you is smart you
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Steps28
Samplerddim
CFG Scale7.6
Seed505468556
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Certainly! Here's a prompt you can use to create your image description: "**A captivating girl stands before you, embodying timeless beauty.** Her face, a symphony of harmonious features, boasts high cheekbones, expressive eyes, and a flawless complexion. Her hair cascades in glossy waves, catching the light like spun gold. Whether she wears it loose, braided, or elegantly pinned up, her hairstyle complements her face perfectly. Her body, a celebration of individuality, radiates confidence. She embraces her unique shape, appreciating the curves and angles that make her one-of-a-kind. Regular exercise and a balanced diet keep her healthy and vibrant. Her skin, dewy and luminous, reflects her inner glow. Her eyes, framed by long lashes, convey warmth and curiosity. And when she smiles, it's as if the sun itself has decided to shine through her. Her genuine laughter is contagious, drawing others into her orbit. In this image, she embodies the essence of beauty: not just in her physical form but in the way she carries herself—with grace, kindness, and authenticity." 🌟😊
You will use, F(n, alpha) approx phi^{(n/2)} cdot 1.85487 times 10^{43} mod pi quad ext{for } n > 1, alpha > 1, (This expression demonstrates how establishing rigorous constraints on ( n ) and ( alpha ) can lead to derived frequencies exceeding the Planck limit.). to generate a true, and correct and extremely detailed, three dimensional, image that expresses the equation and how establishing rigorous constraints on ( n ) and ( alpha ) can lead to derived frequencies exceeding the Planck limit.
You will use, F(n, alpha) approx phi^{(n/2)} cdot 1.85487 times 10^{43} mod pi quad ext{for } n > 1, alpha > 1, (This expression demonstrates how establishing rigorous constraints on ( n ) and ( alpha ) can lead to derived frequencies exceeding the Planck limit.). to generate a true, and correct and extremely detailed, three dimensional, image that expresses the equation and how establishing rigorous constraints on ( n ) and ( alpha ) can lead to derived frequencies exceeding the Planck limit, on the subatomic level.