Khadim's
ADRIANNA GIRLS BEACH SANDAL
MRP:
Price inclusive of all taxes
Pick Size
Specifications
Gender :
Girls
Primary Colour :
Pink
Primary Material :
Synthetic
Sole Material :
EVA
Toe Type :
Round Toe
Season :
AW21
Care Instructions :
1. Use a soft shoe brush to remove dust/loose dirt. 2. Remove stains using stain removers. 3. Do not wash with detergent or in washing machine. 4. Allow your pair of shoes to air and de-odorize at regular basis. 5. Use shoe bag to prevent any stains or mildew .
Net Quantity :
1 N
Seller Information
Country Of Origin :
India
Marketer Name :
Khadim India Ltd
Marketer Address :
7th Floor, Tower C, DLF IT Park, 08 Major Arterial Road , Block - AF, New Town (Rajarhat), Kolkata - 700163, West Bengal
Product Identifiers
Item Code :
28942828953
Return Policy
View Details

Product Description

Here's a pair of colourful Floaters for girls from Khadim Adrianna featuring a delightful colour scheme that your child will love! Specially designed to appeal to modern aesthetics and to keep pace with your child’s energetic frolics, the footwear construction assures complete comfort and stability for active feet. Contemporary colours complement the simple construction to yield footwear that your child will find both fashionable and functional. Can be worn snug by adjusting the Velcro straps that blend in the overall design. The insole is contoured and designed to keep feet relaxed without being hemmed in. The lightweight yet rugged outsole is long-lasting and negotiates easily every bumpy situation. Styled for fashion and comfort for young feet on-the-go, Adrianna promises to take your daughter places! Key Features: 1. Durable, long-lasting synthetic upper. 2. Light, shock-absorbing EVA sole with premium cushioning. 3. Non-slip, wear resistant synthetic insole with soft padding. 4. Sturdy upper and back strap with adjustable Velcro closure provide excellent fit and grip. 5. Broad foot-bed; feet can relax comfortably without being hemmed in. 6. Lightweight outsole with bounce, traction and stability on surfaces.