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  1. A fermionic condensate (or Fermi–Dirac condensate) is a superfluid phase formed by fermionic particles at low temperatures. It is closely related to the Bose–Einstein condensate, a superfluid phase formed by bosonic atoms under similar conditions.

  2. 21 Σεπ 2020 · The ground state of a fermionic condensate is well protected against perturbations in the presence of an isotropic gap. Regions of gap suppression, surfaces and vortex cores which host...

  3. Condensates in plant response to stresses. Plants are intrinsically interactive with their environment, rapidly responding to changes in light, temperature, soil condition, water status, and mechanical stimuli, as well as biotic challenges.

  4. 1 Οκτ 2023 · For example, the plant condensate, formed by the auxin responsive factors (ARF) in the cytoplasm, has a more rigid shell due to strong intermolecular interactions between ARF monomers there [6]. Through condensates, the ARF condensate sequesters ARF molecules and restricts their entry into the nucleus.

  5. Synthetic protein engineering-enabled designer condensates have leveraged phase separation for targeted functions in bioengineering; advancements in this area promise more accurate design and accelerated development of functional condensate applications in plant biology.

  6. 7 Αυγ 2020 · Fermion condensation is a phase transition occurring in a strongly correlated Fermi system upon a topological reconstruction of the Landau ground state and leading to the formation of a fermion condensate that possesses the dispersionless single-particle spectrum \ (\epsilon ( {\mathbf {p}})=0\) in the momentum-space region adjacent to the Fermi...

  7. 1 Ιαν 2023 · Water pollution and its types and impact. Acid rain contains sulfuric and nitric acid, which can damage tree leaves and bark and hurt the fine root hairs of many plants. Water pollution from substances can disrupt photosynthesis in aquatic plants.