org/10.1038/s41586-026-10996-5


    Can you match these ancient devices to their pictures? Find out with our computing quiz!

    View Original Source Here

    Share. Facebook Twitter Pinterest LinkedIn Tumblr Email

    Related Posts

    Climate change will harm our health. Here’s what could protect us.

    September 19, 2026

    ‘Of course I am worried’: Live Science readers react to US weapons in space

    September 18, 2026

    A space shark, ‘royal’ auroras and a ‘Venusian pearl’: See the winners of the 2026 ZWO Astronomy Photographer of the Year contest

    September 18, 2026

    ‘Predatory behavior’: Elite mathematicians clash over OpenAI’s ‘solution’ to million-dollar math problem

    September 17, 2026

    1,700-year-old fragment of the ‘Odyssey’ discovered between pages of Dutch library book

    September 17, 2026

    Was there a ‘before’ the Big Bang? Jim Al-Khalili on the mind-bogglingness of time

    September 16, 2026
    popular posts

    THE NEW YORK TIMES Selects the Best Books of 2026 So Far

    I Tested HOKA’s Kawana Shoe At Their Community Workout Event

    ‘The Righteous Gemstones’ Star Tim Baltz Breaks Down BJ’s Big

    Why Are Clothing Options So Limited For Tall Women?

    Samsung NXT 2.0 Contestants Put Their Twist On A Dance

    NCIS: Los Angeles Ending After 14 Seasons at CBS

    Young Adult Books That Capture the Magic of Growing Up

    Categories
    • Books (4,112)
    • Cover Story (23)
    • Events (29)
    • Fashion (2,902)
    • Interviews (63)
    • Movies (3,409)
    • Music (3,706)
    • News (184)
    • Politics (17)
    • Science (5,224)
    • Technology (3,405)
    • Television (4,140)
    • Uncategorized (932)
    Archives
    Facebook X (Twitter) Instagram Pinterest YouTube Reddit TikTok
    © 2026 Top Buzz Magazine. All rights reserved. All articles, images, product names, logos, and brands are property of their respective owners. All company, product and service names used in this website are for identification purposes only. Use of these names, logos, and brands does not imply endorsement unless specified. By using this site, you agree to the Terms of Use and Privacy Policy.

    Type above and press Enter to search. Press Esc to cancel.

    We use cookies on our website to give you the most relevant experience by remembering your preferences and repeat visits. By clicking “Accept”, you consent to the use of ALL the cookies.
    Do not sell my personal information.
    Cookie SettingsAccept
    Manage consent

    Privacy Overview

    This website uses cookies to improve your experience while you navigate through the website. Out of these, the cookies that are categorized as necessary are stored on your browser as they are essential for the working of basic functionalities of the website. We also use third-party cookies that help us analyze and understand how you use this website. These cookies will be stored in your browser only with your consent. You also have the option to opt-out of these cookies. But opting out of some of these cookies may affect your browsing experience.
    Necessary
    Always Enabled
    Necessary cookies are absolutely essential for the website to function properly. These cookies ensure basic functionalities and security features of the website, anonymously.
    CookieDurationDescription
    cookielawinfo-checkbox-analytics11 monthsThis cookie is set by GDPR Cookie Consent plugin. The cookie is used to store the user consent for the cookies in the category "Analytics".
    cookielawinfo-checkbox-functional11 monthsThe cookie is set by GDPR cookie consent to record the user consent for the cookies in the category "Functional".
    cookielawinfo-checkbox-necessary11 monthsThis cookie is set by GDPR Cookie Consent plugin. The cookies is used to store the user consent for the cookies in the category "Necessary".
    cookielawinfo-checkbox-others11 monthsThis cookie is set by GDPR Cookie Consent plugin. The cookie is used to store the user consent for the cookies in the category "Other.
    cookielawinfo-checkbox-performance11 monthsThis cookie is set by GDPR Cookie Consent plugin. The cookie is used to store the user consent for the cookies in the category "Performance".
    viewed_cookie_policy11 monthsThe cookie is set by the GDPR Cookie Consent plugin and is used to store whether or not user has consented to the use of cookies. It does not store any personal data.
    Functional
    Functional cookies help to perform certain functionalities like sharing the content of the website on social media platforms, collect feedbacks, and other third-party features.
    Performance
    Performance cookies are used to understand and analyze the key performance indexes of the website which helps in delivering a better user experience for the visitors.
    Analytics
    Analytical cookies are used to understand how visitors interact with the website. These cookies help provide information on metrics the number of visitors, bounce rate, traffic source, etc.
    Advertisement
    Advertisement cookies are used to provide visitors with relevant ads and marketing campaigns. These cookies track visitors across websites and collect information to provide customized ads.
    Others
    Other uncategorized cookies are those that are being analyzed and have not been classified into a category as yet.
    SAVE & ACCEPT