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Search results for “powers of x”

21 results

Integrals with Exponentials

2026ReferenceSergey

Reference table of indefinite integrals of the exponential function and its products with powers of x.
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IMO 1997

Problem sheet

International mathematics competition for pre-university students, held annually since 1959. Six problems over two days.
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IMO 1991

Problem sheet

International mathematics competition for pre-university students, held annually since 1959. Six problems over two days.
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IMO 1985

Problem sheet

International mathematics competition for pre-university students, held annually since 1959. Six problems over two days.
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IMO 1989

Problem sheet

International mathematics competition for pre-university students, held annually since 1959. Six problems over two days.
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IMO 2015

Problem sheet

56th International Mathematical Olympiad. Thailand, 2015.
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IMO 1990

Problem sheet

International mathematics competition for pre-university students, held annually since 1959. Six problems over two days.
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Basic Operations on Matrices

2026TheorySergey

Addition, scalar multiplication, transposition and multiplication of matrices, along with subtraction, powers, and trace.
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Table of Basic Integrals

2026ReferenceSergey

Reference table of the basic indefinite integrals of the elementary functions: power, exponential, logarithmic and trigonometric.
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Table of Derivatives

2026ReferenceSergey

Reference table of the derivatives of the elementary functions: power, exponential, logarithmic, trigonometric and their inverses.
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Communicative Type “Municipal Employee” in the Media Space: Development of an Automatic Information and Analytical Assessment System

2024Journal articleIrina Karabulatova, Konstantin Vorontsov, Daniil Okolyshev, Ludan Zhang

Vestnik Volgogradskogo gosudarstvennogo universiteta Serija 2 Jazykoznanije

The article examines the issue of representing municipal government in the media space, followed by the proposed solution for automatically identifying signs of destructive and constructive positioning of communicative types of municipal employees in the public information space. The definition of the concept of the communicative type “municipal employee” with verification features is introduced. The results of the analysis of the organization of local self-government on the example of the Moscow region allowed us to conclude that the communicative type “municipal employee” reflects a diversified system of territorial communicative position within the regional government. The information obtained during the analysis of public information space attitudes regarding the activities of municipal employees can be automated with the method of identifying linguistic markers of emotivity to determine the communicative position of territorial authorities. The suggested methodology for effective automation of the studied subject area in the humanities has been verified as possessing a high scientific potential for further research. It is concluded that the development of technology for monitoring and forecasting public threats based on “soft power” methods through automatic and expert work to identify markers of evaluative presentation of communicative types of municipal employees is designed to help regional authorities achieve the desired results in ensuring territorial identity.
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Magic-Wavelength Optical Dipole Trap for Enhanced Cold Atom Manipulation

2025Conference talkT. A. Voronova, K. O. Babichev, Ксения Лискова, Alexey Legoshin +5

VIII International Conference on Quantum Technologies (ICQT 2025)

Cold atomic ensembles are among the most versatile tools in modern physics research. They play a key role in advancing next-generation frequency standards, qubit architectures, and quantum sensing technologies. Many experiments demand prolonged spatial confinement of atoms to facilitate extended interactions with electromagnetic fields, achievable through electric, magnetic, gravitational, or optical trapping mechanisms.

A cornerstone of atomic trapping is the magneto-optical trap (MOT), which relies on six counterpropagating laser beams and a pair of anti-Helmholtz coils to produce a radially symmetric quadrupole magnetic field with a central zero point.

Alternatively, optical dipole traps exploit the electric dipole interaction with a tightly focused, fardetuned high-power laser beam, offering weaker confinement than MOTs—typically below 1 mK. Unlike MOTs, these traps permit extremely weak optical excitation, circumventing limitations imposed by radiation pressure. Additionally, their trapping mechanism is largely insensitive to ground-state magnetic sublevels (neglecting tensor polarizability effects), enabling versatile configurations such as optical lattices.

Figure 1: Image of atoms trapped in the MOT. The atomic cloud is at the center of the image. The cloud dimensions are approximately 1 mm.

ble of confining Rb 87 atomic clouds at temperatures near 175 µ K. For dipole trapping, we adopted a farred-detuned (1012 nm) laser system, chosen for its dual functionality: we plan to use it both as a trapping beam and as one component in two-photon Rydberg excitation schemes. A further advantage of this configuration is its potential to confine Rydberg atoms while meeting the magic wavelength condition for ground-to-Rydberg transitions.

Magic-wavelength optical dipole traps offer particularly powerful advantages for cold atom manipulation. At this specific wavelength, the light shift for two atomic states becomes identical, effectively decoupling the internal atomic dynamics from the external motional states. This enables long coherence times for quantum operations while maintaining strong spatial confinement. Furthermore, such traps allow state-insensitive confinement, which is crucial for precision measurements and quantum information processing. The magic wavelength condition also facilitates efficient Rydberg excitation by providing identical trapping potentials for both ground and Rydberg states, minimizing decoherence during excitation processes.

We characterized the dipole trap intended for atom transfer, achieving a maximum depth of 3 mK under our experimental conditions—surpassing the Doppler cooling limit and ensuring efficient atomic confinement.

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