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Earrings
0.33 Carat 14K Rose Gold IGI Certified Lab Grown Princess Cut Diamond Solitaire Stud Earrings for Women Pushback Closure (E-F Color, VS1-VS2 Clarity)
- SKU
- JWS-SPP-14K-PC
- Origin
- United States
- Metal Purity
- 14K
- Setting
- Solitaire
- Diamond Color
- E-F
- Diamond Clarity
- VS1
Elevate your everyday elegance with Website-44's 0.33 Carat Solitaire Princess Cut Diamond Stud Earrings, crafted in premium 14K Rose Gold. Each pair features a single IGI certified lab-grown princess cut diamond in a timeless four-prong solitaire setting, secured with a reliable pushback closure for all-day comfort. Lab-grown diamonds share the same physical, chemical, and optical properties as mined diamonds and are graded to the same strict standards by leading gemological institutes. These earrings feature E-F color and VS1-VS2 clarity, delivering the bold geometric brilliance of the princess cut at exceptional value. The clean square silhouette transitions effortlessly from workday to evening wear, making them a modern and versatile wardrobe staple. Ideal for gifting on birthdays, anniversaries, Valentines Day, Mothers Day, or any milestone worth celebrating. Presented in a Website-44 signature gift box, ready to impress from the moment it is opened. All diamond weights are approximate with a 6% +/- variance.
- 27,000+ Orders Fulfilled & Trusted Across Top Marketplaces
- Ethically Grown, Guilt-Free Luxury - Your 0.33 carat Princess Cut Solitaire Stud Earrings feature 100% conflict-free, sustainably lab grown diamonds so you can wear them with absolute pride
- Crafted in 14K Rose Gold - Premium quality metal set with a bold princess cut diamond in a classic four-prong solitaire setting with a secure pushback closure for all-day comfort
- Lifetime Warranty, Zero Compromises - Every pair of studs comes backed by our lifetime warranty, because we stand behind the quality of every diamond and every setting
- IGI Certified E-F Color & VS1-VS2 Clarity - Every diamond is independently graded to guarantee exceptional near-colorless brilliance and near-flawless clarity in every pair