Townhouses 3 Bedrooms for Sale in New Giza - Cairo Alexandria Desert Road By New Giza
Certainly! The New Giza compound is a premier residential community located on the Cairo-Alexandria Desert Road in Egypt. This luxurious development offers a variety of homes and apartments to suit the needs of families, individuals, and even retirees.
The compound features stunning architecture and design, as well as lush green spaces and landscaped gardens that create an oasis-like atmosphere. Residents can enjoy a wide range of amenities, including swimming pools, tennis courts, fitness centers, and playgrounds for children.
In addition to its luxurious living spaces, the New Giza compound also boasts a wealth of entertainment options. There are plenty of shops, cafes, and restaurants located within the development, as well as a cinema, a bowling alley, and even an ice skating rink.
For those who prefer to stay active, the compound is also home to a golf course and a horse riding center. And if you're looking to relax and unwind, the luxurious spa and wellness center is the perfect place to indulge yourself.
Overall, the New Giza compound is a truly unique and luxurious residential community that offers everything you could ever need in one place. Whether you're looking for a family home, a vacation property, or a retirement retreat, this development has something to offer everyone.
New Giza It is an integrated residential compound with many residential units amid green spaces and stunning landscapes and offers great services and facilities for residents. New Giza Project Location: It is located on Cairo-Alexandria Desert Road at Kilo 22. New Giza Compound Space: 1500 acres. Units Type: apartments for sale, duplex For Sale, twin houses, Villas For Sale.
New Giza New Giza Development is a major Egyptian company that has been working in the field of real estate development for about 10 years and has presented a wide range of different projects that greatly serve customers and provide them with a distinctive model of high-end residential complexes.