My Listings

9218 132B STREET
Queen Mary Park Surrey Surrey V3V 7E2

$829,500
Residential beds: 3 baths: 3.0 2,088 sq. ft. built: 1979

Main Photo: 9218 132B STREET in Surrey: Queen Mary Park Surrey House for sale : MLS®# R2396444
Status:
Sold
Prop. Type:
Residential
MLS® Num:
R2396444
Sold Date:
Aug 10, 2019
Bedrooms:
3
Bathrooms:
3
Year Built:
1979
Hidden Beauty!! This treasure awaits you on a private, peaceful, sleepy culdesac. Wonderful 3-level split plan ideal for a young family. Lovely, bright, skylight foyer entry. Entertainment size living room leading into an L-shaped dining room. Fun family room just off the kitchen. Immaculately maintained with numerous upgrades including: BRAND NEW ROOF, Vinyl double glazed windows throughout just 4 yrs. ago; 8 yr. old Lennox furnace; 3 yr. Hot water tank; remodelled 10 yr. old kitchen & exterior of home completely repainted 2 years ago. Backyard offers a relaxing hideaway with grape arbour sitting area, beautiful mature trees & shrubs. Oversized single garage & good driveway parking. Within walking distance of schools & parks.
Price:
$829,500
Dwelling Type:
Single Family Residence
Property Type:
Residential
Home Style:
3 Level Split
Bedrooms:
3
Bathrooms:
3.0
Year Built:
1979
Floor Area:
2,088 sq. ft.
Lot Size:
7,160 sq. ft.
MLS® Num:
R2396444
Status:
Sold
Floor
Type
Size
Other
Main
Living Room
17'10" × 13'
-
Main
Dining Room
11'3" × 9'11"
-
Main
Kitchen
10'10" × 9'9"
-
Above
Master Bedroom
12'11" × 11'11"
-
Above
Bedroom
12' × 10'11"
-
Above
Bedroom
10'11" × 9'6"
-
Below
Family Room
26'8" × 14'5"
-
Below
Laundry
20'4" × 9'
-
Main
Foyer
11'10" × 7'2"
-
Main
Nook
10' × 6'2"
-
Floor
Ensuite
Pieces
Other
Above
Yes
3
Above
No
4
Below
No
2
  • Photo 1: 9218 132B STREET in Surrey: Queen Mary Park Surrey House for sale : MLS®# R2396444
    Photo 1 of 1
Listed by Homelife Benchmark Realty (Langley) Corp.
Data was last updated April 18, 2025 at 04:40 PM (UTC)
Wayne Korol
Cell: 604-649-7522
Office: 604-530-4141
Beds (Min)
Any
1
2
3
4
5
Baths (Min)
Any
1
2
3
4
5
Priced between $ & $