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1 e rich and still enigmatic chemistry of this noble gas.
2 rare example in which HF is coordinated to a noble gas.
3 upled with the relatively large radii of the noble gases.
4 rigin may be common to all primordial mantle noble gases.
5 mation of point defects and incorporation of noble gases.
6 eep or shallow mantle to explain atmospheric noble gases.
7 rs having pai-pai interactions, and pairs of noble gases.
8 t they contain metal and are repositories of noble gases.
9 usly assess forearc recycling of atmospheric noble gases.
10 lly show strong depletion of all atmospheric noble gases ((20)Ne, (36)Ar, (84)Kr, (132)Xe) with respe
11 to ethane and propane), and the ratio of the noble gas (4)He to CH4 in groundwater were characteristi
12 We also provide closed-system radiogenic noble-gas ((4)He, (21)Ne, (40)Ar, (136)Xe) residence tim
13 tive abundances in the mantle resemble solar noble gas abundance patterns, and a solar origin may be
14 This work provides the first evidence for noble gas-actinide complexes, and the first example of n
21 interpreting mantle-derived volatile (e.g., noble gas and nitrogen) signals, with profound implicati
24 s are below 3 x 10(-9) cm(3)(STP)(g) for the noble gases and below 400 x 10(-9)cm(3)(STP)(g) for N(2)
25 a reveal deep-ocean undersaturation of heavy noble gases and isotopes resulting from cooling-driven a
27 an existing paleo-temperature application of noble gases and may identify regions prone to future hyd
28 l (4)He, (21)Ne, and (40)Ar and suggest that noble gases and methane originate from common sedimentar
30 owledge, the first comprehensive analyses of noble gases and their isotopes (e.g., (4)He, (20)Ne, (36
34 cates and melts has, however, suggested that noble gases approach compatible behaviour, and a signifi
37 re we present experimental data to show that noble gases are more incompatible than previously demons
38 that sorb, capture and/or store the heavier noble gases are of interest because of their potential f
40 that solar wind and planetary (known as P1) noble gases are present in Ryugu samples with concentrat
44 this study, different states of matter from noble gas Argon to condensed matter ZnO and LBG are simu
45 rve a solar-like isotopic composition, heavy noble gases (argon, krypton and xenon) have an isotopic
47 g, and comparative efficacy of the different noble gases, as well as confirmation in large animal mod
48 fects arising from the polarizability of the noble gas atom or the presence of charged defects are mi
54 cessibility could be proved by accommodating noble gas atoms into the pocket in the crystalline state
55 gs enable the study of individually confined noble gas atoms using surface science methods, opening u
57 cients of the C(60) fullerene with He and Ar noble-gas atoms in order to quantify the effectiveness o
60 p to the equivalent of five xenon atoms, the noble gases bind preferentially at highly localized site
61 ar HgF4 was synthesized in a low-temperature noble gas but the potential of Hg to form compounds beyo
62 atomistic computer simulations indicate that noble gases can be considered as species of 'zero charge
63 have investigated nanoplasma formation from noble gas clusters exposed to high-intensity hard-x-ray
65 e first time the expected carbon isotope and noble gas compositions of captured CO2 streams from a ra
66 isotope compositions with gas chemistry and noble gas compositions of forearc and arc front springs
67 ly coordinating anions, neutral and cationic noble gas compounds, and a wide number of transition met
68 n MORBs, a conclusion that is independent of noble gas concentrations and the partitioning behaviour
70 ane concentrations; isotopes of methane; and noble gas concentrations from 88 wells in Pennsylvania w
73 pe fractionation is possible during capture; noble gas concentrations will be controlled by the captu
74 ration paradox, as well as the full range of noble-gas concentrations observed in MORB and OIB glasse
76 nalysis includes four decades of groundwater noble gas data from six continents, along with new recor
77 Genesis has resolved discrepancies in the noble gas data from solar wind implanted in lunar soils.
79 t a simple solution: recycling and mixing of noble-gas-depleted slabs dilutes the concentrations of n
83 ries: the isotopic compositions of O, N, and noble gases differ in the Sun from other inner solar sys
86 a subduction barrier for atmospheric-derived noble gases does not exist at mantle depths associated w
87 model, length of ischemia, conditioning and noble gas dose, duration of administration of the gas, e
88 rocesses is the crystal-melt partitioning of noble gases during mantle melting, magma ascent and near
89 e to that employed for in-human MRI using HP noble gas (e.g., (129)Xe) produced via a spin exchange o
92 f isolable compounds which contain different noble-gas-element bonds is limited for xenon and even mo
97 action of laser-ablated U atoms with CO in a noble gas, exhibits very different stretching frequencie
98 arison of the results to those obtained from noble gas experiments and trajectory simulations, the sp
99 ed and tested on photoelectrons ejected from noble gases following absorption of extreme ultraviolet
101 is study presents the complete set of stable noble gases for Barnett Shale and Strawn Group productio
103 l melting as a unique process for extracting noble gases from the early Earth, thereby defining the i
104 be explained by a steady-state transport of noble gases from the lower mantle, which still retains m
105 a theoretical framework with which to model noble-gas geochemistry as a function of residual mantle
108 The complexes of phage T4 lysozyme L99A with noble gases have been studied by molecular dynamics simu
109 and fine-grained samples analysed so far for noble gases have indicated that solar wind and planetary
114 n approach for determining the solubility of noble gases in a molten salt liquid utilizing the equili
115 tly the entropy and enthalpy calculation for noble gases in a molten salt solution to a single functi
123 average carbonaceous chondrites and that the noble gases in Earth's atmosphere and oceans are dominan
127 elaxes the long-standing constraint-based on noble gases in lavas associated with mantle plumes globa
128 e degassing of helium in OIB magmas and that noble gases in OIB lavas can be derived from a largely u
130 lso indicate that the mantle source of these noble gases in the carbon dioxide well gases cannot be t
131 The co-occurrence of solar and chondritic noble gases in the deep mantle is thought to reflect the
133 lemental composition of non-radiogenic heavy noble gases in the mantle is remarkably similar to that
134 depleted slabs dilutes the concentrations of noble gases in the mantle, thereby decreasing the rate o
140 d enthalpies to estimate the total uptake of noble gases into the bulk crystal as a function of tempe
142 sting technology to remove these radioactive noble gases is a costly cryogenic distillation; alternat
147 streams derived from fossil fuels will have noble gas isotope ratios reflecting a radiogenic compone
149 ratio of radiogenic to non-radiogenic heavy noble gas isotopes and higher water content of plume-der
151 the American Southwest, ESM simulations and noble gas isotopes both suggest a pronounced LGT decline
152 e first-ever measurements of these dissolved noble gas isotopes in groundwater at high precision (<=0
154 deep saline groundwater, (ii) characteristic noble gas isotopes, and (iii) spatial relationships betw
156 'subduction barrier'--the convecting mantle noble gas isotopic and elemental composition is explaine
158 es such as helium and hydrogen whereas heavy noble gases like xenon exhibit strongly suppressed flows
159 ing the Au(25)(SR)(18)(-) superatom from the noble-gas-like 1S(2)1P(6) electron configuration to the
160 roscopy with continuous flow laser-polarized noble gases makes it possible to "light up" and thereby
161 the nitrene to FNSO(2) was observed in solid noble gas matrices, and reactions of the nitrene with O(
164 lpha-H2CO3 and trapping the vapor phase in a noble gas matrix, which was analyzed by infrared spectro
165 r of continuous, high-precision and accuracy noble gas measurements at substantially reduced cost and
166 ested here: combining stream hydrocarbon and noble-gas measurements with reach mass-balance modeling
167 ual-permeability medium for the multi-tracer Noble Gas Migration Experiment (NGME) originally intende
168 laser ablation of nickel atoms in a fluorine/noble gas mixture and spectroscopically identified by a
170 specific ventilation maps as a surrogate of noble gas MRI and to validate this approach across a wid
172 d ventilation defects and were compared with noble gas MRI scans using the Dice similarity coefficien
173 the DCNN ventilation maps were compared with noble gas MRI scans using the Pearson correlation coeffi
177 on [B12 Cl11 ](-) spontaneously binds to the noble gases (Ngs) xenon and krypton at room temperature
179 of studies show a protective effect of these noble gases on ischemia reperfusion injury across a broa
182 r fullerenes are heated in the presence of a noble gas or an unreactive molecule at 650 degrees C and
185 ecedented example of a xenon(II) oxide and a noble-gas oxocation as well as a rare example of a noble
186 s heat-producing U, Th and K, as well as the noble gases, preferentially partition into melts (here r
193 plasma setup from gas mixtures (H2(O)-CO-N2-noble gases) reminiscent of the protosolar nebula compos
198 is required to explain the light atmospheric noble gas signature of Barnett Shale production gas.
202 e similarity of Strawn and stray gas crustal noble gas signatures suggests that the Strawn is the sou
203 wn gas have distinct crustal and atmospheric noble gas signatures, allowing clear identification of t
206 to the weak van der Waals interaction, rare (noble)-gas solids are a near-ideal medium in which to st
212 (conventional (1)H as well as hyperpolarized noble gases such as (129)Xe, (3)He, and inhaled O2 and (
214 on dioxide fluxes, oxygen concentration, and noble gas supersaturation yields a universal formulation
215 to fcc-to-hcp transformations in Al and the noble gases, the transformation is sluggish, occurring o
217 ts have traditionally considered the 'inert' noble gases to be extremely incompatible elements, with
218 study the chemical nature of the bonding of noble gases to closed-shell systems containing gold.
219 ation, water chemistry, stable isotopes, and noble gases to understand how groundwater travel time an
221 itic refractory organics and the trapping of noble gases took place simultaneously in the ionized are
222 tural features with chondritic organics, and noble gases trapped during the experiments reproduce the
223 realized until the abundances of atmospheric noble gases trapped in exhumed UHP rocks are known.
224 Here we present high precision analyses of noble gases trapped in fluid inclusions of Archean quart
225 th the isotopic composition of nonradiogenic noble gases trapped in minerals formed during subsolidus
227 ene cage structure to encapsulate and retain noble gases, we have determined that both the Allende an
231 into the crust (or atmosphere in the case of noble gases), where nearly half of the Earth's budget of
233 easurements and mantle-derived signatures of noble gases, which verify that oil-cracked CH(4) and pyr
234 1A lysozymes each bind only a single atom of noble gas, while the cavities within mutants L133A and F
235 renes and the KTB fullerenes contain trapped noble gases with ratios that can only be described as ex
236 ations and the partitioning behaviour of the noble gases with respect to their radiogenic parents.
237 u, near-continuous measurement of dissolved (noble) gases with a field portable mass spectrometer is
238 ett Shale footprint in Texas using dissolved noble gases, with particular emphasis on (84)Kr and (132
240 ography combined with the highly attenuating noble gas xenon to characterize porosity well below the
241 use of hyperpolarized nuclei, such as in the noble gas xenon, but previous reporters acting on such n
242 nce of the time at which the neuroprotective noble gases xenon and argon should be administered, duri