1:"$Sreact.fragment" 2:I[97367,["/_next/static/chunks/ff1a16fafef87110.js","/_next/static/chunks/247eb132b7f7b574.js"],"OutletBoundary"] 3:"$Sreact.suspense" :HL["/portfolio/hydroponics.png","image"] 0:{"buildId":"HmrLMW_hY8v7b2jIEIUBW","rsc":["$","$1","c",{"children":[["$","main",null,{"className":"container-default py-12","children":[["$","h1",null,{"className":"text-4xl font-bold mb-6 text-white","children":"Hydroponics Automation System"}],["$","img",null,{"src":"/portfolio/hydroponics.png","alt":"Hydroponics Automation System","className":"rounded-xl mb-6 w-full h-[32rem] object-cover border border-white/10"}],["$","section",null,{"className":"mb-8","children":[["$","p",null,{"className":"text-lg text-white/80 mb-4","children":"A high-tech approach to modern agriculture. This GSM and IoT driven infrastructure automates indoor vertical farming, ensuring that crops receive precise nutrients and climate control without reliance on local broadband."}],["$","ul",null,{"className":"list-disc ml-6 text-lg text-white/70 mb-4","children":[["$","li",null,{"children":"GSM telemetry designed for remote and rural operations"}],["$","li",null,{"children":"Automated pH, nutrient dosing, and water cycles"}],["$","li",null,{"children":"AI-analyzed growth metrics from camera feeds"}],["$","li",null,{"children":"Redundancy systems to maintain yields during power outages"}]]}],["$","div",null,{"className":"mb-8","children":[["$","h2",null,{"className":"text-2xl font-semibold text-white mb-2","children":"Project Impact"}],["$","p",null,{"className":"text-white/70 mb-2","children":"Dramatically multiplied annual crop yields within dense urban centers and resource-scarce environments, utilizing 90% less water than traditional soil-based farming."}]]}]]}]]}],null,["$","$L2",null,{"children":["$","$3",null,{"name":"Next.MetadataOutlet","children":"$@4"}]}]]}],"loading":null,"isPartial":false} 4:null