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Δημιουργία Διαστημικού Σταθμού στον Άρη

Δημιουργία διαστημικού σταθμού στον Άρη
Ο σκοπός της αποστολής είναι η δημιουργίας ενός διαστημικού σταθμού στον Άρη. Ο διαστημικός σταθμός, που θα δημιουργηθεί σύμφωνα με το πρότυπο του Διεθνή Διαστημικού Σταθμού , θα αποτελέσει μία βάση των ανθρώπων στον Άρη, από την οποία θα μπορούν να εξερευνήσουν τον κόκκινο πλανήτη, να πραγματοποιήσουν ποικίλα πειράματα και να μελετήσουν τις συνθήκες στον Άρη, με απώτερο σκοπό τον προσδιορισμό του κατά πόσο είναι δυνατή μία μελλοντική εποίκιση των ανθρώπων στον Άρη και σε περίπτωση που αυτή κριθεί δυνατή ο ιδιαίτερος τρόπος με τον οποίο θα καταφέρουμε να την πραγματοποιήσουμε. Και δεδομένου ότι μέχρι σήμερα δεν υπάρχουν στοιχεία για την ύπαρξη ζωής σε άλλο πλανήτη, πράγμα που την καθιστά σπάνιο φαινόμενο, η αποστολή αυτή, που θα θέσει τα θεμέλια για τον εποικισμό του ανθρώπου σε άλλους πλανήτες, αποκτά μεγαλύτερη σημασία, αφού θα συμβάλλει στην διατήρηση της ζωής στο σύμπαν. Οφείλουμε εξάλλου να λάβουμε υπόψη μας τις καταστροφές, φυσικές ή/και ανθρωπογενείς, όπως η υπερθέρμανση του πλανήτη, ή μια πιθανή πτώση αστεροειδούς που θα θέσει σε κίνδυνο την ζωή στον πλανήτη, που απειλούν την Γη, αφού στη Γη μπορεί να συμβούν πολλές καταστροφές.

  • Δημιουργία Διαστημικού Σταθμού στον Άρη.docx (.docx) (Open)
  • Παράρτημα1 Γεωπλασία.docx (.docx) (Open)
  • Παράρτημα2 Επεκτάσεις.docx (.docx) (Open)
Δημιουργία Διαστημικού Σταθμού στον Άρη
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Studying the comet C2012 S1 (ISON)

The purpose of our project is to study the comet C2012 S1 (ISON), open by Vitaly Nevsky and Artyom Novichonok.   The aims of the research:
  • to determine the photometric parameters of the comet at observing it for the last time  (from the time of the discovery, on September 21 up to December 10), and on this basis to assess the physical characteristics of the nucleus of the comet: size, weight, escape velocity;
  • to identify the possibility to use elastic spring energy as the mechanism for reaching escape velocity of the container with the material of the comet’s nucleus from the surface of the comet’s nucleus.
The methods of the research:
  • the least squares method to solve the equations for determining the photometric parameters of the comet;
  • the L. Kreskas’ formula for determining the size of the comet’s nucleus;
  • the physical experiment to determine the initial velocity of the mass at releasing a compressed spring.
  Scientific value of this work is that for the first time it was proposed to use of elastic spring energy to overcome the gravitational field of the comet’s nucleus.   The results of the work:
  1. The photometric parameters of the comet C 2012 S1 (ISON) are equal to H0 = 7.49m, n = 2.92.
  2. The diameter of the nucleus of the comet is 4 km, the mass of the nucleus of the comet is 1.68∙1013 kg and the escape velocity of the nucleus of the comet is 1.1 m/s.
  3. The physical experiment demonstrated that spring mechanism can be used to deliver substances from the surface of the nucleus of the comet to the spacecraft, which is  outside the field of attraction of the comet’s nucleus. 
  • Studying the comet C2012 S1 (ISON).doc (.doc) (Open)
Studying the comet C2012 S1 (ISON)
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Essay

Our submittion is done
Essay
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Spaceships

A spacecraft (or spaceship) is a vehicle, vessel or machine designed to fly in outer space. Spacecraft are used for a variety of purposes, including communications, earth obeservation, meteorology, navigation, planetary exporation and transportation of humans and cargo.
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Eind Verslag

This is our essey!
  • Eindverslag.Lara.Pol.Erik.Sophie.doc (.doc) (Open)
  • Eindverslag OO SPACE [English] (.doc) (Open)
Eind Verslag
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CRITICAL ANALYSIS OF SOLAR FLARES

SOLAR FLARES

Predicting solar flares is a very useful piece of information, as life on our planet may depend on it in the future.
The particles that bombard our planet daily through the solar flares, as they do to the entire solar system, may bring about impressive changes to Earth’s magnetic field, known as magnetic storms, especially at big latitudes. Such changes put satellite communication, earth’s energy networks, the World Wide Web, and, occasionally, living entities on Earth at stake.
Consequently, predicting these solar flares is thoroughly significant. This is the subject matter our group will deal in. Our purpose is to find the critical state preceding a solar flare. Thus, we will make use of the method of critical fluctuations (MCF), introduced a few years ago, which detects the critical state in nature. Our idea, then, is to analyse timelines received by Mints which concern the Sun’s relevant activity using MCF.
This method has been published in the following physics newsletters…

1. “Intermittent dynamics of critical fluctuations”. Y. Contoyiannis, F. Diakonos and A. Malakis . Phys.Rev. Lett. 89, 35701 (2002).
2. “Intermittent dynamics of critical preseismic electromagnetic fluctuations”. Y. Contoyiannis, F. Diakonos, P. Kapiris, A. Pearatzakis and C. Eftaxias. Phys and Chem of the Earth. 29 (2004) 397-408.
3. “Monitoring of a preseismic phase from its electromagnetic precursors”. Y. Contoyiannis, P. Kapiris and K. Eftaxias. Phys. Rev. E 71, 1(2005)
4. “Unimodal maps and order papameter fluctuations in the critical region”. Y.F. Contoyiannis and F.K. Diakonos . Phys. Rev. E 76,031138 (2007).
5. “ Critical features in electromagnetic anomalies detected prior to the L’Aquila earthquake” Y.F. Contoyiannis, C. Nomicos, J.Kopanas, G. Antonopoulos, L. Contoyianni, K. Eftaxias. Physica A 389 (2010) 499-508.
6. “Tsallis and Levy statistics in the preparation of an earthquake” Y. F. Contoyiannis and K. Eftaxias. Nonlin. Processses Geophys., 15, 1-10, 2008.
7. “Criticality in the relaxation phase of the spontaneous contracting atria isolated from the heart of the frog (Rana ridibunda)” Y. Contoyiannis, F. Diakonos, C. Papaefthimiou and G. Theophilidis. Phys. Rev. Lett. 93, 098101 (2004).

CRITICAL ANALYSIS OF SOLAR FLARES
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