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1

Öztekin, Handan Balgetir, and Serpil Tatlipinar. "On Some Curves in Galilean Plane and 3-Dimensional Galilean Space." Journal of Dynamical Systems and Geometric Theories 10, no. 2 (2012): 189–96. http://dx.doi.org/10.1080/1726037x.2012.10698620.

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Horváthy, Peter A., and Mikhail S. Plyushchay. "Non-relativistic anyons, exotic Galilean symmetry and noncommutative plane." Journal of High Energy Physics 2002, no. 06 (2002): 033. http://dx.doi.org/10.1088/1126-6708/2002/06/033.

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Akbiyik, Mücahi̇t, and Sali̇m Yüce. "The areas of the trajectory surface under the Galilean motions in the Galilean space." International Journal of Geometric Methods in Modern Physics 15, no. 09 (2018): 1850162. http://dx.doi.org/10.1142/s0219887818501621.

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In the literature, Holditch theorem was obtained under periodic rotation and translation motions in [H. Holditch, Geometrical theorem, Q. J. Pure Appl. Math. 2 (1858) 38] or periodic shear and translation motions in [O. Röschel, Der satz von Holditch in der isotropen ebene. Abh. Braunschweig. Wiss. Ges. 36 (1984) 27–32]. In this paper, by introducing the projection of a vector onto a plane, scalar area, area vector of a surface, we investigate Holditch theorem under periodic rotation, translation and shear motions. We give two interpretations for the Holditch type theorem in Galilean space.
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Elsharkawy, Ayman, and Noha Elsharkawy. "Some Characterizations of Quasi-Curves in Galilean 3-Space." European Journal of Pure and Applied Mathematics 18, no. 2 (2025): 5875. https://doi.org/10.29020/nybg.ejpam.v18i2.5875.

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This study investigates the theoretical basis of the quasi-frame in three-dimensional Galilean geometry. We derive mathematical expressions for the position vectors of curves defined in relation to this quasi-frame and establish the quasi equations that govern their behavior. Our findings demonstrate the absence of normal curves in Galilean 3-space, challenging existingtheories in the field and providing new insights into the geometric structure of the Galilean 3-space. We explore the geometric properties of quasi-rectifying and quasi-osculating curves, establishing the necessary and sufficien
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Kurudirek, Abdullah, and Hüseyin Akca. "On the Concept of Circle and Angle in Galilean Plane." OALib 02, no. 02 (2015): 1–5. http://dx.doi.org/10.4236/oalib.1101256.

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6

Yoon, Dae Won. "Weighted minimal translation surfaces in the Galilean space with density." Open Mathematics 15, no. 1 (2017): 459–66. http://dx.doi.org/10.1515/math-2017-0043.

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Abstract Translation surfaces in the Galilean 3-space G3 have two types according to the isotropic and non-isotropic plane curves. In this paper, we study a translation surface in G3 with a log-linear density and classify such a surface with vanishing weighted mean curvature.
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7

Morgado, B., G. Benedetti-Rossi, A. R. Gomes-Júnior, et al. "First stellar occultation by the Galilean moon Europa and upcoming events between 2019 and 2021." Astronomy & Astrophysics 626 (June 2019): L4. http://dx.doi.org/10.1051/0004-6361/201935500.

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Context. Bright stellar positions are now known with an uncertainty below 1 mas thanks to Gaia DR2. Between 2019–2020, the Galactic plane will be the background of Jupiter. The dense stellar background will lead to an increase in the number of occultations, while the Gaia DR2 catalogue will reduce the prediction uncertainties for the shadow path. Aims. We observed a stellar occultation by the Galilean moon Europa (J2) and propose a campaign for observing stellar occultations for all Galilean moons. Methods. During a predicted period of time, we measured the light flux of the occulted star and
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8

Chonan, S., and T. Hayase. "Stress Analysis of a Spinning Annular Disk to a Stationary Distributed, In-Plane Edge Load." Journal of Vibration and Acoustics 109, no. 3 (1987): 277–82. http://dx.doi.org/10.1115/1.3269432.

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In-plane stress distribution in a spinning annular disk is studied analytically. The disk is clamped at the inner boundary and subjected to a stationary distributed load along the outer boundary. The solution is determined through a Galilean transformation by using the Lame´ potential functions and the two-dimensional elasticity theory. Numerical results are presented for WA vitrified grinding wheels with outer radii of 50 mm and inner radii of 25 mm rotating at 3000 rpm and 15000 rpm.
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9

Duval, C., and P. A. Horváthy. "Exotic Galilean symmetry in the non-commutative plane and the Hall effect." Journal of Physics A: Mathematical and General 34, no. 47 (2001): 10097–107. http://dx.doi.org/10.1088/0305-4470/34/47/314.

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10

Öztürk, Ufuk, Emilija Nesovic, and Öztürk Koç. "On T-slant, N-slant and B-slant helices in pseudo-Galilean space G13." Filomat 32, no. 1 (2018): 245–53. http://dx.doi.org/10.2298/fil1801245o.

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In this paper, we introduce T-slant, N-slant and B-slant helices in the pseudo-Galilean space G13 and define an angle between the spacelike and the timelike isotropic vector lying in the pseudo-Euclidean plane x = 0. In particular, we obtain the explicit parameter equations of the T-slant helices and prove that there are no N-slant and B-slant helices in G13. We also prove that there are no Darboux helices in the same space.
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11

Demir, Çetin, İsmail Gök, and Yusuf Yayli. "A new aspect of rectifying curves and ruled surfaces in Galilean 3-space." Filomat 32, no. 8 (2018): 2953–62. http://dx.doi.org/10.2298/fil1808953d.

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A curve is named as rectifying curve if its position vector always lies in its rectifying plane. There are lots of papers about rectifying curves in Euclidean and Minkowski spaces. In this paper, we give some relations between extended rectifying curves and their modified Darboux vector fields in Galilean 3-Space. The other aim of the paper is to introduce the ruled surfaces whose base curve is rectifying curve. Further, we prove that the parameter curve of the surface is a geodesic.
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12

Vasundhara, R., J. E. Arlot, and P. Descamps. "New constants for Sampson-Lieske theory of the Galilean satellites of Jupiter from mutual occultation data." Symposium - International Astronomical Union 172 (1996): 145–50. http://dx.doi.org/10.1017/s0074180900127263.

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New constants for Sampson-Lieske theory of the Galilean Satellites have been derived using 6360 individual photographic positions (1891–1990) and 438 pseudo astrometric positions from mutual occultations during 1973, 1979, 1985 and 1991. Using these new sets of constants, significant improvement is noticed in the O-C values of the sky plane coordinates of the mutual event data set and residuals in longitude for Io and Europa are found to improve. Problems concerning the inclusion of mutual event data in attempting evaluation of secular variations of the mean motions of the satellites are discu
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13

Mamadaliev, Botirjon, Bekzod Sultanov, and Sherzodbek Ismoilov. "On geometry on a two-dimensional plane in a five-dimensional pseudo-Euclidean space of index two." E3S Web of Conferences 587 (2024): 01025. http://dx.doi.org/10.1051/e3sconf/202458701025.

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The study of the geometry of surfaces having a codimension greater than one in multidimensional spaces is one of the most difficult problems in geometry. When the multidimensional geometry under consideration has a pseudo-Euclidean metric, its complexity increases. Two-dimensional surfaces in a five-dimensional pseudo-Euclidean space of index two are considered in the article. Geometry on two-dimensional planes of this space can be of three types, Euclidean, Minkowski, and Galilean. Therefore, two-dimensional surfaces are also divided into three types according to the geometry on the tangent p
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14

Pashkevich, V. V., and A. N. Vershkov. "Geodetic nutation of Jupiter and its Galilean moons." Publications of the Pulkovo Observatory 231 (December 2023): 37–64. http://dx.doi.org/10.31725/0367-7966-2023-231-5.

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In the article, the relativistic effect of geodetic nutation in the rotation of Jupiter and its Galilean moons (Io, Europa, Ganymede and Callisto) was investigated in two ways over an 800-year time interval. As a result, for the first time, the most significant periodic terms of the geodetic rotation of these celestial bodies relative to: a) the barycenter of the Solar system and the plane of the mean orbit of Jupiter of the epoch J2000.0 in the Euler angles, in the disturbing terms of the physical libration and in the absolute magnitude of the angular rotation vector of the geodetic rotation
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15

Çömez, I., and MA Güler. "On the contact problem of a moving rigid cylindrical punch sliding over an orthotropic layer bonded to an isotropic half plane." Mathematics and Mechanics of Solids 25, no. 10 (2020): 1924–42. http://dx.doi.org/10.1177/1081286520915272.

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In this study, the frictional moving contact problem for an orthotropic layer bonded to an isotropic half plane under the action of a sliding rigid cylindrical punch is considered. Boundary conditions of the problem include the normal and tangential forces applied to the layer with a cylindrical punch moving on the surface of the layer in the lateral direction at a constant velocity V. It is assumed that the contact area is subjected to the sliding condition where Coulomb’⣙s law is used to relate the tangential traction to the normal traction. Using the Fourier integral transform technique a
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16

Siraeva, Dilara. "The invariant solution with blow-up for the gas dynamics equations from one-parameter three-dimensional subalgebra consisting of space, Galilean and pressure translations." AIMS Mathematics 9, no. 1 (2023): 89–98. http://dx.doi.org/10.3934/math.2024006.

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<abstract><p>In this paper, new results were presented on the symmetry reduction of gas dynamics system of partial differential equations following the general framework of Lev Ovsyannikov's article "The "podmodeli" program, Gas dynamics." We considered the gas dynamics equations with an equation of state prescribing the pressure as the sum of density function and entropy function. This system has a 12-dimensional Lie algebra and we considered its certain three-dimensional subalgebra generated by space translations, Galilean translations and pressure translation. For this subalgebr
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17

Serra, Isabel. "Galileo’s law of free fall and modern science." Perspectivas 8, no. 1 (2023): 246–62. http://dx.doi.org/10.20873/rpv8n1-66.

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The clearly recognized innovation in Galileo’s work on free fall has been a stimulus and a challenge for the history and philosophy of science. This article will analyze the experimental and theoretical aspects of Galileo’s work on free fall. It draws on several authors’ results to justify the claim that the research model established by Galileo remains valid today (Sections 2 and 3). The article draws this parallel with current science by focusing on Galileo’s method, way of considering scientific instruments, and practice of confrontation between theory and experiments. The Galilean mode of
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18

Reznik, Gregory, and Sergey Kravtsov. "Monopoles in a zonal flow with constant shear on a quasi-geostrophic f-plane: Effects of Galilean non-invariance." Physics of Fluids 33, no. 11 (2021): 116606. http://dx.doi.org/10.1063/5.0069722.

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19

Chen, Ru, and Glenn R. Flierl. "The Contribution of Striations to the Eddy Energy Budget and Mixing: Diagnostic Frameworks and Results in a Quasigeostrophic Barotropic System with Mean Flow." Journal of Physical Oceanography 45, no. 8 (2015): 2095–113. http://dx.doi.org/10.1175/jpo-d-14-0199.1.

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AbstractLow-frequency oceanic motions have banded structures termed “striations.” Since these striations embedded in large-scale gyre flows can have large amplitudes, the authors investigated the effect of mean flow on their directions as well as their contribution to energetics and mixing using a β-plane, barotropic, quasigeostrophic ocean model. In spite of the model simplicity, striations are always found to exist regardless of the imposed barotropic mean flow. However, their properties are sensitive to the mean flow. Rhines jets move with the mean flow and are not necessarily striations. I
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20

ULHOA, SÉRGIO C., FAQIR C. KHANNA, and ADEMIR E. SANTANA. "GALILEAN COVARIANCE AND THE GRAVITATIONAL FIELD." International Journal of Modern Physics A 24, no. 28n29 (2009): 5287–97. http://dx.doi.org/10.1142/s0217751x09046333.

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This paper is concerned with the development of a gravitational field theory having locally a covariant version of the Galilei group. We show that this Galilean gravity can be used to study the advance of perihelion of a planet, following in parallel with the result of the (relativistic) theory of general relativity in the post-Newtonian approximation.
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21

Krasnobokyi, Yurii, Ihor Tkachenko, and Kateryna Ilnitska. "TO THE METHOD OF STUDYING THE BASICS OF SPECIAL THEORY OF RELATIVITY." Collection of Scientific Papers of Uman State Pedagogical University, no. 2 (June 29, 2022): 166–81. http://dx.doi.org/10.31499/2307-4906.2.2022.262956.

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Special Theory of Relativity (STR) is a fundamental physical theory that underlies modern physics andhas enormous worldview potential. At the same time, in the process of teaching (studying) the elementsof STR in school and higher education institutions face a number of problems. These problems areprimarily related to the complex mathematical apparatus that describes it; consideration of imaginarymodel representations that do not really exist in nature; formation of the concept of “event” anddistinguishing under different initial conditions of the concepts of “relative”, “portable” and“absolut
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22

Pashkevich, V. V., and A. N. Vershkov. "Secular geodetic rotation of celestial bodies in the system of Jupiter’s moons." Publications of the Pulkovo Observatory 235 (December 2024): 51–68. https://doi.org/10.31725/0367-7966-2024-235-51-68.

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This article studies the relativistic effect of geodetic precession in the rotation around their axes of Jupiter and its 94 satellites for which ephemerides are known. As a result, the most significant secular terms of the geodetic rotation of these celestial bodies were determined for the first time: 1. for Jupiter relative to the barycenter of the Solar System and the plane of the mean orbit of Jupiter at the epoch J2000.0 in Euler angles, in the perturbing terms of physical libration and in the absolute value of the vector of angular rotation of the geodetic rotation of the body under study
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23

PAVLOTSKY, I. P., and M. STRIANESE. "IRREVERSIBILITY IN CLASSICAL MECHANICS AS A CONSEQUENCE OF POINCARÉ GROUP." International Journal of Modern Physics B 10, no. 21 (1996): 2675–85. http://dx.doi.org/10.1142/s0217979296001185.

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In the post-Galilean approximation of Poincaré Group (i.e. in the approximation in which the corrections of order O (c−2), c denoting the light velocity, to the Galilei group are taken in account) the Lagrangians are singular on a submanifold of the phase space. It is a local singularity, which differs from the ones considered by Dirac. The dynamical properties are essentially peculiar on the studied singular surfaces.1–4 In particular, on some submanifolds of the singular manifold the velocities are not determined uniquely: in each point of the submanifold we get the infinite set of component
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24

Madeira, Gustavo, André Izidoro, and Silvia M. Giuliatti Winter. "Building the Galilean moons system via pebble accretion and migration: a primordial resonant chain." Monthly Notices of the Royal Astronomical Society 504, no. 2 (2021): 1854–72. http://dx.doi.org/10.1093/mnras/stab986.

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ABSTRACT The origins of the Galilean satellites – namely Io, Europa, Ganymede, and Callisto – is not fully understood yet. Here we use N-body numerical simulations to study the formation of Galilean satellites in a gaseous circumplanetary disc around Jupiter. Our model includes the effects of pebble accretion, gas-driven migration, and gas tidal damping and drag. Satellitesimals in our simulations first grow via pebble accretion and start to migrate inwards. When they reach the trap at the disc inner edge, scattering events and collisions take place promoting additional growth. Growing satelli
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25

Fayolle, M., D. Dirkx, P. N. A. M. Visser, and V. Lainey. "Analytical framework for mutual approximations." Astronomy & Astrophysics 652 (August 2021): A93. http://dx.doi.org/10.1051/0004-6361/202141261.

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Context. The apparent close encounters of two satellites in the plane of the sky, called mutual approximations, have been suggested as a different type of astrometric observation to refine the moons’ ephemerides. The main observables are then the central instants of the close encounters, which have the advantage of being free of any scaling and orientation errors. However, no analytical formulation is available yet for the observation partials of these central instants, leaving numerical approaches or alternative observables (i.e. derivatives of the apparent distance instead of central instant
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26

Paita, F., A. Celletti, and G. Pucacco. "Element history of the Laplace resonance: a dynamical approach." Astronomy & Astrophysics 617 (September 2018): A35. http://dx.doi.org/10.1051/0004-6361/201832856.

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Context. We consider the three-body mean motion resonance defined by the Jovian moons Io, Europa, and Ganymede, which is commonly known as the Laplace resonance. In terms of the moons’ mean longitudes λ1 (Io), λ2 (Europa), and λ3 (Ganymede), this resonance is described by the librating argument φL ≡ λ1 − 3λ2 + 2λ3 ≈ 180°, which is the sum of φ12 ≡ λ1 − 2λ2 + ϖ2 ≈ 180° and φ23 ≡ λ2 − 2λ3 + ϖ2 ≈ 0°, where ϖ2 denotes Europa’s longitude of perijove. Aims. In particular, we construct approximate models for the evolution of the librating argument φL over the period of 100 yr, focusing on its princip
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27

Van Dyck, Maarten. "Hoe Galileo Galilei de valwet ontdekte, en het verschil dat dit maakt." Algemeen Nederlands Tijdschrift voor Wijsbegeerte 113, no. 1 (2021): 81–105. http://dx.doi.org/10.5117/antw2021.1.004.vand.

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Abstract How Galileo Galilei discovered the law of fall, and the difference that this makes Galileo’s law of fall is one of the crucial building blocks of classical mechanics. The question how this law was discovered has often been a topic of debate. This article offers a reconstruction of the developments within Galileo’s research that led to the discovery of the law. This reconstruction is offered to make a philosophical point regarding the epistemic status of experimental results: Galileo’s experiments can offer sufficient justification for the acceptance of the law of fall only because of
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28

Hendrix, Scott E. "Filosofie přírody, nebo věda v předmoderních epistemických režimech? Případ astrologie Alberta Velikého a Galilea Galilei." Teorie vědy / Theory of Science 34, no. 3 (2011): 111–32. http://dx.doi.org/10.46938/tv.2011.72.

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Scholarly attempts to analyze the history of science sometime suffer from an imprecise use of terms. In order to understand accurately how science has developed and from where it draws its roots, researchers should be careful to recognize that epistemic regimes change over time and acceptable forms of knowledge production are contingent upon the hegemonic discourse informing the epistemic regime of any given period. In order to understand the importance of this point, I apply the techniques of historical epistemology to an analysis of the place of the study of astrology in the medieval and ear
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29

Bogen, Steffen. "Diagramm, Experiment und die Anschaulichkeit von Theorie: zur Schematisierung der Bewegung bei Galileo Galilei." Das Mittelalter 22, no. 2 (2017): 431–55. http://dx.doi.org/10.1515/mial-2017-0025.

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AbstractHow and where do relationships arise that can be rendered diagrammatically? Do they emerge through the process of human reasoning or through the act of drawing on surface? Or do they unfold in the dynamic processes at play in observable reality? The following article argues that the latter is the case, making recourse to the philosophy of Charles Sanders Peirce. As a case study, it explores Galileo Galilei’s investigation of free-fall motion and examines both printed texts and manuscripts in order to understand how Galilei arrived at his conclusions. While the published diagrams presen
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30

Schneeberger, Antoine, and Olivier Mousis. "Impact of Jupiter’s Heating and Self-shadowing on the Jovian Circumplanetary Disk Structure." Planetary Science Journal 6, no. 1 (2025): 23. https://doi.org/10.3847/psj/ad9de1.

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Abstract Deciphering the structure of the circumplanetary disk (CPD) that surrounded Jupiter at the end of its formation is key to understanding how the Galilean moons formed. Three-dimensional hydrodynamic simulations have shown that this disk was optically thick and significantly heated to very high temperatures owing to the intense radiation emitted by the hot, young planet. Analyzing the impact of Jupiter’s radiative heating and shadowing on the structure of the CPD can provide valuable insights into the conditions that shaped the formation of the Galilean moons. To assess the impact of Ju
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31

Kisseleva, T. P., V. V. Bobylev, N. M. Bronnikova, et al. "Pulkovo Programme for the Photographic Observations of Satellites of Planets." Symposium - International Astronomical Union 141 (1990): 73–74. http://dx.doi.org/10.1017/s007418090008623x.

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The satellites of Mars, the Galilean satellites of Jupiter and the first eight satellites of Saturn have been observed with the 26-inch refractor, the normal astrograph at Pulkovo and with the luni-planet telescope at the Ordubad station of the Pulkovo observatory since 1972.
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NOBILI, ANNA M., GIAN LUCA COMANDI, SURESH DORAVARI, FRANCESCO MACCARRONE, DONATO BRAMANTI, and ERSEO POLACCO. "EXPERIMENTAL VALIDATION OF A HIGH ACCURACY TEST OF THE EQUIVALENCE PRINCIPLE WITH THE SMALL SATELLITE "GALILEO GALILEI"." International Journal of Modern Physics D 16, no. 12a (2007): 2259–70. http://dx.doi.org/10.1142/s0218271807011590.

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The small satellite "Galileo Galilei" (GG) has been designed to test the equivalence principle (EP) to 10-17 with a total mass at launch of 250 kg. The key instrument is a differential accelerometer made up of weakly coupled coaxial, concentric test cylinders rapidly spinning around the symmetry axis and sensitive in the plane perpendicular to it, lying at a small inclination from the orbit plane. The whole spacecraft spins around the same symmetry axis so as to be passively stabilized. The test masses are large (10 kg each, to reduce thermal noise), their coupling is very weak (for high sensi
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33

Willes, Andrew, and Kinwah Wu. "Radio Emissions from Terrestrial Planets around White Dwarfs." Symposium - International Astronomical Union 219 (2004): 390–94. http://dx.doi.org/10.1017/s0074180900182373.

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Terrestrial planets in close orbits around magnetic white dwarf stars can be electron-cyclotron maser sources, by analogy to planetary radio emissions generated from the electrodynamic interaction between Jupiter and the Galilean moons. We present predictions of the radio flux densities from white-dwarf/terrestrial-planet systems and discuss a scenario for the formation of these systems.
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34

Straulino, S. "Reconstruction of Galileo Galilei’s experiment: the inclined plane." Physics Education 43, no. 3 (2008): 316–21. http://dx.doi.org/10.1088/0031-9120/43/3/012.

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DJEMAI, A. E. F. "QUANTUM MECHANICAL GALILEI GROUP AND Q-PLANES." Modern Physics Letters A 07, no. 34 (1992): 3169–77. http://dx.doi.org/10.1142/s021773239200255x.

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In this work, we show that for a particular choice of translations in the phase space in the context of quantum mechanics, we get a Manin plane. In this framework, we construct the quantum mechanical Galilei group.
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36

MAFFIOLI, CESARE S. "SUL FILO DELLE ACQUE." Nuncius 8, no. 1 (1993): 41–74. http://dx.doi.org/10.1163/182539183x00037.

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Abstract<title> SUMMARY </title>This article wishes to demonstrate the importance of several areas of scientific research, until now neglected, and their relevance to Italian physical sciences in the age between Galileo and Volta. The science of waters, which joined the cluster of the new Galilean sciences in the seventeenth century in particular deserves greater attention if we are to understand the scientific traditions developed South of the Alps. This science represented an extension of the Galilean science of motion in an engineering context, a development that concerned both
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37

Tobón-Giraldo, Isabel Cristina, Aida Julieta Quiñones-Torres, and Leidy Arévalo-Villamor. "Lugares de la memoria: Arquitectura, territorio y ambiente. La experiencia de la Escuela Comunitaria - Centro de Memoria y Acción Integral para el Cuidado del Bosque de Galilea y el Territorio (CMAI)- Colombia." Arquitecturas del Sur 41, no. 64 (2023): 54–67. http://dx.doi.org/10.22320/07196466.2023.41.064.04.

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This article analyzes the complex relationships of places of memory from an interdisciplinary approach, to address the extractivist threats of the energy and mining sector and the interests of green business in the Galilea Forest. For this, the qualitative Participatory Action Research methodology was used, in collaboration with the social actors of the place, to strengthen the processes of territorial self-management in alliance with the University. Likewise, the symbolic understanding of architecture was examined further as a node of memory and collective cohesion. As a result, the "Center o
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Lorenzini, E. C., D. Curreli, and D. Zanutto. "Exploration of the Galilean Moons using Electrodynamic Tethers for Propellantless Maneuvers and Self-Powering." Proceedings of the International Astronomical Union 6, S269 (2010): 229–33. http://dx.doi.org/10.1017/s1743921310007465.

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AbstractRecent studies have demonstrated the benefits of using electrodynamic tethers (EDT) for the exploration of the inner region of the Jovian system. Intense planetary magnetic field and reasonable environmental plasma density make the electrodynamic interaction of the conductive tether with the plasmasphere strong. The interaction is responsible for a Lorentz force that can be conveniently used for propellantless maneuvers and extraction of electrical power for on board use. Jupiter and the four Galilean Moons represent an exceptional gravitational environment for the study of the orbital
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HILL, DAVID K. "PENDULUMS AND PLANES: WHAT GALILEO DIDN'T PUBLISH." Nuncius 9, no. 2 (1994): 499–515. http://dx.doi.org/10.1163/182539184x00928.

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Abstract<title> RIASSUNTO </title>Poche ma significative note di lavoro di Galileo trattano di esperimenti. Questo articolo esamina un manoscritto (folio 189v). Si sostiene che esso è il resoconto di un esperimento preciso nel quale Galileo determina empiricamente i tempi di caduta per archi e corde (pendoli e piani) e quindi sviluppa un metodo per determinare il tempo di caduta per una data altezza, dato il quarto di periodo di un pendolo. L'analisi dimostra anche che Galileo fu consapevole del non isocronismo del pendolo (nonostante nelle sue pubblicazioni abbia affermato il cont
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Cilibrasi, M., J. Szulágyi, S. L. Grimm, and L. Mayer. "An N-body population synthesis framework for the formation of moons around Jupiter-like planets." Monthly Notices of the Royal Astronomical Society 504, no. 4 (2021): 5455–74. http://dx.doi.org/10.1093/mnras/stab1179.

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ABSTRACT The moons of giant planets are believed to form in situ in circumplanetary discs (CPDs). Here, we present an N-body population synthesis framework for satellite formation around a Jupiter-like planet, in which the dust-to-gas ratio, the accretion rate of solids from the protoplanetary disc, the number, and the initial positions of protosatellites were randomly chosen from realistic distributions. The disc properties were from 3D radiative simulations sampled in 1D and 2D grids and evolved semi-analytically with time. The N-body satellitesimals accreted mass from the solid component of
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Schenk, Paul. "A virtual tour of the Galilean Satellites." Proceedings of the International Astronomical Union 6, S269 (2010): 254–68. http://dx.doi.org/10.1017/s1743921310007519.

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Galileo's imagination was quick to comprehend the importance of the 4 starry objects he observed near Jupiter in January 1610, not only for himself as a scientist but for our common understanding of the place of the Earth and our species in the cosmos. Even he, however, could not have imagined what those four objects would actually look like once humans got their first good look. Some 369 years the fast traveling Voyager 1 and 2 spacecraft provided that first good look during 1979, followed by an even closer look from the Galileo Orbiter beginning in 1996 through 2001. The following mosaics re
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DUMITRESCU, Horia, Vladimir CARDOS, Radu BOGATEANU, and Alexandru DUMITRACHE. "The Structured Wall-Turbulence, a Galilean Relativistic Phenomenon." INCAS BULLETIN 12, no. 2 (2020): 47–61. http://dx.doi.org/10.13111/2066-8201.2020.12.2.5.

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The relationship between heavenly bodies and earthly behavior along with its importance took many centuries before the rigor scientific understanding enabled the true influences on Earth, such as its complicated motion and perceived other regularities in the behavior of earthly objects. One of these was the tendency for all things in one vicinity to move in the same downward direction according to the influence that is known as gravity property. Moreover, matter was observed to transform, sometimes, from one form into another, such as with melting of ice or vaporizing/cavitation of water, but
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Mizzi, Dennis, Daniel Schindler, Elisabetta Boaretto, Michael Chazan, and Jodi Magness. "Understanding the history of the late Roman synagogue at Huqoq in Israel’s Galilee through radiocarbon dating and observations on site formation." PLOS ONE 20, no. 2 (2025): e0313512. https://doi.org/10.1371/journal.pone.0313512.

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Galilean-type synagogues are monumental, basilical structures found in northern Israel that have long been dated, mainly on stylistic grounds, to the 2nd – 3rd centuries CE. This chronology is influenced by historical considerations – specifically, the notion that monumental synagogues must have been constructed before Jews came under Christian rule in the early 4th century. However, the stratigraphic contexts of the pottery and coins associated with the foundation of these buildings suggest they represent an architectural innovation dating to the 4th (especially the later 4th) to 6th centurie
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Pocock, Douglas. "Place Evocation: The Galilee Chapel in Durham Cathedral." Transactions of the Institute of British Geographers 21, no. 2 (1996): 379. http://dx.doi.org/10.2307/622487.

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Vizzo, Emily. "Galileo Stumbles Once & a Planet Suddenly Skews." Massachusetts Review 62, no. 2 (2021): 241. http://dx.doi.org/10.1353/mar.2021.0080.

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Segre, Michael. "Galileo: A ‘rehabilitation’ that has never taken place." Endeavour 23, no. 1 (1999): 20–23. http://dx.doi.org/10.1016/s0160-9327(99)01185-0.

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Abbasi, Mustafa. "The Battle for the Galilee: Maronites and the Palestine Village of Jish during the 1948 War." Journal of Holy Land and Palestine Studies 15, no. 2 (2016): 249–73. http://dx.doi.org/10.3366/hlps.2016.0143.

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This article explores one of the Galilee battles that took place during the 1948 War. During the Israeli ‘Operation Hiram’ of October 1948 the IDF forces occupied large parts of the central Galilee including the Palestinian Arab village of Jish. Until October 1948 the majority of the population of Jish was Muslim. Today the population is predominantly Maronite Catholic and Melkite Greek Catholic Christians, with a Muslim minority. However, unlike many of the destroyed Palestinian villages in this region, Jish managed to survive the Nakba despite the hard battle of Jish, although many of its Mu
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Aksnes, K., M. E. Davies, C. de Bergh, et al. "Working Group on Planetary System Nomenclature (Wgpsn): (Groupe de Travail Pour la Nomenclature du Systeme Planetaire)." Transactions of the International Astronomical Union 24, no. 1 (2000): 439–41. http://dx.doi.org/10.1017/s0251107x00003448.

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Since July 1996, 815 new names on features on bodies in the Solar System have been assigned by the WGPSN and approved at the IAU General Assembly in Kyoto in 1997. Of these names, 666 were for Venus, 17 for Mars, 3 for the Moon, 125 for the Galilean satellites, 3 for the Uranian satellite Miranda, and 1 for the minor planet Ida. 71 additional names mostly on Venus have been selected and have been given or are awaiting provisional approval by the IAU Executive Committee (EC). These names are up for final approval at the next IAU General Assembly.
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del Olmo, Mariano A., and Mikhail S. Plyushchay. "Electric Chern–Simons term, enlarged exotic Galilei symmetry and noncommutative plane." Annals of Physics 321, no. 12 (2006): 2830–48. http://dx.doi.org/10.1016/j.aop.2006.03.001.

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Talalov, S. V. "A short study of a string on a plane: The energy and the effective mass." Modern Physics Letters A 31, no. 17 (2016): 1650103. http://dx.doi.org/10.1142/s0217732316501030.

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We investigate the new special class of the finite string on a plane, after the reduction from the relativistic 4D case. The suggested special form of the phase space allows to define the extended Galilei group as a group of the spacetime symmetry for the considered system. The definition of the energy for the studied non-relativistic string through the Cazimir function of this group is suggested. The concept of the effective mass for the investigated dynamical system is introduced. The appearance of strong correlations between the degrees of freedom even on the classical level is discussed.
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