Media Article |
Research Article |
|
Title of Article |
Two daring spacecraft aim to bring asteroid dust back to Earth |
Near-Earth Asteroid Sample Return missions |
Source of Article |
Grossman, L. (2019). Two daring spacecraft aim to bring asteroid dust back to Earth. [online] Science News. Available at: https://www.sciencenews.org/article/asteroid-sample-missions-hayabusa2-ryugu-osiris-rex-bennu [Accessed 13 Feb. 2019]. |
Sears, D.W.G., Allen, C., Britt, D. and Yano, H., 2001. The case for near-Earth asteroid sample return. Amer. Inst. Aeronauticas& Astronautics, submitted. |
Date of Publication |
15th January 2019 |
August 2001 |
Was the research done by the author of the article? |
Yes |
Yes |
As perceived by Martynov et al. (2016), the summary of the research choose to emphasize on the aspect of Hayabusa2 facing a lot of difficulties as well as calamities that caused it to unfortunately return back to the Earth (Calvo et al 2016). It was not able to deal with the challenges and the difficulties that have befallen on it(Sutherland et al 2015). As stated by Cappi (2015), it had the great opportunity to bring back the piece of asteroid finally to Earth and manage to answer the difficult questions which perhaps its predecessors were not able to answer (Schutz 2018). As addressed by Kokkota et al., (2016) its inability to return on time, led it to lose 2000 grams of precious asteroid dust. It also tried to find the answers to the difficult questions, like what was there before the planets were finally formed(Sesana 2016).As argued by Schmidt and Davenport (2017), the various origins of life that resurfaced the Earth were concluded. It also tried to emphasize the threats that asteroids ultimately manage to pose to the life on Earth(Grossman, 2019).
The scholarly article has been able to emphasize and come to a basic conclusion that the exploration that has happened in our solar system and the information that we have been able to obtain from Near-Earth Asteroids (NEAs) which have been both acquired by sheer progress that has originated from the meteorite research and the progression of the asteroid. It has been able to throw light on the aspect of World Wide research that has managed to understand the dynamics of laboratories and the cultural boundaries. The information derived from the in-situ analysis provides valuable set of information with regards to these points. These samples have been able to provide valuable set of information with regards to the use of meteoroids, asteroids and finally the origin of the solar system. The aspect of NEAs used as resources which are deemed to be natural have managed to support the aspect of exploration of humans and also lead to the development of the space, critically analyzing the impact of asteroids on Earth (Sears, Allen, Britt and Yano, 2001).
Media Article-The structure that has been presented to the readers is in the form of Feature. It has been categorically divided into subsections with proper sub headings so that the reader does not find it difficult to read through the points. The sub points include Break me off a piece, the road to Ryugu, Friendly competition and bound for Bennu. This has been competently supported with proper set of diagrams and samples (Takahashi et al 2018).
Scholarly Article-The structure of the scholarly article has been layered with a proper abstract in the beginning, followed by introduction, sc. Comic scientific case, Cosmic JETSAM, sample return and in situ studies followed by concluding remarks and acknowledgements. It has also been supported by various levels of technical details, the multiplying effect, the terrestrial model and also diagrams that have been able to make the information lucid for the readers.
Media Article- The information provided in the media article is in written description with clear emphasis on the pictures and the algorithms samples provided that have been able to deduce the questions that plague the real world: what was there before planets were formed, whether asteroids pose a major sense of threat to the Earth.
Scholarly article- The scholarly article has been able to deduce the experiments in a written way through proper levels of technical analysis through sample returns and in situ studies with the help of proper diagrams.
General Conclusions of the Media Articles
Media article -The media article has been clearly able to deduce the calamities and the difficulties in the proper location of sites and their inabilities to fully state if the particular site is bolder free. This is of a prime necessity since it might dampen the aspect of creating a major influence on Earth if it is hit by an asteroid. It has been able to deduce the aspect of solar system’s history by the help of Ryugu and Bennu which are considered to be the oldest objects of the solar system.
Scholarly Article- The sample returns of the scholarly article in no way differs from the media article because it too manages to harp on the aspects of near Earth sample missions which satisfies the concept of international collaboration and the widespread interest from the samples. It also harps on the aspect of asteroid sample missions which have been really difficult and rather impossible, like the media article.
Media Article – It does harp on the aspects of trying to ponder on the fact, that whether it can ultimately convince that the sites are bolder free and would not pose a threat to the Earth. It has been able to come to definite conclusion. It is evident that the hazard less and boulder free zones have been discovered by sciebtists. This certainly do fuel their objective of mission achievement. In no place does it criticize the data or the conclusions; however, it does try to figure out alternative solutions to the questions raised.
Scholarly article-The scholarly article does not criticize the data or the conclusions and tries to construct its solution based on the aspect of sample solutions that have been derived through astronomical calculation. The calculation however have marked the mission to be somewhat impossible.
Media Article- The media article does not provide criticism to the entire subject. However, it does debate on the various aspects on where the asteroids will have a positive influence on Earth.
Scholarly Article- The reason what the scholarly article presents when considering the risks of bringing foreign material back to earth, clearly attracts the very reason behind supporting the media article.
Media Article- The title of the media article accurately reflects the subject that has been discussed. It has managed to minimize the difficulty levels, what existed before the planets had appeared, the in-situ analysis and the samples which are discussed at length, the difficulty levels that asteroids had on the overall influence on Earth. Therefore, the title Two Daring spacecraft aim to bring the Asteroid dust to Earth seems to be appropriate. Ryugu and Bennu seem to be those spacecraft’s name selected for the prupose.
Scholarly Article-The title of the scholarly article accurately reflects the contents of the passage. The title named The Case for Near Earth Asteroid Sample Return reflects the basic aspects of difficulty.
Media Article- Yes, the way the insight analysis has come up with information, it is obvious in real terms that the trying of the scientists have been fruitful in many terms. The exact understanding of the conclusion where observation falls prey to dilemma of evaluation of ideas have been critically analysed. The obhectives of making specific arrangements to utilise space craft in bringing back asteroid dusts are now kept on consideration for future aspects.
Scholarly article- The scholarly article has been able to provide valuable insights into scientific research and analysis through the help of proper technical details, insitu analysis and the terrestrial model. This has helped me understand how the research procedures take place and how one can come to a definitive solution.
Reference List
Calvo, M., Benoît, A., Catalano, A., Goupy, J., Monfardini, A., Ponthieu, N., Barria, E., Bres, G., Grollier, M., Garde, G. and Leggeri, J.P., 2016. The NIKA2 instrument, a dual-band kilopixel KID array for millimetric astronomy. Journal of Low Temperature Physics, 184(3-4), pp.816-823.
Cappi, A., 2015. Book review:“Extragalactic astronomy and cosmology—an introduction”. Frontiers in Astronomy and Space Sciences, 2, p.5.
Grossman, L. (2019). Two daring spacecraft aim to bring asteroid dust back to Earth. [online] Science News. Available at: https://www.sciencenews.org/article/asteroid-sample-missions-hayabusa2-ryugu-osiris-rex-bennu [Accessed 13 Feb. 2019].
Jovanovic, N., Schwab, C., Guyon, O., Lozi, J., Cvetojevic, N., Martinache, F., Leon-Saval, S., Norris, B., Gross, S., Doughty, D. and Currie, T., 2017. Efficient injection from large telescopes into single-mode fibres: Enabling the era of ultra-precision astronomy. Astronomy & Astrophysics, 604, p.A122.
Kokkotas, K.D. and Schwenzer, K., 2016. r-mode astronomy. The European Physical Journal A, 52(2), p.38.
Martynov, D.V., Hall, E.D., Abbott, B.P., Abbott, R., Abbott, T.D., Adams, C., Adhikari, R.X., Anderson, R.A., Anderson, S.B., Arai, K. and Arain, M.A., 2016. Sensitivity of the Advanced LIGO detectors at the beginning of gravitational wave astronomy. Physical Review D, 93(11), p.112004.
Schmidt, S.J. and Davenport, J.R., 2017. Who asks questions at astronomy meetings?. NATURE, 1(0153), p.1.
Schutz, B.F., 2018. Gravitational-wave astronomy: delivering on the promises. Phil. Trans. R. Soc. A, 376(2120), p.20170279.
Sears, D.W.G., Allen, C., Britt, D. and Yano, H., 2001. The case for near-Earth asteroid sample return. Amer. Inst. Aeronauticas& Astronautics, submitted.
Sesana, A., 2016. Prospects for multiband gravitational-wave astronomy after GW150914. Physical Review Letters, 116(23), p.231102.
Sutherland, W., Emerson, J., Dalton, G., Atad-Ettedgui, E., Beard, S., Bennett, R., Bezawada, N., Born, A., Caldwell, M., Clark, P. and Craig, S., 2015. The visible and infrared survey telescope for astronomy (VISTA): design, technical overview, and performance. Astronomy & Astrophysics, 575, p.A25.
Takahashi, T., Kokubun, M., Mitsuda, K., Kelley, R.L., Ohashi, T., Aharonian, F., Akamatsu, H., Akimoto, F., Allen, S.W., Anabuki, N. and Angelini, L., 2018. Hitomi (ASTRO-H) X-ray Astronomy Satellite. Journal of Astronomical Telescopes, Instruments, and Systems, 4(2), p.021402.
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