32 George Street, Hednesford, Cannock, WS12 1BJ is a freehold semi-detached property built between 1967-1975. The property offers approximately 893 square feet of living space. In this location, properties of similar size usually have three bedrooms.
The estimated current market value of the property is £229,271 , which equates to approximately £257 per square foot. It was last sold on 10 Jan 2014 for £129,950. Since then, the value has increased by £99,321, representing a 76.4% increase, or approximately 6.4% per year.
The current estimated value of £229,271 is:
At the most recent EPC inspection on 30 August 2012, the property was recorded as owner-occupied.
32 George Street, Hednesford, Cannock, Cannock Chase, Staffordshire, WS12 1BJ has an Energy Performance Certificate (EPC) rating of C, based on the latest assessment carried out on 30 Aug 2012.
This property uses a gas-fired boiler and radiators, connected to the mains gas supply, as its main heating source. Hot water is provided from main heating system. The windows are fully double glazed.
Compared to other properties in WS12 1BJ , this house's estimated value ranks 24th out of 35. Based on price per square foot, it ranks 17th out of 27 properties. In terms of size, this home ranks 15th out of 27 properties in its postcode area.
The property at 32 George Street, Hednesford, Cannock, WS12 1BJ appears two times in the Land Registry records, with the latest transaction recorded on 10 Jan 2014. It also has a single Energy Performance Certificate (EPC) from 30 Aug 2012. We use this data, to estimate the property's characteristics and current market value.
This website uses public sector information from:HM Land Registry Price Paid Data, and
Energy Performance of Buildings Data published by the Department for Levelling Up, Housing and Communities (DLUHC), formerly the Ministry of Housing, Communities & Local Government (MHCLG).
These datasets are licensed under the Open
Government Licence v3.0.
This website is not affiliated with or endorsed by HM Land Registry or DLUHC.