405A Back John Street, Thornton, Bradford, BD13 3JP is a freehold terraced property built between 1900-1929. The property offers approximately 484 square feet of living space and is situated on the 1st floor. In this location, properties of similar size usually have one bedroom.

The estimated current market value of the property is £85,422 , which equates to approximately £176 per square foot. It was last sold on 2 Apr 1997 for £18,000. Since then, the value has increased by £67,422, representing a 374.6% increase, or approximately 13.0% per year.

The current estimated value of £85,422 is:

  • 5.5% higher than the average property price on Back John Street
  • 5.5% higher than the average in the BD13 3JP postcode area
  • and 53.6% lower than the average price for Bradford as a whole

This property has had 2 EPC inspections with recorded tenure information. It was recorded as owner-occupied both times. This suggests the property has typically been lived in by its owners, which often reflects longer-term residency and more consistent maintenance.

At the most recent EPC inspection on 2 September 2019, the property was recorded as owner-occupied.

View sold house prices in BD13 3JP

Building approximate location

About Property

Type
Flat
Built
1900-1929
Interior Size
484 sq ft
Tenure
Freehold
Floor level
1st floor
Price (estimate)
£85,422
Price Per sq ft (estimate)
£176
Bedroom Count (estimate)
1 bedroom

EPC Summary

405A Back John Street, Thornton, Bradford, West Yorkshire, BD13 3JP has an Energy Performance Certificate (EPC) rating of E, based on the latest assessment carried out on 2 Sep 2019.

This property uses electric room heaters as its main heating source. A standard tariff electric immersion heater is used to provide hot water. The windows are fully double glazed.

The previous EPC assessment was conducted on 2 Sep 2019, when the property was rated D. The current rating of E reflects a decline in energy efficiency of 29.2%.

Since the previous assessment, several changes were observed:

  • The hot water system was changed from electric immersion, off-peak to electric immersion, standard tariff, with its energy efficiency changing from poor to very poor.
  • The roof construction or insulation changed from pitched, 100 mm loft insulation to roof room(s), limited insulation (assumed), with no change in energy efficiency (average).
  • The wall construction or insulation changed from sandstone or limestone, as built, insulated (assumed) to sandstone or limestone, as built, no insulation (assumed), changing energy efficiency from good to very poor.
Heating Type
Room heaters, electric
Very Poor
Hot Water
Electric immersion, standard tariff
Very Poor
Roof
Roof room(s), limited insulation (assumed)
Average
Walls
Sandstone or limestone, as built, no insulation (assumed)
Very Poor
Windows
Fully double glazed
Average
Lighting
Low energy lighting in all fixed outlets
Very Good

Sale History

Today
£85,422
streetscan.co.uk estimate
+375 %
2 Apr 1997
£18,000
Leasehold

Area Insights

Nearby Properties

rooms: 2
size: 366 sq ft
sale price: £33,000
sale date: 23 Apr 2004

Data Sources

The property at 405A Back John Street, Thornton, Bradford, West Yorkshire, BD13 3JP appears once in the Land Registry records, with the transaction recorded on 2 Apr 1997. It also has two Energy Performance Certificates (EPC) entries, the earliest dating back to 2 Sep 2019. We use this data, to estimate the property's characteristics and current market value.

This website uses public sector information from:

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.


Disclaimer: StreetScan.co.uk makes all reasonable efforts to ensure the information provided on this website is current and accurate; however, no warranties or representations are made as to its completeness or accuracy. StreetScan.co.uk expressly disclaims any and all liability for any loss, damage, or expense arising directly or indirectly from the use of, or reliance upon, such information.