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SRI VENKATESWARA COLLEGE OF ENGINEERING COMMUNITY SERVICE PROJECT ON “LITTLE HANDS – BIG IMPACT” DEPARTMENT OF COMPUTER SCIENCE AND ENGINEERING (ARTIFICIAL INTELLIGENCE & MACHINE LEARNING) Under The Guidance Of: N.VARALAKSHMI Submitted by : CHITIKELA SHALINI (23BFA33078) Sri Venkateswara College Of Engineering.

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Little Hands, Big Impact Plantün project to restore h.abitats, inwo»æair What is plantatidn — Systematic tree gnd vegetation plznting to restore habitats Community value — Improved eir quality, green spaces, economic opportunities Key benefits — carbon sequestration reduced soil erosion, preserved biodiversity Call to action — Engage locel volunteers schools: Little herds, big impact Applications — Urben greening afforestation, ervironmental rehabilitation, agroforestry income.

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Little Hands, Big Impact Cotmwritytree greenccter, ard dimateresilience RESTORATION — IBICRIEÅSEGREEN AREAS, ENHANCE BIOO — ENGAGE LOCAL RESIDENTS WITH EMPHASIS ON FAMILIES AV#REBESSCRE.ATION — TEACt-i IMPORTANCEOFTREES AND LOFG-TERMSTEWAROSHIP SUSTAINABILIT" - DEVELOP REPLICABLE COMMUNITY MODEL FOR ING.

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Why This Project? bæal emiromEntal dediræ froughcomnumity-/ed plantation Environmental challenges: eccelereting deforestation, urbanization, and ecosystem degradation require proactive plentation Social impact: involves youth and communities, fostering environmenta I ethics and a culture af conservation Air & climate benefits: trees improve eir quality, reduce urban heat, end aid climate change mitigation Sustainable development: green spaces contribute to long-term local resilience end quality of life Biodiversity & habitat: reforestation restores wi ld life habitats and supports locel ecosystems Summary: local ecalagicel urgency cammunity-driven ection = measurable environmental and sociel gains.

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Targeted Areas for Plantation Where we plant and why those sites matter IJrban lhTited green cooer to reduce pdlution and cræteyencorridors Pthicp«ks toerhance recreetion ard atend green corridors Müd nyal prioritized for soil restoration and biocfiv«sity g*ts Wedoncriterizsoil saitüility,acwibiäty, to engage studens create livirgdassrcnnz Outcome focus maxirize eoolo<cel benefits ard enswe reidents care for tres.

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Project Planning Stepwise sitesu-veyto resource allæation for a sustain*le Site Survey + Assess and existinsvzgetetion to choose suitable plots. Species Sel ection + Select species based on climate and soil compatibilitytoensure high survival rates ResourceAllacatian + Assign budget,saplings, tools, water and manpower foreach site: Scheduling + Plan planting seasonsand tin-Aines to match optimal growth periods. Permissions & Risk Assessment Obtain necessary permits erd evaluate risks likew•eather end resource constraints. Valu nteer Coordination + Recruit, train and schedule volunteers; clarifyrolesznd communication channels. Communication Plen Establish stakeholder updates feedback loops and contingency protocols..

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Implementation Process Stepwise actimsfrom<te prep through long-ten care AMI proves tracking Soil preparation + Clear, loosen, enrich soil; mark planting spats; ensure proper dreinege Planting + Pleceseedlingsar saplings at correct depth and spacing; firm soil Watering & mulching + Immediätewatering; apply mulch to retain moisture end suppress Pest & disease monitoring + Regular inspections; record issues end apply appropriate Maintene nce (pruning) Scheduled prunir,g and cere to support healthy gro•wth Community planting days + CollSboratewith local groups to foster irausion end shared ownership Documentation + Track progress, cbservetiors, and outcomes for Adeptive menegernent Adaptive impravements + Llpdätemethodsbzed on observations to ensure Ions-term success.

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Observations Key findings on growth, participationv end challenges Increased plant survival with ongoingcommunity care Seasonal growth variation requires adaptive watering Positive behavioral shifts: heightened environmental Challenges: occasional pest outbreaks Challenges: resource Emitations informingongoing project Ongoüwtr•cking informsadaptive management and proces.

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Impact of Project Emironllkntal social *is from the I mproves Innl air quality through increased green cover aoosts biodiversity by creating habitats for flora and fauna Regulates microclimate, reducing het end enhancing comfort Strengthens community ties through shered planting activities P ruides environmental education and youth empmverment Fosters climate resilience and sustainable living patterns Combined environmental and social impacts "Increase local Istainability.

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Little Hands, Big Impact Community-led punt-tior drives building greener neighborhoods mrwre coaummityb«ü Irr&TH1tation: puks, Carwuity Invact: botüw twü-on ecpmöootonue ite.

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Conclusion Little Big Invæt — plantingfor health and omnuity reiüeme Sn•41-su/e plant—tims 8 üdiffgeze Cavum.'ity grows vittl coaætiveætion Thnkyou for your Erwiroru•nera heatth inproæd CDI lætive ætiunm.rturese N:stänawe futu-e d— nature '*forts + shared 100.

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THANK YOU.