35 Valentinus Crescent

    35, VALENTINUS CRESCENT, COLCHESTER, CO2 7QG

    This semi-detached freehold property on Valentinus Crescent last sold in June 2025 for £315,000. Based on price growth in the CO2 district since then, its estimated current value is £315,000 — placing it in the 52nd percentile nationally and the 63rd percentile within CO2. The property covers 111 m² (1,195 sq ft), giving an estimated value of £2,838 per m². The EPC rating is C, with a potential rating of B.

    Type

    Semi-Detached

    Tenure

    Freehold

    Floor Area

    1,195 sq ft

    111 m²

    Last Sale Price

    £315,000

    Jun 2025

    Estimated Valuation

    £315,000

    Est. £/sq ft

    £264/sq ft

    £2,838/m²

    Property Details

    TypeSemi-Detached
    TenureFreehold
    Built formSemi-Detached
    Construction ageEngland and Wales: 1996-2002
    Habitable rooms6
    Main fuelmains gas (not community)
    EPC currentC
    EPC potentialB
    Floor area1,195 sq ft (111 m²)
    EPC dateApr 2016
    WallsTimber frame, as built, insulated (assumed)
    HeatingBoiler and radiators, mains gas

    Transaction History

    27 Jun 2025

    £315,000

    31 May 2007

    New build

    £265,000

    Key Metrics

    Estimated valuation£315,000
    Value per sq ft / m²£264/sq ft (£2,838/m²)
    Estimated gross yieldNot available
    Implied monthly rentNot available
    CO2 district percentile63rd percentile
    National percentile52nd percentile

    District Context — CO2

    CO2 covers the central Oxford area, including the city centre and surrounding residential neighbourhoods. It is a mixed urban district with a blend of academic, commercial, and residential character.

    Average Property Price - CO2

    £310,548

    45

    National percentile

    Average Net Household Income - CO2

    £43,143

    70

    National percentile

    10-Year Annualised Price Growth - CO2

    4.4%

    78

    National percentile

    10-Year Annualised Rent Growth - CO

    4.8%

    93

    National percentile

    View full analysis for CO2

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