@jhwtpo: every single lyric is exactly how i feel #prettyisntpretty #oliviarodrigo #guts #fyp #foryoupage #relatable

juliet ౨ৎ
juliet ౨ৎ
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Friday 14 February 2025 03:38:28 GMT
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jayjay_charli3
Jay 🆒 bae💋🪩 :
this but she stole my diary and wrote two albums about it
2025-02-14 03:44:23
2076
mirella_el
Mirella♡ :
pretty isn't pretty is MY song
2025-02-23 13:36:15
190
bjehabe
rüya :
lacy, brutal, jealousy, pretty isnt pretty hep benim notlarimdan 🙏
2025-02-24 15:54:50
11
certifiedollx
certifiedollx :
me and jealousy jealousy
2025-02-14 11:55:04
580
slymh1
ivsi :
pretty isn't pretty has BEEN my song
2025-02-26 15:42:22
7
danii.xee
dani (billie’s version) :
this but with lacy jealousy jealousy and pretty isn’t pretty
2025-02-23 20:55:18
77
tr3.ss
t ⭒ :
she stole my diary and wrote ballad of a homeschooled girl 😔
2025-02-24 05:48:19
57
bbemaihan
pop ice taro :
she stole my diary and wrote lacy and jealousy, jealousy
2025-02-23 12:44:05
81
ur.fav_brunette.e
💜ari anna ✝️ :
me and lacy
2025-02-27 01:58:02
2
bina_sej222
𝐁𝐈𝐍𝐀™ 🌀 :
this but With lacy🙏
2025-02-15 11:10:48
69
therealcyn4
🤑🐦🌸WOWZERSS🌸🐦🤑 :
Stole my diary and wrote jealousy jealousy
2025-02-24 08:29:41
10
adi_abraham
adï ♡︎ :
Me when hope u okay and Lacy 🖤
2025-02-27 09:33:00
1
savannah2609
Savvy (Taylor’s version🫶🏼🐍) :
This but with like a thousand of her songs, heavy on making the bed and the grudge tho.
2025-02-27 04:29:41
1
brookkai1
💜Brook (spilled)💜 :
Stole my diary and made pretty isn't pretty abt me and good 4 u abt me
2025-02-26 14:10:14
1
theonlypeachplayz
Peach Playz (Taylor's Version) :
She Stole My Diary And Wrote Brutal
2025-02-27 10:57:09
1
cookieyt_slays
❀𝐌𝐢𝐥𝐥𝐚❀🐆🎱 :
She stole my diary and wrote Lacy and Deja vu
2025-02-23 01:42:37
17
stev_ducks123
Stev_ducks🍂☕️🍪 :
Reposted
2025-02-25 20:52:09
1
.melaniemartinezs_wife
.bree_issilly0 :
this but she stole my diary and wrote Pretty isn’t pretty, jealousy jealousy, brutal and lacy
2025-02-27 04:33:30
1
alaina.marsh
𝒜𝓁𝒶𝒾𝓃𝒶♥︎ :
This and lacy
2025-02-26 02:07:28
3
sallyyoung74
user30005886 :
so real her lyrics r so relatable
2025-02-26 22:33:26
2
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Quantum computing is revolutionizing the way we process information by harnessing the fundamental principles of quantum mechanics—superposition, entanglement, and spin coherence. Unlike classical bits, which exist in definite states of 0 or 1, quantum bits (qubits) can exist in superpositions of states, enabling massively parallel computations. Entanglement allows qubits to share information instantaneously across vast distances, while coherence ensures that quantum states remain stable long enough for meaningful computations.   One promising platform for realizing practical quantum computing is nitrogen-vacancy (NV) centers in diamond. These atomic-scale defects exhibit remarkable quantum properties, such as long coherence times even at room temperature. By precisely controlling electron and nuclear spin states with optical and microwave techniques, researchers are developing robust qubits capable of performing quantum operations with high fidelity.   The challenge lies in mitigating decoherence, improving quantum error correction, and scaling up qubit networks to achieve fault-tolerant quantum computation. Advances in spin manipulation, quantum entanglement distribution, and hybrid quantum-classical architectures are paving the way for groundbreaking applications in cryptography, optimization, and material science.   As we unlock deeper control over quantum interactions and explore novel ways to stabilize and manipulate qubits, we move closer to a future where quantum processors outperform classical supercomputers in solving problems that were once thought impossible. The quantum revolution is just beginning—one entangled state at a time. #sciencecommunication #technology #quantumphysics #physics #quantumcomputing #stem #science #physicist #diamond
Quantum computing is revolutionizing the way we process information by harnessing the fundamental principles of quantum mechanics—superposition, entanglement, and spin coherence. Unlike classical bits, which exist in definite states of 0 or 1, quantum bits (qubits) can exist in superpositions of states, enabling massively parallel computations. Entanglement allows qubits to share information instantaneously across vast distances, while coherence ensures that quantum states remain stable long enough for meaningful computations. One promising platform for realizing practical quantum computing is nitrogen-vacancy (NV) centers in diamond. These atomic-scale defects exhibit remarkable quantum properties, such as long coherence times even at room temperature. By precisely controlling electron and nuclear spin states with optical and microwave techniques, researchers are developing robust qubits capable of performing quantum operations with high fidelity. The challenge lies in mitigating decoherence, improving quantum error correction, and scaling up qubit networks to achieve fault-tolerant quantum computation. Advances in spin manipulation, quantum entanglement distribution, and hybrid quantum-classical architectures are paving the way for groundbreaking applications in cryptography, optimization, and material science. As we unlock deeper control over quantum interactions and explore novel ways to stabilize and manipulate qubits, we move closer to a future where quantum processors outperform classical supercomputers in solving problems that were once thought impossible. The quantum revolution is just beginning—one entangled state at a time. #sciencecommunication #technology #quantumphysics #physics #quantumcomputing #stem #science #physicist #diamond

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