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Reference book crossword. Quick word search by mask. Foreign scientists-archaeologists

Crosswordist's Handbook / Index

Crosswordist's Handbook

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History and archeology / Archeology / Foreign archaeologists

(3)

RUS Alberta - Mexico

(4)

LICKY M. - England

LOTA Henri - France

George SMITH - England

HALL G.R. - England

(5)

ANDRE Walter - Germany

BOTTA Emil - Italy

BREL Henri - France

Woolley Leonard - England

GABRA Sami - Egypt

Niebuhr Carsten - Denmark

PARRO Andre - France

PETRI Flinders - England

PITRY William - England

SELER M. - America

FAKRI Ahmed - Egypt

ZOEGA Georg - Germany

CHILD Gordon - England

SCHMIDT W. - Austria

(6)

SELLIN Ernst - Germany

GONEIM Mohammed Zakaria - Egypt

CARTER Howard - England

LOFTUS - England

LAYARD Aston Henry - Frenchman who lived in England

MODSLEY A. - England

MORGAN - France

PETERS John P. - North America

RIVERS Pete - England

SARZAC Ernest - France

Schliemann Heinrich - Germany

(7)

BORCHARD Ludwig - Germany

GREBNER F. - Austria

DECHELETE Joseph - France

KOPPERS W. - Austria

G. KOSSINA - Germany

RAFIENS Carl - Germany

MASPERO Gaston - French of Italian origin

SALMON P. - France

STEPHANS John - America

Furlani D. - Italy

(8)

ANKERMAN B. - Austria

Banerjee - India

GERSTING John - England

GANILLAC Henri - France

CONTENEY Georges - France

MORTILIER Gabrielle - France

(9)

HERZFELD Ernst - Germany

DIELAFORFF consorts - France

INGOHOLT G. - Denmark

KOLDEVEY Robert - Germany

ROSELLINI Ippolito - Italy

ROWLINSON Henry Creswick - England

(10)

WINCKELMANN Johann Joachim - Germany

Word search to solve the crossword puzzle:

Replace each unknown letter with *. For example, dog * ka, * oshka, we ** a. Pairs е - ё, and - й are equated.



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Latest news of science and technology, new electronics:

Machine for thinning flowers in gardens 02.05.2024

In modern agriculture, technological progress is developing aimed at increasing the efficiency of plant care processes. The innovative Florix flower thinning machine was presented in Italy, designed to optimize the harvesting stage. This tool is equipped with mobile arms, allowing it to be easily adapted to the needs of the garden. The operator can adjust the speed of the thin wires by controlling them from the tractor cab using a joystick. This approach significantly increases the efficiency of the flower thinning process, providing the possibility of individual adjustment to the specific conditions of the garden, as well as the variety and type of fruit grown in it. After testing the Florix machine for two years on various types of fruit, the results were very encouraging. Farmers such as Filiberto Montanari, who has used a Florix machine for several years, have reported a significant reduction in the time and labor required to thin flowers. ... >>

Advanced Infrared Microscope 02.05.2024

Microscopes play an important role in scientific research, allowing scientists to delve into structures and processes invisible to the eye. However, various microscopy methods have their limitations, and among them was the limitation of resolution when using the infrared range. But the latest achievements of Japanese researchers from the University of Tokyo open up new prospects for studying the microworld. Scientists from the University of Tokyo have unveiled a new microscope that will revolutionize the capabilities of infrared microscopy. This advanced instrument allows you to see the internal structures of living bacteria with amazing clarity on the nanometer scale. Typically, mid-infrared microscopes are limited by low resolution, but the latest development from Japanese researchers overcomes these limitations. According to scientists, the developed microscope allows creating images with a resolution of up to 120 nanometers, which is 30 times higher than the resolution of traditional microscopes. ... >>

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Random news from the Archive

Optical gyroscope using rotating light 04.11.2018

Gyroscopes are devices by which unmanned vehicles, aircraft and portable electronic devices determine their orientation in three-dimensional space.

The first of the gyroscopes were based on massive disks rotating around their axis at high speed, but if you open any modern mobile phone, you can see that the size of the gyroscopes has been reduced to the size of a tiny chip. This was made possible through the use of a microelectromechanical sensor (MEMS), which measures the forces acting on two objects of identical mass moving in opposite directions. However, MEMS gyroscopes, due to their partially mechanical nature, have a number of limitations, including sensitivity, so scientists have developed optical versions of gyroscopes that perform the same function as MEMS gyroscopes.

Optical gyroscopes, which do not have moving mechanical parts, due to their high sensitivity, provide greater accuracy in measuring position in space using the Sagnac effect, which got its name in honor of the French physicist Georges Sagnac (Georges Sagnac). This effect is directly related to Albert Einstein's General Theory of Relativity, and to reproduce it, a beam of light is split into two beams moving in opposite directions along a closed circular light guide.

Changing the position of the sensor, or rather turning it around the axis of movement of the light rays, causes one beam to pass in front of the sensitive element with a slight lead relative to the other. Using three ring fibers, the axes of which coincide with the axes of three-dimensional space, it is possible to calculate the current spatial orientation of the entire sensor.

The most high-precision optical gyroscopes that have been created until recently were of the size comparable to the size of a golf ball, which made their use in portable electronic devices impossible. But recently, a group of engineers and scientists from the California Institute of Technology successfully solved a problem that has long been an obstacle to the miniaturization of optical gyroscopes. The result of their work was an optical gyroscope, which is 500 times smaller than similar gyroscopes of the previous generation, and the sensing elements of the new device can register 30 times less change in the phase of light than older devices.

The possibility of such a cardinal miniaturization of the optical gyroscope became possible through the use of a new technology of "mutual sensitivity enhancement".

The term "reciprocal" indicates that the technology affects both light beams to compensate for the detrimental effects of thermal noise, light scattering effects in waveguides, and other environmental interferences. This "mutual increase in sensitivity" made it possible to increase the signal-to-noise ratio by many times, which, in turn, made it possible to reduce the size of the waveguides and reduce the size of the optical gyroscope as a whole to a size comparable to the size of a grain of rice.

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