Destination Mars (38 page)

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Authors: Rod Pyle

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ceasing operation,
193
,
227

28

compared to MSL rover,
253

finding own heat shield,
183

getting stuck in sand,
226
,
227

re-creation of the entrapment.
See
photo section

mechanical problems,
214
,
216

17
,
225

26

See also
Mars Exploration Rovers mission (MER)

“Spirit Point” (Opportunity's point of arrival at Endeavor Crater),
228

Sputnik program (Soviet Union),
57
,
148

Squyres, Steve,
189

94

SSI.
See
surface stereo imager Stanford University,
267

Stapledon (rock examined by Spirit),
225

sulfates,
248
,
258

sunset on Mars.
See
photo section

surface stereo imager (SSI),
232

33

surveying Mars.
See
mapping of Mars; photographing Mars

Surveyor program (targeting the Moon),
73

74

Syrtis Major Planum,
31
,
33
,
40
,
40

TECP.
See
Thermal and Electrical Conductivity Probe

TEGA.
See
Thermal and Evolved Gas Analyzer

telescopic exploration of Mars,
43

44
,
47

measuring upper atmosphere,
19

misinterpretation of,
41

See also
mapping of Mars;
photo section

Tempel 1 (comet),
267

temperatures.
See
weather on Mars

10-K rover at FMARS,
274

Terra Sirenum (crater),
112
,
113

“terrestrial” planets,
32
,
298n3

Tharsis Bulge (volcanic region),
29

32
,
76
,
210

THEMIS.
See
Thermal Emission Imaging System

Thermal and Electrical Conductivity Probe (TECP),
233

Thermal and Evolved Gas Analyzer (TEGA),
233
,
235

40
,
310n3

See also
photo section

Thermal Emission Imaging System (THEMIS),
158
,
167
,
175

Thermal Emission Spectrometer,
172
,
175

thermal information from Mars Odyssey program,
162

63

thermal infrared spectrometer,
262

Thomas Mutch Memorial Station,
96

Time
(magazine),
147

Titan (a moon of Saturn),
33
,
243

44

Titan (rocket),
107
,
302n1

Titanic
(movie), cost of,
136

Tomasko, Martin,
243
,
244

TUMS®,
240

UCLA.
See
University of California, Los Angeles

United States Geological Survey (USGS),
79

Universe, The
(JPL newspaper),
133

University of Arizona,
267

and Phoenix program,
229

41
,
309

10n1

and Peter Smith,
243

51

University of California, Los Angeles,
261

University of Colorado,
267
,
273

University of Leicester,
144

University of Southern California,
115

University of Washington,
210

University Valley (Antarctica),
284

85

unmanned explorations sent to Mars,
126
,
300n1
(
chap. 4
)

budget for in the 1960s,
73

“faster, better, cheaper” as approach to,
124
,
136

37
,
139
,
152
,
155
,
157
,
231

future potential missions,
292

94

Great Galactic Ghoul impact on failures,
147

55

timeline of mission failures,
148

50

use of “Big Dumb Landers,”
20
,
126

See also
longevity of Mars missions; Mariner program; Mars Climate Orbiter; Mars Exploration Rovers mission; Mars Express; Mars Global Surveyor program; Mars Observer program; Mars Odyssey program; Mars Polar Lander; Mars Reconnaissance Orbiter program; Mars Science Laboratory project; Pathfinder mission; Phoenix lander; Soviet Union's space programs; Viking program

Uranus (planet),
267

USGS.
See
United States Geological Survey

Utah desert as a research site for the Mars Society,
286

87

Utopia Planitia (Nowhere Plain) (landing site for Viking 2 lander),
25
,
87
,
302n2

See also
photo section

Valles Marineris,
30
,
76
,
145

See also
photo section

Vastitas Borealis (Northern Waste),
234

Venus (planet),
267

Magellan Venus project,
190

Mariner 2 flyby of,
52
,
57

myths about surface of,
101

Soviet Union's attempts to
probe,
57
,
107
,
143
,
297n1
,
306n1

as a “terrestrial” planet,
298n3

Vesta (asteroid),
267

Victoria Crater,
205
,
219

23
,
224
,
225
,
226

“bathtub ring,”
222

Cape Verde.
See
photo section

Duck Bay,
221

See also
photo section

Viking program,
133
,
152
,
166
,
205
,
283

compared to Phoenix lander,
232
,
234

and Mariner program,
64
,
77

and MRO,
190
,
199

and the search for life on Mars,
83

97
,
263
,
275
,
284

experiments planned,
84
,
88

89
,
93
,
95
,
100

101
,
276

Norman Horowitz's efforts to find,
99

105

use of redundancy in planning,
307n1
(
chap. 18
)

Viking 1 lander,
17

25
,
124
,
126
,
253
,
297n1
.
See also
photo section

aeroshell,
18
,
19
,
124
,
135

different landing technique used by Pathfinder,
124

25
,
135

first images of Viking 1's footpad,
22
,
89

90

problems encountered,
91

94
,
96

97

Viking 1 orbiter,
17
,
20
,
23
,
112
,
126
,
205
,
210

deactivation of,
96

photographic surveys of Mars,
21
,
25
,
85
,
110
,
125
.
See also
photo section

Viking 2 lander,
25
,
87
,
124
,
126
,
181
,
234
,
253
.
See also
photo section

depiction of Martian explorer revisiting site of landing.
See also
photo section

different landing technique used by Pathfinder,
124

end of mission,
96

Viking 2 orbiter,
205
,
210

photographic surveys of Mars,
25
,
85
,
110
,
125
,
126
.
See also
photo section

Viking life-science lab,
256

Viking sampler arm,
85
,
88
,
92
,
93
,
302n3

visual target tracking,
220

21

volcanic activity on Mars,
29

33
,
54
,
69
,
120
,
131

Mariner 9 discovering volcanoes,
75
,
76

77
,
80

and melted ice,
204

MGS confirming widespread volcanism,
111

See also
names of specific volcanoes, i.e., Arsia Mons, Tharsis Bulge, etc. ;
photo section

Von Braun, Wernher,
291

Voyager program,
121
,
134
,
190
,
243
,
267

vugs (empty areas),
183

War of the Worlds, The
(1953 movie),
49

War of the Worlds, The (Wells),
48

49

water on Mars,
66
,
211

canals of Mars theories,
43

47
,
55

early misunderstandings about,
34

leading to major features' names,
33

hydrated materials found,
145
,
202

204

as an indicator of possible life,
181
,
204
.
See also
life on Mars

meltwater,
34
,
103

Mount Wilson Observatory data that de-Lowellized beliefs about Mars,
102

103

new discoveries of water,
34

35
,
110

11
,
183

finding evidence of flowing water,
185

finding hematite,
111
,
183
,
213
,
216
,
262
,
302

303n2

finding that Mars had water at one time,
104

formation of rocks,
213
,
216
,
224

and Mariner
9
,
191

and Mars Odyssey,
158
,
160
,
163

64
,
167

68

measuring northern ice cap,
202

and MER,
183
,
185
,
190

91
,
262

and MGS,
112
,
112
,
118

new equipment to look for,
196

97

and Pathfinder,
128

and sedimentation,
182

subsurface water,
145

46

planning for contingency of no water on Mars,
103

spectroscopic analyses of,
45

water ice,
64
,
145
,
163
,
167

68
,
203
,
238
.
See also
photo section

ice layer under northern plains,
247

48

and the Phoenix lander,
239
,
240
,
249

50

recent melting of water snow,
161

water ice in soil.
See
permafrost

wide distribution of,
163

water vapor,
238

water-worn features found,
77
,
110

“wave of darkening,”
34
,
58

WCL.
See
wet chemistry lab

weather on Mars,
90

91
,
110
,
197
,
211
,
221

22
,
233

34

active meteorological system,
163

clouds,
24
,
29
,
76
,
85
,
130
,
220
,
298n4

dust clouds,
75
,
75

76
,
80
,
206

207

dust storms,
75
,
75

76
,
78
,
80
,
85
,
91
,
210
,
221

22
.
See also
photo section

seasons,
34
,
40
,
69
,
161
,
197
,
277

winter,
163
,
219
,
227
,
235
.
See also
photo section

temperatures,
125
,
126
,
130
,
162
,
163
,
200
,
235

impact of on Pathfinder,
129
,
131

THEMIS used to map temperatures,
158
,
167

warmer and wetter in first billion years,
191
,
216

winds,
34
,
55
,
124
,
223
,
298

99n4
.
See also
photo section

aeolian (wind-sculpted) features found,
77
,
110

study of windblown dust,
175

See also
atmosphere on Mars; permafrost;
photo section

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