will gravity will be quantized or not ? if not then universe will be still probablistic ifquantum mechanics already introduces randomness ? so if gravity wont quantized still universe will be probabilisitc ?

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Whether gravity will be quantized is one of the biggest open questions in physics. While most physicists believe gravity must be quantized to align with quantum mechanics, if it is not, the universe would still remain probabilistic due to quantum mechanics' inherent randomness in the behavior of all...
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Whether gravity will be quantized is one of the biggest open questions in physics. While most physicists believe gravity must be quantized to align with quantum mechanics, if it is not, the universe would still remain probabilistic due to quantum mechanics' inherent randomness in the behavior of all matter read less
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PHYSICS TUTOR FOR ALL BOARDS, JEE MAIN, JEE ADVANCE AND SPECIALLY FOR NEET

Gravity is most likely quantized, but a minority serious proposal says it stays classical with random coupling to quantum matter.Either way, the universe remains fundamentally probabilistic because quantum mechanics already introduces intrinsic randomness, gravity doesn't remove it.
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Even if gravity is not quantized, the universe would still be probabilistic because the fundamental source of randomness comes from quantum mechanics itself, not from gravity..
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Gold medalist from Delhi university and 10+ year teaching experience

Gravity can't be quantised as we realised that it can be a wave so yes universe can be probabilistic as per Quantum theories. Einstein also assumed the same
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"Rajesh Kumar N: Guiding Young Minds from 1 to 12 with Expertise and Care"

Gravity is most likely quantized, but a minority serious proposal says it stays classical with random coupling to quantum matter.Either way, the universe remains fundamentally probabilistic because quantum mechanics already introduces intrinsic randomness
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IIT Delhi Graduate | IIT JEE AIR 2112 | Super 30 Student | Expert PCM Foundation

Scientists are still not sure if gravity is made of tiny particles. This is an unsolved question. But the universe is already random because very small things, like atoms, behave in a random way. This comes from quantum mechanics. So even if gravity is not made of tiny parts, the universe will still...
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Scientists are still not sure if gravity is made of tiny particles. This is an unsolved question. But the universe is already random because very small things, like atoms, behave in a random way. This comes from quantum mechanics. So even if gravity is not made of tiny parts, the universe will still be probabilistic because small particles already act randomly.. read less
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PHYSICS CHEMISTRY MATHEMATICS TEACHER FROM LAST 10 YEARS

Whether gravity is quantized remains an unsolved, central problem in theoretical physics. Most physicists believe it must be, but a minority proposal suggests it remains a classical, non-quantum force. Regardless of whether gravity is quantized, the universe remains fundamentally probabilistic due to...
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Whether gravity is quantized remains an unsolved, central problem in theoretical physics. Most physicists believe it must be, but a minority proposal suggests it remains a classical, non-quantum force. Regardless of whether gravity is quantized, the universe remains fundamentally probabilistic due to the intrinsic, established randomness of quantum mechanics in matter and energy. Here is a breakdown of the implications: If Gravity is Quantized: Spacetime itself would likely be quantized, behaving like a discrete, discrete mesh (as in Loop Quantum Gravity or String Theory) rather than a continuous, smooth surface. Gravity would behave as a quantized field, mediated by gravitons, similar to other forces. If Gravity is Not Quantized (Classical Gravity): If gravity remains "classical" (smooth, non-quantum), it would likely couple randomly to quantum matter. This approach suggests a hybrid theory where space-time curves classically, yet quantum matter remains probabilistic. Probabilistic Nature Remains: Because quantum mechanics, which governs atomic-level mechanics, is inherent in the universe's structure, the fundamental randomness (e.g., Heisenberg uncertainty) exists regardless of how gravity behaves on large or small scales read less
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Whether gravity will be quantized remains one of physics' biggest open questions. While most physicists believe it must be quantized to unify with quantum mechanics (QM), some theories suggest gravity could remain a fundamental classical force. Regardless, the universe remains fundamentally probabilistic...
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Whether gravity will be quantized remains one of physics' biggest open questions. While most physicists believe it must be quantized to unify with quantum mechanics (QM), some theories suggest gravity could remain afundamental classical force. Regardless,the universe remains fundamentallyprobabilisticbecausequantum mechanicsalready introduces intrinsic randomness that doesn't disappear. read less
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Science and Math Teaching Professional

Gravity is still an open question—many theories try to quantize it, but it’s not confirmed yet. Even if gravity remains classical, the universe would still be probabilistic because quantum mechanics already introduces randomness at a fundamental level. Gravity mainly affects large-scale structure,...
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Gravity is still an open question—many theories try to quantize it, but it’s not confirmed yet. Even if gravity remains classical, the universe would still be probabilistic because quantum mechanics already introduces randomness at a fundamental level. Gravity mainly affects large-scale structure, while quantum uncertainty governs microscopic behavior, so overall reality would still be probabilistic. read less
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8+ Years of Helping Students Succeed in Mathematics

In the standard quantum gravity research program the expectation is that gravity should be quantized just like the other forces, because otherwise General Relativity and quantum field theory sit awkwardly together at a fundamental level. However, some modern approaches explore schemes where gravity remains...
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In the standard quantum gravity research program the expectation is that gravity should be quantized just like the other forces, because otherwise General Relativity and quantum field theory sit awkwardly together at a fundamental level.However, some modern approaches explore schemes where gravity remains classical but is coupled to quantum matter in a andom way, so that the total theory still looks quantum‑like on large scales. So: right now, no one can say definitively “yes” or “no”—experiments and theory are still probing this. read less
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