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1 icles with kinematic sensors, cameras, and a global positioning system.
2 ysics and into everyday applications such as global positioning systems.
3 p-factor; 27 behavior markers derived from a global positioning system, accelerometer, motion, call l
4 Tracking wild baboons with a high-resolution global positioning system and analyzing their movements
5 de of ground uplift in mid-2004, revealed by Global Positioning System and interferometric synthetic
6 acent to the Hayward fault measured with the global positioning system and interferometric synthetic
7        Recent integration of high-resolution Global Positioning System and other sensors into miniatu
8                                       We use Global Positioning System and passive seismic records of
9 otion, teleseismic, field mapping, high-rate global positioning system and space geodetic datasets wi
10                                              Global Positioning System and trilateration surveys from
11 n programmed to geofence all hospitals using global positioning systems and cell phone tower triangul
12 y improving existing technology, such as the global positioning system, and also for enabling the exp
13 th interferometric synthetic aperture radar, Global Positioning System, and seismology data, reveal t
14 jective assessment, accelerometers, cameras, global positioning systems, and other sensors were insta
15 e apps, Google Earth environmental datasets, Global Positioning Systems, and WebGIS for a geographica
16                              Here we use the global positioning system as a 50,000 km aperture dark m
17 . contraction) on attraction using a popular Global Positioning System-based online-dating applicatio
18                              Accelerometers, global positioning systems, cameras, and other technolog
19                     We fitted 19 wolves with global positioning system collars during May-August of 2
20                                  We deployed Global Positioning System collars on cattle in 52 herds
21 ly-derived crop-specific datasets along with Global Positioning System collars to monitor 14 mule dee
22 and untreated communities were assessed from global positioning system coordinates collected for the
23  to validate map book categorization against Global Positioning System coordinates taken from partici
24 rtained through integrated accelerometry and global positioning system data and from individual trave
25 community health campaign were tracked using global positioning system data and offered home-based HI
26 lying on advances in spatial computation and global positioning system data on everyday mobility flow
27 orp, Northwest Province, South Africa; using global positioning system data), enrolled, and followed
28 ring of physical activity and acquisition of global positioning system data.
29         This paper exploits the potential of Global Positioning System datasets sourced from mobile p
30       In a strategy analogous to a nanoscale global positioning system determination, we use the intr
31 steps were quantified with accelerometry and Global Positioning System devices.
32 overnment area where tracking was conducted, global positioning system-enabled Android phones were gi
33 s) fitted in a Bayesian framework and hourly Global Positioning System fixes to distinguish animal mo
34 n the vehicle was operating (accelerometers, global positioning system, forward radar, 4-channel vide
35 te 7 km from home, using high-precision 5 Hz global positioning system (GPS) and 200 Hz tri-axial acc
36 ere we use data from innovative back-mounted Global Positioning System (GPS) and 6-degrees-of-freedom
37  our own design, containing a combination of Global Positioning System (GPS) and inertial measurement
38 nean and eastern Turkey is studied using the Global Positioning System (GPS) and seismic anisotropy d
39 ollapses were exceptionally well recorded by global positioning system (GPS) and tilt instruments and
40                                      Genomic global positioning system (GPS) applies the multilaterat
41 tion, and dispersal data from 143 individual global positioning system (GPS) collared lynx from popul
42                                      We used Global Positioning System (GPS) collars and proximity-se
43                                 Using random Global Positioning System (GPS) coordinate sampling, 126
44 op 49 most populated metropolitan areas with Global Positioning System (GPS) data collected from mobi
45                                        Using Global Positioning System (GPS) data collected from smar
46                                  Analysis of Global Positioning System (GPS) data demonstrates that o
47 hysics (BMKG) in Indonesia and inversions of global positioning system (GPS) data reveal clear seismi
48 resent study examined the ability to utilize Global Positioning System (GPS) data, derived passively
49 filled crack was estimated from inversion of Global Positioning System (GPS) data, tiltmeters, and le
50                                      We used Global Positioning System (GPS) data-loggers to track th
51 , we compared location data from a dedicated Global Positioning System (GPS) device with location dat
52 ocator (GLS) devices (0.6% body mass), large Global Positioning System (GPS) devices (4.2% body mass)
53 -intrusion displacement maps with continuous Global Positioning System (GPS) displacement vectors to
54 se general principle is similar to that of a global positioning system (GPS) in a car.
55 ystem using sensors and actuators, where the Global Positioning System (GPS) lacks.
56                         Using high-precision global positioning system (GPS) loggers in conjunction w
57                                              Global Positioning System (GPS) measurements across the
58                                              Global Positioning System (GPS) measurements at subducti
59 lled by 38 individuals were determined using Global Positioning System (GPS) measurements of animal t
60 e site, using ice-penetrating radar data and Global Positioning System (GPS) measurements of surface
61                                              Global Positioning System (GPS) measurements suggest hou
62 occupied by the elephants as recorded by the global positioning system (GPS) movement record; the abs
63                Our observations from a dense Global Positioning System (GPS) network allow us to dete
64  have occurred beneath a high-rate (5-hertz) Global Positioning System (GPS) network.
65 area determined from a continuously operated global positioning system (GPS) network.
66                                       We use Global Positioning System (GPS) observations and elastic
67  Recovery and Climate Experiment (GRACE) and global positioning system (GPS) observations reveal that
68 cords integrated to displacement and 1-hertz Global Positioning System (GPS) position estimates colle
69       We used simultaneous spatial data from Global Positioning System (GPS) radiocollars deployed on
70 America plate obtained from a combination of Global Positioning System (GPS) receivers and acoustic t
71 y with increased access to low-cost handheld global positioning system (GPS) receivers and free progr
72 ly recording geodetic instruments, including global positioning system (GPS) receivers, tilt meters a
73 iver frequency facilitating the reception of Global Positioning System (GPS) signals scattered off th
74                                              Global Positioning System (GPS) stations installed in an
75 les, a network of 250 continuously recording global positioning system (GPS) stations was deployed to
76                                              Global Positioning System (GPS) surveys from 1991 to 199
77          We used sutures to attach miniature global positioning system (GPS) tags and data loggers th
78 nd mechanisms of the foreshocks and computed Global Positioning System (GPS) time series at stations
79    The Greenland GPS Network (GNET) uses the Global Positioning System (GPS) to measure the displacem
80 sis of pigeons' homing routes recorded using global positioning system (GPS) trackers showed that the
81                     We analyzed deidentified Global Positioning System (GPS) tracking data from 1.15
82                          This study combined Global Positioning System (GPS) tracking data of 12 urba
83                        However, simultaneous Global Positioning System (GPS) tracking of the entire S
84        Here, we use high-temporal-resolution Global Positioning System (GPS) tracking of wandering (D
85                           We used 9 years of global positioning system (GPS) vertical deformation tim
86 ing seismicity, ground deformation mapped by Global Positioning System (GPS), interferometric analysi
87 in Earth's deep-mantle buoyancy derived from Global Positioning System (GPS)-based measurements of se
88                                 We present a Global Positioning System (GPS)-based methodology for se
89 valuate subsidence in this region including: Global Positioning Systems (GPS), Levelling, and Geotech
90 data, including geolocation metrics (via the global positioning system [GPS]), as well as weekly expe
91 nsing, geographical information systems, and global positioning systems have transformed the way the
92 cations of all food outlets using a handheld global positioning system in 8 counties in South Carolin
93  driving simulator while listening either to global positioning system instructions (integrated task)
94                                              Global-positioning-system-like navigation can further en
95                           By using precision global-positioning-system loggers, we show that homing p
96                                  Independent global positioning system measurements confirmed the tim
97  surface-wave observations with simultaneous Global Positioning System measurements of ice displaceme
98                         Here we use vertical global positioning system measurements to show that a br
99 ed by environmental sampling, actigraphy and global positioning system measures, biological sampling
100 oad and aircraft noise were calculated using global positioning system mobility data and kernel densi
101 ile Wi-Fi router for easy connectivity and a global positioning system module for geolocation.
102                                              Global positioning system navigation relies on precision
103  surveys of a dense, 800-kilometer-aperture, Global Positioning System network.
104 ed with topographic data, geoid data, recent global positioning system observations, and strain rate
105          Here we show that new seafloor GPS (Global Positioning System) observations immediately afte
106 cell contains importin beta and transportin "global positioning system"or "GPS" pathways that are mec
107 identified range shifts were corroborated by global positioning system radio tracking data of the stu
108                          We used 11 years of Global Positioning System relocation data to determine f
109 e equipped nesting turtles with Fastloc-GPS (Global Positioning System) satellite tags at an Indian O
110 viously unpublished pixelated radiometers on Global Positioning System satellites from 2014 to 2019.
111                       Precise positioning of Global Positioning System sites distributed worldwide re
112                                              Global Positioning System sondes have been used since 19
113 e swarm and 8 millimeters upward measured at global positioning system station Slide Mountain (SLID)
114                       Continuously recording Global Positioning System stations near the 28 March 200
115      Measurements from coral microatolls and Global Positioning System stations reveal trench-paralle
116 sted time series from continuously operating global positioning system stations to measure this uplif
117                                        Using Global Positioning System technologies, we mapped Salmon
118 ack bears, and bobcats using contemporaneous Global Positioning System telemetry data from 51 individ
119                                 By combining global positioning system telemetry of an abundant antel
120 tness the collision of black holes, create a Global Positioning System that we can carry in our pocke
121                                  Equipped by Global Positioning System, the biosensor was used for cr
122 al, chemical, and physical parameters, using Global Positioning System time as the data fusion key, t
123 dshift, is important to the operation of the global positioning system, timekeeping and future experi
124 , a common computation used by surveying and global positioning systems to localize objects.
125        Activity patterns were assessed using global positioning systems (total distance and age-speci
126 his minor storm have been investigated using Global Positioning System-total electron content (TEC) a
127         Participants wore accelerometers and global positioning system trackers for 7 days to measure
128 RFAI) at the census tract level by utilizing Global Positioning System tracking data covering over 94
129                              Using miniature Global Positioning System tracking technology and clock-
130 ng a combination of vessel-based surveys and Global Positioning System tracking, we show that pelagic
131                                      We used Global Positioning System tracks of 89 free-ranging alba
132                                            A global positioning system unit recorded the location of
133 ture, geometry, relative plate velocity, and Global Positioning System velocity field are well constr
134          Agreement between map books and the Global Positioning System was 100% in the 20 adults sele
135                                            A global positioning system was used to analyze the behavi
136 ned with open-loop stage data to establish a global positioning system without costly hardware, while

 
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