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1 640 water activity (approximately 70.0-64.0% relative humidity).
2 w (23% relative humidity) to 19.52% w/w (75% relative humidity).
3 o be stable in humid air ( approximately 40% relative humidity).
4 opical climate conditions (40 degrees C, 75% relative humidity).
5 /w (11% relative humidity) to 18.8% w/w (75% relative humidity).
6  mA h g(-1) in humid air ( approximately 10% relative humidity).
7 ame conditions in regards to temperature and Relative Humidity).
8 he particle acidity and water content (i.e., relative humidity).
9 d MI cases, adjusted for air temperature and relative humidity.
10 cumulative smoking; and mean temperature and relative humidity.
11 e of liquid water, despite the lower daytime relative humidity.
12 ults were robust to the adjustment for daily relative humidity.
13 by AWH has been achieved in a broad range of relative humidity.
14  frequency upon hybridization and at varying relative humidity.
15  glycerol, and squalane at approximately 75% relative humidity.
16 water adsorbed increases with an increase in relative humidity.
17 2.3x10(-3) S cm(-1) at 90 degrees C and 95 % relative humidity.
18 s also observed to be more humid with higher relative humidity.
19 stharvest dehydrated at 20 degrees C and 41% relative humidity.
20  d storage in ambient with approximately 70% relative humidity.
21 luted urban areas under conditions of modest relative humidity.
22 egrees and 78 degrees C) and close to 90% of relative humidity.
23 iments, with the product ratios dependent on relative humidity.
24 th increasing drying temperature for a given relative humidity.
25 tent of the ionomer membrane by lowering the relative humidity.
26 amined with varying aerosol compositions and relative humidity.
27 llent stability even in ambient air with 40% relative humidity.
28 or 20 adsorption-desorption cycles up to 70% relative humidity.
29 n tropical cyclone size and mid-tropospheric relative humidity.
30 kness increases reproducibly with increasing relative humidity.
31 3.30) compared with moderate temperature and relative humidity.
32  gel electrode in ambient atmosphere with 5% relative humidity.
33 er than corresponding models that respond to relative humidity.
34 ted with K(OA), but declined with increasing relative humidity.
35      The extent of oxidation is sensitive to relative humidity.
36 the raisins, when they were incubated at 57% relative humidity.
37 lude air mass trajectories, temperature, and relative humidity.
38 00 x 10(-6) S cm(-1) at 75 degrees C and 75% relative humidity.
39  insolation, air temperature, wind speed and relative humidity.
40  results in a substantial shift toward lower relative humidity.
41 hell quantum dots [QDs]) in ambient with 45% relative humidity.
42 ater water adsorption when exposed to higher relative humidities.
43  was performed at 18 degrees C and different relative humidities.
44 shape were investigated over a wide range of relative humidities (0-90%) and temperatures ([Formula:
45 p to 18 months) and a control condition (47% relative humidity, -20 degrees C).
46  denuders declined by 4-60% during spikes of relative humidity (25 to 75%).
47  A comparison of CO2 release properties (75% relative humidity, 25 degrees C) from complexed powders
48 y relevant temperature (10-30 degrees C) and relative humidity (30-100%) conditions, such that 943 Ks
49 imal conditions were stored at two different relative humidities (33% and 52%) during 75 days.
50 ures (20 degrees C and 30 degrees C) and two relative humidities (33% and 52%) under strictly control
51 P emissions, there was a strong influence of relative humidity (34 vs 62%), with FAP emissions decrea
52 p to 250 degrees C, accompanied by increased relative humidity (4%).
53 ntain high proton conductivity across a wide relative humidity (40-100 %) and temperature range (20-8
54 ture control within the recommended range of relative humidity (45%-65% RH) set by the American Socie
55 kept in nine different equilibrium levels of relative humidity (8.2-97.3%) at 20, 30 and 40 degrees C
56 onditions (low temperature 0-1 degrees C and relative humidity (90-95%).
57 high oxygen partial pressure, high moisture (relative humidity = 90% at 85 degrees C), corrosive agen
58  been rigorously calibrated (temperature and relative humidity) across a large dynamic range, is used
59 ls containing F. tularensis We evaluated the relative humidity, aerosol exposure technique, and bacte
60                  Depending on the source and relative humidity, aerosols can have different compositi
61  major hypothesis driving this work was that relative humidity affects collection of GOM on KCl-coate
62 l factors such as sun exposure, temperature, relative humidity, air pollution and photo-oxidation cau
63                                              Relative humidity alone did not affect the decay rate; h
64 osed in the APXPS chamber up to 5 Torr ( 28% relative humidity), an increase in the amount of ionic b
65  environmentally relevant O3 concentrations, relative humidities and protein phase states (amorphous
66 % after 30 days of storage at 57% and 66% of relative humidity and 15 degrees C and 25 degrees C.
67 roton conductivity (4.5 x 10(-4) S/cm at 98% relative humidity and 25 degrees C) of MFM-500(Ni) is me
68 ditions were adopted: accelerated aging (84% relative humidity and 30 degrees C, up to 9 months) and
69 conductivity (3.2 x 10(-2) S cm(-1)) (at 95% relative humidity and 95 degrees C) in the pristine stat
70 der hydroperoxyl-dominant conditions for <5% relative humidity and at 20 degrees C in the presence of
71 the enhanced emissions, compared to elevated relative humidity and CO(2) concentration.
72 n binary and ternary mixtures, Dw depends on relative humidity and follows a simple compositional Vig
73 ay rate; however, minor interactions between relative humidity and other factors were observed.
74 e models may double-count plant feedbacks on relative humidity and other surface variables, leading t
75 density of human, coverage of built-up land, relative humidity and precipitation were significant pre
76 pends on environmental conditions, including relative humidity and substrate temperature.
77 quilibrium moisture content (function of air relative humidity and temperature) and require three inp
78 round concentrations, and to a lesser extent relative humidity and temperature.
79 ility was evaluated at different equilibrium relative humidity and temperatures.
80 s nighttime particles existed despite higher relative humidity and were independently confirmed by bo
81              Bulgur must be stored below 70% relative humidity and with less than 10 g water per 100
82 ng 29.6 +/- 0.9 degrees C air at 66.5 +/- 5% relative humidity and with low air movement of 0.26 +/-
83 otherm with a steep pore-filling step at low relative humidity and without hysteretic behavior-proper
84  in climate (temperature, precipitation, and relative humidity) and agricultural characteristics (whe
85 es g(s) as a function of Anatomical g(smax), relative humidity, and [CO(2)] at the leaf.
86  to a controlled normal condition (23 C, 45% relative humidity, and air flow 0.10 m/s) and a controll
87  that simulates desiccating stress (23 C, 5% relative humidity, and air flow 0.10 m/s).
88 s for geriatric pneumonia, mean temperature, relative humidity, and air pollution concentrations betw
89 en VOC emission under different temperature, relative humidity, and CO(2) concentrations.
90 tional length, season of birth, temperature, relative humidity, and maternal characteristics.
91                                      At high relative humidity, and once the size of the confining su
92     The effect of air velocity, temperature, relative humidity, and particle concentration were furth
93                  The effects of temperature, relative humidity, and powder bed thickness on the adsor
94         Anthropogenic trends in temperature, relative humidity, and precipitation estimated from 31 c
95 study examined effect of simulated sunlight, relative humidity, and suspension matrix on stability of
96 linity mainly depends on air temperature and relative humidity, and tide and wave actions dilute a fr
97  influence is not as strong as that of CAPE, relative humidity, and VWS, which increase MCSs' lifetim
98 arly sensitive to the intensity of light and relative humidity, and, to a lesser degree, sample thick
99  particle morphology is present even at high relative humidity ( approximately 70%).
100 led temperature (from 5 to 35 degrees C) and relative humidity (approximately 40 and 80%) as well as
101 ught to undergo two phase transitions as the relative humidity around the particles is varied: efflor
102 ith pH values (controlled largely by ambient relative humidity) as low as -0.8 and strong acidity (co
103 ce for these applications is governed by the relative humidity at which the pores of a porous materia
104 ted under accelerated conditions (75 and 90% relative humidity, at 35, 45, and 55 degrees C for 35day
105 nvironmental chamber experiments at variable relative humidity between 0 and 60%, we find that SOA pr
106 al spectra, we demonstrate that water at low relative humidity binds initially to open metal sites an
107 d delta(13) C, is primarily to variations in relative humidity, but by different processes.
108            Both hypotheses consider variable relative humidity, but neither fully explains the intera
109 water vapour (c. - 200 per thousand) at high relative humidity (c. 93%) for 5 h, simulating a fog eve
110                                 Whatever the relative humidity condition, the order of sorption is ke
111    In addition, we played on temperature and relative humidity conditions to discover three new cryst
112 osporium genera in different temperature and relative humidity conditions, and the square root model
113 ness in storage under moderate environmental relative humidity conditions.
114 rsity is resolved, we find Eabs=1-1.5 at low relative humidity, consistent with ambient observations.
115 ochemical cell, in air at 60 degrees C, with relative humidity controlled between 70% and 98%.
116                                  At constant relative humidity, CRE does not decrease with increasing
117                                   Increasing relative humidity dampens the impact of the perturbation
118 e show that satellite-based near surface air relative humidity data can further improve drought onset
119 ned for drought monitoring, we show that its relative humidity data offers a new and unique avenue fo
120 tio of the particle diameter at a particular relative humidity divided by the dry particle diameter (
121 e used to quantify the impact of carrier gas relative humidity during adsorption of contaminants from
122 h are essential for stability within the low relative humidity environment of the Martian atmosphere.
123 he technique for measuring the efflorescence relative humidity (ERH) of potassium sulfate and potassi
124 el about half of the adsorbed water when the relative humidity exceeds a 50-80% threshold.
125 .5 mul/l of ethylene at 21 degrees C and 80% relative humidity for 72 h, while non-degreened fruits w
126 al virus using site-specific temperature and relative humidity for the prediction of local average ep
127 ng lines only show a bonding ability at high relative humidity (&gt;80%) with a mean adhesive energy fro
128 tinue to be affected by flooding, even after relative humidity has returned to baseline levels and re
129                                     Elevated relative humidity has the potential to affect significan
130            The MOF becomes amorphous in >60% relative humidity; however, impedance analysis of pellet
131 aily local meteorological data (temperature, relative humidity, "humidity-range" and dew point) from
132 e in adhesive performance at an intermediate relative humidity (i.e., 70% RH).
133 f TAA cations (C2-C8) were calculated at 14% relative humidity in air to be 1.36, 1.18, 1.03, 0.90, 0
134  weaker turbulence, may contribute to higher relative humidity in the surface layer during polluted c
135 moisture divergence and reduces tropospheric relative humidity in the tropics and subtropics, in conj
136  the monthly average temperature and monthly relative humidity in Yunnan province.
137 the 20-80% RH range studied, the increase in relative humidity increased CO2 capacity of NFC/PEI foam
138                                       As the relative humidity increases, adjacent rods (confining su
139      Gecko adhesive performance increases as relative humidity increases.
140       This paper introduces the Standardized Relative Humidity Index (SRHI) based on the NASA Atmosph
141 lly nonlinear when struvite was dried at low relative humidity, indicating bacterial persistence.
142 a Center and Weather Service measurements of relative humidity (%), indoor heating degree days, preci
143 examined how different liquid sweeteners and relative humidity influenced greening of sunflower butte
144 , such as chamber volumetric residence time, relative humidity, initial concentration of oxides of ni
145 ns, their NO conversion drops to 0% when 50% relative humidity is added.
146 density distribution at intermediate to high relative humidity is obtained using a lattice gas densit
147 ngredients undergo dissolution at a critical relative humidity known as the deliquescence point (RH0)
148 ng a hygroscopicity value (kappa) of 0.1 and relative humidity less than 95%.
149 , 1-hexanol, 3-hexanone and phenol) at three relative humidity level (<=2%, 53% or 84% RH).
150 liters of water per kilogram of MOF daily at relative humidity levels as low as 20% and requires no a
151 re not significantly different between the 2 relative humidity levels tested.
152 lest Criegee intermediate, CH2OO, at various relative humidity levels up to 85% at 298 kelvin.
153 y rate without simulated sunlight across all relative humidity levels was 0.008 +/- 0.011 min-1 (90%
154 r with second and third quartile mean annual relative humidity (logistic regression, P </= .01 for bo
155 e glassy state (25+/-2 degrees C and 65+/-2% relative humidity) lost glycerol and water over time, as
156 orts), age (teenagers, adults, and seniors), relative humidity (low or high), and ozone (<2 ppb or ~3
157 ation in mean-subsaturated conditions (i.e., relative humidity &lt;100%) in the fluctuation-dominant act
158 showed that housing Mx1 congenic mice in low relative humidity makes mice more susceptible to severe
159 as a function of controlled temperatures and relative humidities may provide additional information r
160  showed that GTUB5 is thermally stable under relative humidities of up to 90% at 90 degrees C.
161                                         At a relative humidity of 50%, for example, droplets with ini
162 environmental conditions (37 degrees C and a relative humidity of 70%, 80% and 90%).
163 micrometer, deliquesced aerosol particles at relative humidity of 73 to 90%.
164 in this region), keeping a high and constant relative humidity of 78% (a(w) 0.780), and completely is
165 fter the film had been exposed to air with a relative humidity of 95 % for over four hours, whereas C
166  the prevailing conditions (13-15 degrees C, relative humidity of 98%) whereby the wet fishing lines
167                      Model calculations at a relative humidity of 99.5% reveal significant respirator
168 adapted to automatically control the desired relative humidity of an enclosed space.
169 e infrared radiation by more than 35% as the relative humidity of the underlying skin changed.
170 s the interactive effects of temperature and relative humidity on live gecko adhesion.
171 cts of seed aerosol composition, acidity and relative humidity on OS formation were examined.
172       To study the effect of temperature and relative humidity on plant metabolism in the context of
173 tudies on the impact of both PEI content and relative humidity on the CO2 capture capacity of the ami
174 of the model in accounting for the impact of relative humidity on VOC adsorption by varying the adsor
175 veloped and validated to study the effect of relative humidity on volatile organic compound (VOC) ads
176 meters (level of ozone, air temperature, and relative humidity) on particle emissions from human volu
177 re, which can be actuated by either changing relative humidity or contact with water.
178 e-drying, incubation of samples at different relative humidities, or by applying varying pressures du
179 activity of just 0.585 ( identical with58.5% relative humidity), outside the currently understood the
180 ains within aerosols at 22 degrees C and 80% relative humidity over time.
181 lely regulated by a simple adjustment of the relative humidity, positioning this hydrolytically stabl
182 ccordingly, maintaining these animals at 90% relative humidity prevented lethality.
183 with variability in terms of temperature and relative humidity (R.H.).
184              Meteorological variables, i.e., relative humidity, rainfall volume, wind speed, and wind
185 butanol, toluene, 1,2,4-trimethylbenzene) at relative humidity range 0-95% with an overall mean relat
186              When the sensors are exposed to relative humidity ranging from 10-80%, we observe signif
187 tion-exchange membranes, was investigated at relative humidity ranging from 25 to 75%.
188 s occupy the entire pore interior before the relative humidity reaches 30%.
189 tion of oxygen, carbon dioxide, ammonia, and relative humidity readable by a smartphone.
190 nd effloresce transitions, albeit at a lower relative humidity relative to pure sodium chloride.
191 ns of airborne biological spores at elevated relative humidity remain poorly understood and their cli
192 (>10(-4) S cm(-1) ) under both ambient (with relative humidity RH < 75%) and hot (T > 90 degrees C, R
193 4(2-),dark) under dark conditions at various relative humidities (RH) ranging from 20% to 80%.
194 bjected to ambient storage at four different relative humidities (RH; ~0%, ~22.5%, ~43.2% and ~100%).
195 ) when the temperature (15-35 degrees C) and relative humidity (RH >= 90% for 8 consecutive hours) we
196 ) ammonium sulfate seeds at exactly the same relative humidity (RH = 70%) and state of wall condition
197 d that specific compounds can be air stable (relative humidity (RH) = 20-80% +/- 5%) for more than 45
198  conductivity (5.0 x 10(-2) S cm(-1)) at 98% relative humidity (RH) and 25 degrees C.
199 nano-Wilhelmy methodologies as a function of relative humidity (RH) and ambient temperature condition
200 ijing (winter haze) are associated with high relative humidity (RH) and fast production of particulat
201  supplemented this with a range of terms for relative humidity (RH) and its interaction with temperat
202 on of isoprene in a flow tube reactor at 70% relative humidity (RH) and room temperature in the prese
203 larity are trapped and equilibrated at fixed relative humidity (RH) and then subsequently merged, and
204  stored for 6 months at 25 degrees C and 60% relative humidity (RH) and under accelerated stability c
205 ation was applied to calculate the effect of relative humidity (RH) and water content at five mixing
206 ncrease in water vapor from near zero to 70% relative humidity (RH) at high O(3) exposure increased t
207 gates composed of inorganic salts exposed to relative humidity (RH) between 0 and 80% after formation
208 tion as multiple influencing factors such as relative humidity (RH) can distort the observed relation
209  hydrophilic films are carried out under one relative humidity (RH) condition.
210 ecules within their pores under low (30-35%) relative humidity (RH) conditions.
211 their kinetics at different temperatures and relative humidity (RH) conditions.
212 eric lifetime or only (re)crystallize at low relative humidity (RH) due to the kinetic limitations of
213 e greater uptake was up to 2.5x to 8x at 10% relative humidity (RH) for glyoxal and pinanediol, respe
214 -cellulose (delta(18) O(cell) ) to shifts in relative humidity (RH) in two treatments, one from high-
215                                              Relative humidity (RH) is known to affect the survival o
216 0 days of storage at 22 and 40 degrees C and relative humidity (RH) of 11, 23 and 54%.
217  (aw) of 0.5 were stored at 30 degrees C and relative humidity (RH) of 40-50%.
218   The ability to account for the role of the relative humidity (RH) of the aerosol prior to, and duri
219 PcTs for better understanding the effects of relative humidity (RH) on hydrophilic phthalocyanines, a
220                          Temperature (T) and relative humidity (RH) strongly affect the partitioning
221 trary to previously held assumptions, at low relative humidity (RH) these particles are semisolid and
222 ucturally diverse set of OS salts at varying relative humidity (RH) using a Hygroscopicity-Tandem Dif
223 involved a 20 min baseline period (26 +/- 3% relative humidity (RH)), 60 min while ambient humidity w
224 polymerizing already below 60 degrees C (65% relative humidity (RH)), whereas gliadin only is incorpo
225  running time, real-time sample mass, target relative humidity (RH), actual RH, and isotherm temperat
226 nvestigate how the ozone (O3) concentration, relative humidity (RH), and particle size control reacti
227 ready under mild dehydration conditions (97% relative humidity (RH), corresponding to freezing at -3
228       The phage powder recrystallized at 60% relative humidity (RH), so it was stored and handled bel
229 etics of squalene and O3 were independent of relative humidity (RH), the RH significantly affected th
230 The accuracy of the sensors was dependent on relative humidity (RH), with decreases in accuracy at RH
231 pendent on the environmental temperature and relative humidity (RH).
232  of sulfur dioxide (SO2), ammonia (NH3), and relative humidity (RH).
233 egative water vapor adsorption at ca. 40-50% relative humidity (RH).
234 lowing changes in the particle diameter with relative humidity (RH).
235 eda) cell wall layers under 70%, 75%, or 80% relative humidity (RH).
236  (WSOCp,dry) maintained at approximately 35% relative humidity (RH).
237 orne respiratory viruses varies with ambient relative humidity (RH).
238 e demonstrated using H2O(g) as a function of relative humidity (RH).
239 ) while responding to changes in the ambient relative humidity (RH).
240 alpha-pinene SOA) particles as a function of relative humidity (RH).
241 o measure phase transitions as a function of relative humidity (RH).
242  seen with aqueous aerosol particles at >80% relative humidity (RH).
243 e systematically determined as a function of relative humidity (RH).
244 y the shallow PBL, leading to an increase in relative humidity (RH); (2) the high RH induces an incre
245 g methods hot air (HA), 50 degrees C, 58-63% relative humidity (RH); low humidity air (LHA), 50 degre
246 s to 5 ppm sulfur dioxide at arid (23 +/- 1% relative humidity, RH) and marine (98 +/- 1% RH) conditi
247 ials pre-equilibrated at three levels of air relative humidity (RHs 52, 73, and 92%).
248 te factors, especially temperature (TEM) and relative humidity (RHU), while H5N1 infections correlate
249 icles become cloud droplets when the ambient relative humidity (saturation ratio) exceeds a critical
250 y liquid in tropical and polar air with high relative humidity, semi-solid in the mid-latitudes and s
251                                The resistive relative humidity sensor was developed using a filter pa
252 .8x10(-2) S cm(-1) at 22.5 degrees C and 98% relative humidity, single crystal).
253 , surface pressure (mbar), wind speed (m/s), relative humidity (%), soil moisture (%), solar radiatio
254 icide Ksoil-air values based on temperature, relative humidity, soil organic carbon content, and pest
255 e been reported, all of which assume varying relative humidity, solar irradiance, and desiccant mater
256 s as a significant predictor more often than relative humidity, solar irradiation, or temperature.
257 rate that greening can be promoted with high relative humidity storage, and use of high moisture and
258  controlled conditions (25 degrees C and 57% relative humidity), such as those found in health care s
259 ments have higher temperatures and different relative humidities than surrounding suburban and rural
260       IRMOF-3 is found to degrade at a lower relative humidity than MOF-5, a likely consequence of th
261  being their storage stability better at low relative humidity than that of the non-encapsulated cont
262 onductivities (up to 10(-3) S cm(-1) at high relative humidity) that compete with extended metal-orga
263                  At atmospherically relevant relative humidities, the particulate chloride in the bio
264                                      At high relative humidity, there was no protection and low stora
265                              With increasing relative humidity, these water chains nucleate pore fill
266  and the collector, ambient temperature, and relative humidity) this technique can be effectively use
267 nature with a growth factor up to 2.3 at 96% relative humidity, thus they may potentially influence c
268 the lowest water contents, we employed fixed relative humidities to control water films at nm thickne
269   In particular, although an increase in the relative humidity to 50% from dry conditions has no effe
270 ange of moisture contents from 3.7% w/w (11% relative humidity) to 18.8% w/w (75% relative humidity).
271 nge of moisture contents from 7.34% w/w (23% relative humidity) to 19.52% w/w (75% relative humidity)
272 suppressed rainfall and reduced tropospheric relative humidity) under CO2 warming from Coupled Model
273 t forced wheel running at 37.5 degrees C/40% relative humidity until symptom limitation, characterize
274  running for 1.5-3 h in a 37.5 degrees C/40% relative humidity until symptom limitation, characterize
275 stability of this transparent conductor to a relative humidity up to 100% at room temperature for 25
276 articles decreased slightly upon increase of relative humidity up to 80%.
277 ) and natural aging (ambient temperature and relative humidity, up to 18 months) and a control condit
278 luenza virus in aerosols at both 20% and 70% relative humidity using an environmentally controlled ro
279 are computed as functions of temperature and relative humidity using high-level electronic structure
280  treatments: blanching, storage at different relative humidity values and fermentation.
281 ts from 3.6% to 18.8%, which corresponded to relative humidity values of 11% and 75%.
282 kely produce high adhesion across a range of relative humidity values.
283 he interactions between high temperature and relative humidity (vapor pressure deficit--VPD).
284               This stability is disrupted if relative humidity varies.
285 olatile pesticides and that the way in which relative humidity was accounted for was the most critica
286                     A strong dependence upon relative humidity was also observed for uptake onto humi
287         Moreover, disease exacerbated by low relative humidity was ameliorated in caspase-1/11-defici
288           Low temperature combined with high relative humidity was associated with higher sCoV activi
289 d deviation) working ambient temperature and relative humidity were 29.6 degrees C (2.0 degrees C) an
290 l temperature range (DTR), precipitation and relative humidity were associated with increased RSV tra
291 rom halites exposed to coastal fogs and high relative humidity were more diverse; their archaeal and
292    AFM imaging and force spectroscopy at 20% relative humidity were performed to record 3D height ima
293  OH(-) does not induce pore-filling at lower relative humidity, whereas the introduction of the large
294 of 6.45 x 10(-3) S cm(-1) (at 313 K and 100% relative humidity) which is among the highest values so
295 vealed negative associations between minimum relative humidity, which was inversely correlated with m
296 ed to solar radiation, horizontal heat flux, relative humidity, wind speed, soil moisture differences
297 4.45 under 1 ppm H(2) S, and 23.46 under 80% relative humidity, with sensitive detection down to 10 p
298  dynamics of confined water as a function of relative humidity within a metal-organic framework conta
299            Near-infrared mapping reveals the relative humidity within prominent downwelling regions.
300 (up to 6months), temperature during storage, relative humidity within storage facilities, type of pac

 
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