![]() ![]() ![]() “We have had to move all the bookings to a suitable time though. That is not a lot of people, probably around 20 bookings but they were regulars who booked in advance. “We have had literally nothing come in, apart from the deposits we have brought forward, around £3,000 to £5,000. Visitor numbers at the couple’s guest house have dried up - approximately 50 per cent of the bookings and income for the summer has been lost and there are fears more could be lost if things don’t pick up.Ĭurrently, things are ‘dead’ for July and August, which could lose the business another £20,000 on top of the £30,000 loss in the season so far. “A lot of people may go to caravan sites, private lodgings or homes - wherever they feel the safest.” We are saying we are open but people are not going to jump straight away and if they do, where are they going to go? “Nothing has changed, we have advertised on all the booking and tourism sites. With only one booking made since the beginning of lockdown, Keith and Christine Beckett, the owners of the Swiss Cottage guest house in Shanklin, are hoping everything will get back to normal so they can make it through the winter. Wada, and TDSS team (2015), Numerical simulations of impacts of a half spherical shell projectile on small asteroids, LPS XXXXVI, 1868. Hasegawa (2016), Planetesimal collisions as a heating event for chondrule formation, LPS XXXXVII, 1078. Matsui (2016), Shock vaporization of water ice in an open system investigated using a two-stage light-gas gun, LPS XXXXVII, 1838. Howell (2017), Detection of lunar lava tubes by lunar rader sounder onboard SELENE (Kaguya), LPS XXXXVIII, 1711. Genda (2017), Hydrocode modeling of the material ejection by spallation, LPS XXXXVIII, 1855. ![]() ![]() Genda (2018), The roles of friction and deformation on impact heating, LPS XLIV, 2513. Genda (2019), Effect of Collisions on Dehydration of Hydrous Materials in Asteroids, LPS L, 1321. Okazaki (2020), The roles of strength on shock-induced devolatilization from calcite, LPS LI, 2055. Matsui (2020), Shock devolatilization of CI chhindrite simulants, LPS LI, 2061. Davison (2020), Jetting during oblique impacts, LPS LI, 2485. Davison (2020), Impactor material as an origin for lunar antipordal magnetic anomalies, LPS LI, 1266. Arakawa, Recovery of shocked samples from ~100 GPa to Hugoniot elastic limit, Meteoritics and Planetary Sciences, 51, 1153-1162. (2016), Impact-induced chemical reactions: Toward understanding the surface environment on the Hadean Earth by using an experimental approach (In Japanese),Chikyu-Kagaku, 50, 135-154. Hasegawa (2017), Planetesimal collisions as a chondrule forming event, The Astrophysical Journal, 834, 125. Genda (2018), Hydrocode modeling of the spallation process during hypervelocity impacts: Implications for the ejection of Martian meteorites, Icarus, 301, 219-234. Genda (2018), Effects of friction and plastic deformation in shock-comminuted damaged rocks on impact heating, Geophysical Research Letters, 45, 620-626. Genda (2018), Collisional Disruption of Planetesimals in the Gravity Regime with iSALE Code: Comparison with SPH code for Purely Hydrodynamic Bodies, Icarus, 314, 121-132. Hasegawa (2018), "Investigation of impact craters on flat surface of cylindrical targets based on experiments and numerical simulations", Planetary and Space Science, 163, 77-82. Takada (2019), Impact cratering mechanics: A forward approach to predicting ejecta velocity distribution and transient crater radii, Icarus, 317, 135-147. Genda (2019), Fates of hydrous materials during planetesimal collisions, Icarus, 328, 58-68. Niihara, Assessment of the probability of microbial contamination for sample return from Martian moons I: Departure of microbes from Martian surface, Life Sciences in Space Research, 23, 73-84. Enhancement of impact heating in pressure‐strengthened rocks in oblique impacts. Wakita, S., Genda, H., Kurosawa, K., & Davison, T. ![]()
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