Use "energy quantum" in a sentence

1. 11 Quantum theory proposes that radiant energy is transmitted in discrete units.

2. So, in quantum mechanics, of course, you have dark energy and dark matter.

3. Current can flow between source and drain if a quantum dot energy level is aligned with the energy of incident tunneling electrons.

4. Current flow between source and drain is inhibited if no quantum dot energy level is aligned with the energy of incident tunneling electrons.

5. Sterilizing and deodorizing device for generating nitric oxide and quantum energy, having wind power generation function

6. Even then, a beam can't stand perfectly still, as quantum uncertainty requires it to hold an irretrievable half-quantum of energy and dance with unquenchable "zero-point motion."

7. Quantum theory states that orbiting electrons of an atom must occupy discrete energy levels in order to be stable.

8. Quantised coordinate rings encompass non-commutative algebras such as quantum matrices, quantum flag varieties and quantum Schubert cells.

9. Quantum mechanics.

10. Quantum entanglement.

11. After the success of quantum electrodynamics, Feynman turned to quantum gravity.

12. Ambipolar quantum dots

13. Other than principal quantum number (n), spectroscopic notation, magnetic quantum number (m) and the spin quantum number (s) – the Azimuthal quantum number is another set of quantum numbers which describe the unique quantum state of an electron. It can be defined as, The quantum number associated with the angular momentum of an atomic electron.

14. By cooling Bosons sufficiently, so that they fall into the lowest energy quantum state, you can put an arbitrary number in there

15. There is also active research examining the relationship between cryptographic problems and quantum physics (see quantum cryptography and quantum computer).

16. 29 Wolfram's early scientific work was mainly in high-energy physics, quantum field theory, and cosmology, and included several now-classic results.

17. The Azimuthal quantum number, ℓ, is the quantum number associated with the angular momentum of an atomic electron.It is also known as the angular momentum quantum number or the second quantum number

18. Beginning in 1973, Hawking moved into the study of quantum gravity and quantum mechanics.

19. Each orbital in an atom is characterized by a unique set of values of the three quantum numbers n, l, and m, which respectively correspond to the electron's energy, angular momentum, and an angular momentum vector component (the magnetic quantum number).

20. The Quantum Astrophysicists Guild

21. In the SISQ (Silicon spin quantum bits) project, researchers proposed ambipolar quantum dots in Si.

22. Absolute PL Quantum Yield spectrometers

23. It's a quantum entangled telegraph.

24. Gartner describes quantum Computing as: “[T]the use of atomic quantum states to effect computation

25. When the encapsulated quantum dots are used, the quantum efficiency and the dispersion stability can be improved.

26. Chemistry: Quantum Mechanics and Spectroscopy I

27. Logic gates can be made from quantum mechanical effects (though quantum computing usually diverges from boolean design).

28. It is a purely quantum phenomenon.

29. Each person receives his proper quantum.

30. Synonyms for Atomology include nuclear physics, atomics, atomistics, nucleonics, particle physics, quantum mechanics, atomic physics, quantum physics and …

31. I know, quantum physics, parable calculus.

32. Our research provides a fundamental understanding of the relationship between the surface energy of cement phases (the phases in Clinker) and their electronic structure using quantum mechanics

33. Recently, the concept on ‘forgeable quantum messages’ in Arbitrated quantum signature schemes was introduced by Kim et al

34. Primo ostendit populi servitutem, seu Abjectionem quantum ad amissionem gloriae; secundo quantum ad violationem amicitiae, ibi, plorans ploravit etc.

35. Well, it's actually topological quantum order.

36. Where did quantum theory come from?

37. The effect is important in quantum optics, magnetic resonance and quantum computing, and is named after Isidor Isaac Rabi.

38. 2 days ago · Quantum Showdown: Competing Methods of Solving Quantum Systems Put to the Test

39. Local Quantum Physics Fields, Particles, Algebras, 2020

40. Encapsulated quantum dots and device using same

41. Quantum mechanics was developed in the 1920s.

42. The first model of quantum mechanics (Heisenberg, 1925) represented the theory's operators by infinite-dimensional matrices acting on quantum states.

43. " Well, that's what quantum mechanics teaches us.

44. There are many synonyms of Atomology which include Atomics, Particle Physics, Quantum Mechanics, Atomic Physics, Atomistics, Nucleonics, Quantum Physics, etc.

45. Aminated Graphene Quantum Dots have negative charges

46. The first derives from the quantum theory.

47. Renewable energy includes energy, energy, energy, bio - energy, geothermal energy and energy.

48. Here we provide a very simple explanation of what quantum Computing is, the key promises of quantum computers and how

49. Quantum Componentry is of rising importance in the quantum computing ecosystem as vendors seek to not only achieve economic advantage but also to create a quantum system that can be scaled for commercial use

50. Quantum Turing Machines and Quantum Gate Arrays serve as formal models of quantum computation, which are probabilistic models of computation using interference of configurations and transition rules specified by probability amplitudes instead of probabilities.

51. While the computers we use today are based on transistors, the concept of a quantum computer relies on quantum mechanical phenomena.

52. We're about to make the quantum leap.

53. The sensors are designed using quantum physics.

54. Thus these symbols now denote quantum states.

55. Computational Astrochemistry/Algorithm development for Quantum Dynamics Calculations

56. Colliders are interstellar objects, like the Quantum Foam

57. It's possible if you stabilize the quantum flux.

58. Do Deeper Principles Underlie Quantum Uncertainty and Nonlocality?

59. Nevertheless he remained highly sceptical of quantum theory.

60. Short lecture on operator Commutators in quantum mechanics

61. Quantum optics is not just theoretical; some modern devices, such as lasers, have principles of operation that depend on quantum mechanics.

62. (Phys Scr 90:025101, 2015), and it has been shown that there always exists such a forgeable quantum message for every known Arbitrated quantum signature scheme with four quantum encryption operators and the specific two rotation operators.

63. This long-standing problem is solved here by showing that, given fault-tolerant quantum computers, quantum key distribution over an Arbitrarily long distance

64. Many Bosons can occupy a single quantum state

65. Quantum dot devices having proximity-placed acceptor impurities

66. Quantum announced its results after the market closed.

67. There is only an abstract quantum physical description.

68. The angular momentum quantum number determines the shape of the electron's orbital.Arnold Sommerfeld proposed the Azimuthal quantum number, based on the Bohr …

69. Such models are used for universal adiabatic quantum computation.

70. The emergence of quantum effects on a macroscopic level.

71. It has the spin-parity quantum numbers JP = 1+.

72. Superfluidity flows from the counterintuitive rules of quantum mechanics.

73. Quantum theory was not wished upon us by theorists.

74. Do you know who originated the theory of quantum?

75. We must face the problems of quantum theory later!

76. 'Bolometers are now entering the field of quantum technology and perhaps their first application could be in reading out the quantum information from qubits

77. Bolometers capable of detecting single microwave photons would be very useful in creating quantum computers and other technologies that use superconducting quantum bits (qubits)

78. This picture is that presented by a quantum state.

79. The quantum theory is not just an esoteric addendum.

80. In quantum physics, you’ll often work with Hermitian Adjoints