March 15, 2025

Crew 10's Stellar Launch, Earth's Electric Mysteries, and a Blazar's Cosmic Conundrum: S04E64

Crew 10's Stellar Launch, Earth's Electric Mysteries, and a Blazar's Cosmic Conundrum: S04E64

Astronomy Daily | Space News: S04E64
In this thrilling episode of Astronomy Daily, host Anna brings you the latest news from the cosmos, featuring significant milestones in space exploration and captivating cosmic phenomena. From NASA's Crew 10...

Astronomy Daily | Space News: S04E64
In this thrilling episode of Astronomy Daily, host Anna brings you the latest news from the cosmos, featuring significant milestones in space exploration and captivating cosmic phenomena. From NASA's Crew 10 mission to groundbreaking studies of Earth's auroras, this episode is packed with insights that will ignite your curiosity about the universe.
Highlights:
- NASA's Crew 10 Mission Launch: Celebrate the successful nighttime launch of SpaceX's Crew 10 mission, carrying NASA astronauts Anne McClane and Nigel Ayers, JAXA astronaut Takuya Onishi, and Roscosmos cosmonaut Kirill Peskov to the International Space Station. Discover the mission's objectives, including exciting scientific investigations and global student engagement through the ISS Ham Radio program.
- NASA's EZIE Mission: Dive into the details of NASA's Electrojet Zeeman Imaging Explorer (EZIE), a groundbreaking mission set to study auroral electrojets. Learn how this innovative trio of cubesats will map electrical currents flowing near Earth's poles, providing critical insights into space weather and planetary magnetic environments.
- The Shape-Shifting Blazar: Explore the cosmic enigma of BL Lacerti, a blazar that is defying classification with its rapid switching between blazar types. Uncover the implications of this behavior and the ongoing debates among astronomers regarding its nature and classification.
- China's Tiangong Space Station Update: Get the latest on the Shenzhou 19 crew aboard China's Tiangong Space Station, conducting groundbreaking research and preparing for future missions. Learn about their innovative experiments and the exciting collaboration with Pakistan to train astronauts for upcoming missions.
- Vera Rubin Observatory's Role in Kuiper Belt Exploration: Discover how the upcoming Vera Rubin Observatory will collaborate with NASA's New Horizons spacecraft to explore the Kuiper Belt. This partnership aims to identify new targets for exploration, potentially revealing more about this distant region of our solar system.
For more cosmic updates, visit our website at astronomydaily.io. Join our community on social media by searching for #AstroDailyPod on Facebook, X, YouTubeMusic, TikTok, and our new Instagram account! Don’t forget to subscribe to the podcast on Apple Podcasts, Spotify, iHeartRadio, or wherever you get your podcasts.
Thank you for tuning in. This is Anna signing off. Until next time, keep looking up and stay curious about the wonders of our universe.
00:00 - This week's Astronomy Daily features big developments from across the cosmos
00:53 - SpaceX's Falcon 9 rocket successfully launched the Crew 10 mission on Friday
03:04 - NASA's newest mission to study Earth's auroras is preparing for launch
05:27 - B.L. lacerte rapidly switches between different blazar types
07:39 - China's space program continues to make impressive strides with their Tiangong Station
09:39 - The Vera Rubin Observatory could help guide NASA's New Horizons through Kuiper Belt
11:43 - This week on Astronomy Daily we look at the latest space news✍️ Episode References
NASA Crew 10 Mission Details
[NASA Crew 10](https://www.nasa.gov/crew10)
EASY Mission Information
[NASA EASY](https://www.nasa.gov/ezie)
BL Lacerti Research Insights
[Research Article](https://www.example.com)
China's Tiangong Space Station Updates
[CMSA Tiangong](
WEBVTT

1
00:00:00.160 --> 00:00:03.720
Today on Astronomy Daily, we have an action packed episode

2
00:00:03.759 --> 00:00:07.360
filled with big developments from across the cosmos. We'll start

3
00:00:07.360 --> 00:00:11.039
with the successful launch of NASA's SpaceX Crew ten mission,

4
00:00:11.359 --> 00:00:13.880
which is now carrying four new crew members to the

5
00:00:13.919 --> 00:00:19.199
International Space Station. We'll also explore NASA's groundbreaking Easy mission

6
00:00:19.239 --> 00:00:22.399
that's set to study the mysterious electrical currents flowing around

7
00:00:22.480 --> 00:00:26.679
Earth's poles. Then we'll venture into deep space to examine

8
00:00:26.679 --> 00:00:31.120
a cosmic mystery that's baffling astronomers, a shape shifting blazaar

9
00:00:31.199 --> 00:00:33.320
that's breaking all the rules we thought we knew about

10
00:00:33.359 --> 00:00:36.759
these powerful objects. From there, we'll check in on China's

11
00:00:36.759 --> 00:00:40.119
Tiangong Space Station and their busy schedule of experiments in

12
00:00:40.159 --> 00:00:44.119
future missions. And finally, we'll look at how Earth's newest

13
00:00:44.159 --> 00:00:49.079
astronomical eye, the Vera Reuben Observatory, might help guide NASA's

14
00:00:49.079 --> 00:00:52.799
new Horizon spacecraft to new discoveries in the distant Kuiper Belt.

15
00:00:53.359 --> 00:00:55.520
So let's get started with the news we've all been

16
00:00:55.560 --> 00:00:59.439
waiting to hear. In a spectacular nighttime launch from NASA's

17
00:00:59.479 --> 00:01:03.759
Kennedy Space Center in Florida, SpaceX's Falcon nine rockets successfully

18
00:01:03.799 --> 00:01:06.879
lifted off at seven oh three pm EDT on Friday,

19
00:01:07.400 --> 00:01:10.319
carrying the Crew ten mission toward the International Space Station.

20
00:01:11.000 --> 00:01:14.439
The Dragon spacecraft carried an international quartet of space travelers,

21
00:01:14.799 --> 00:01:18.840
NASA astronauts Anne McLain and Nicole Ayr's Jaksa astronaut to

22
00:01:18.920 --> 00:01:24.560
Kuya Onishi, and Rascosmos cosmonaut Kirol Peskov. For commander Anne maclain,

23
00:01:24.799 --> 00:01:27.359
this marks her second journey to the orbital outpost, while

24
00:01:27.400 --> 00:01:30.200
mission pilot Nicole Ayers is embarking on her first space

25
00:01:30.280 --> 00:01:33.560
flight to kuy Onishi is making his second trip to

26
00:01:33.599 --> 00:01:37.319
the station, and Kirol Peskov is experiencing his first venture

27
00:01:37.319 --> 00:01:42.159
into space. The Dragon spacecraft is scheduled to dock autonomously

28
00:01:42.239 --> 00:01:45.560
with the station's Harmony Module, where the new arrivals will

29
00:01:45.560 --> 00:01:49.840
temporarily bring the station's crew complement to eleven. This highlights

30
00:01:49.879 --> 00:01:53.239
the increasingly busy nature of our orbital outpost and the

31
00:01:53.239 --> 00:01:58.120
growing international cooperation in space exploration. During their stay aboard

32
00:01:58.159 --> 00:02:02.400
the station, the Crew ten tis will conduct numerous scientific investigations,

33
00:02:02.760 --> 00:02:07.200
including material flammability tests that will help inform future spacecraft design.

34
00:02:07.799 --> 00:02:11.280
They'll also engage with students worldwide through the iss HAM

35
00:02:11.360 --> 00:02:15.000
Radio program and participate in physiological studies that will provide

36
00:02:15.000 --> 00:02:19.360
crucial data for future deep space missions. This mission represents

37
00:02:19.400 --> 00:02:23.680
the tenth crew rotation under NASA's Commercial Crew program, demonstrating

38
00:02:23.719 --> 00:02:27.400
the success of the agency's partnership with private industry. As

39
00:02:27.439 --> 00:02:31.360
Acting NASA Administrator Janet Petro noted, these missions are laying

40
00:02:31.400 --> 00:02:34.919
the groundwork for future exploration from low Earth orbit to

41
00:02:34.960 --> 00:02:38.759
the Moon and eventually Mars. The successful launch of Crew

42
00:02:38.840 --> 00:02:42.560
ten continues the remarkable achievement of maintaining a continuous human

43
00:02:42.599 --> 00:02:46.439
presence in space, with the International Space Station now having

44
00:02:46.520 --> 00:02:50.280
been continuously occupied for more than twenty four years. This

45
00:02:50.360 --> 00:02:54.199
mission not only advances our scientific understanding, but also strengthens

46
00:02:54.240 --> 00:02:58.439
the international bonds that make space exploration possible. It also

47
00:02:58.520 --> 00:03:01.120
means that Butch and Sunni can finly come home, and

48
00:03:01.159 --> 00:03:05.159
we should see them back on Earth shortly. NASA's newest

49
00:03:05.159 --> 00:03:09.159
mission to study Earth's auroras is preparing for launch, with

50
00:03:09.280 --> 00:03:12.400
three small but mighty spacecraft ready to unlock the mysteries

51
00:03:12.439 --> 00:03:15.120
of the spectacular light shows we know as the Northern

52
00:03:15.159 --> 00:03:20.159
and Southern Lights. The Electrojet Zeman Imaging Explorer, or EASY

53
00:03:20.199 --> 00:03:23.960
for short, represents the first dedicated mission to study auroral

54
00:03:24.000 --> 00:03:28.919
electrojets powerful electrical currents flowing high in our planet's atmosphere

55
00:03:28.919 --> 00:03:32.520
near the poles. These remarkable currents can push up to

56
00:03:32.560 --> 00:03:36.319
a million amps of electricity through the upper atmosphere, about

57
00:03:36.360 --> 00:03:39.800
sixty five miles above Earth's surface. To put that in perspective,

58
00:03:40.120 --> 00:03:43.319
that's enough electrical current to power hundreds of thousands of homes.

59
00:03:43.840 --> 00:03:46.680
The mission will use three cube SATs, each about the

60
00:03:46.719 --> 00:03:50.159
size of a carry on suitcase, working together like pearls

61
00:03:50.199 --> 00:03:52.400
on a string as they orbit from pole to pole

62
00:03:52.479 --> 00:03:55.479
between two hundred and sixty to three hundred seventy miles up.

63
00:03:56.319 --> 00:03:59.520
What makes easy particularly clever is how these satellites will

64
00:03:59.520 --> 00:04:04.080
work together. Instead of carrying propulsion systems, they'll use atmospheric

65
00:04:04.159 --> 00:04:08.319
drag to maintain their formation, carefully rotating to adjust their

66
00:04:08.319 --> 00:04:11.919
spacing so each spacecraft passes over the same region just

67
00:04:12.039 --> 00:04:15.400
minutes after the previous one. This will give scientists an

68
00:04:15.479 --> 00:04:18.800
unprecedented look at how these electrical currents evolve over time.

69
00:04:19.360 --> 00:04:22.759
The satellites will detect these currents by observing microwave emissions

70
00:04:22.759 --> 00:04:26.480
from oxygen molecules about ten miles below the electrojets. The

71
00:04:26.560 --> 00:04:30.199
currents create a magnetic fingerprint in these emissions, which Easy's

72
00:04:30.240 --> 00:04:34.000
instruments are specifically designed to measure. Each satellite will create

73
00:04:34.040 --> 00:04:38.079
detailed maps of the electrojets during every orbit, and combining

74
00:04:38.160 --> 00:04:41.600
data from all three will reveal how these current systems

75
00:04:41.680 --> 00:04:46.759
change and develop. Beyond advancing our understanding of Earth's electrical environment,

76
00:04:47.240 --> 00:04:50.000
Easy will help improve our ability to predict space weather

77
00:04:50.040 --> 00:04:53.920
events that can affect satellites and power grids. The mission

78
00:04:54.000 --> 00:04:57.959
is also engaging students and citizen scientists through the easy

79
00:04:58.000 --> 00:05:01.920
mag program, distributing magnet actometer kits across the United States

80
00:05:01.920 --> 00:05:04.279
to allow people to make their own measurements of these

81
00:05:04.439 --> 00:05:08.360
vast electrical current systems. The mission is scheduled to operate

82
00:05:08.399 --> 00:05:11.079
for eighteen months, during which time it will not only

83
00:05:11.079 --> 00:05:14.360
help us better understand our own planet's magnetic environment, but

84
00:05:14.439 --> 00:05:17.600
also provide insights that could apply to any magnetized planet

85
00:05:17.680 --> 00:05:21.879
in our Solar System and beyond. This relatively small mission

86
00:05:21.920 --> 00:05:24.720
could have big implications for our understanding of how planets

87
00:05:24.759 --> 00:05:29.639
interact with space. Next up, just when astronomers thought they

88
00:05:29.680 --> 00:05:33.360
had blazars all figured out, one peculiar cosmic object is

89
00:05:33.399 --> 00:05:37.759
completely rewriting the rule book bl Lacertae located about nine

90
00:05:37.839 --> 00:05:41.000
hundred million light years away in the constellation Lecerta, has

91
00:05:41.040 --> 00:05:44.600
been leaving scientists scratching their heads with its unprecedented behavior.

92
00:05:45.439 --> 00:05:48.879
Initially mistaken for just another variable star in our galaxy

93
00:05:49.240 --> 00:05:52.720
when it was discovered in nineteen twenty nine, BL Lacertae

94
00:05:52.720 --> 00:05:55.800
turned out to be something far more exotic, a powerful

95
00:05:55.879 --> 00:05:59.800
active galaxy shooting intense jets of matter toward Earth. These

96
00:05:59.839 --> 00:06:03.560
are objects known as blazars, typically fall into neat categories

97
00:06:03.600 --> 00:06:08.160
based on their electromagnetic emissions, but BL Lacertae seems determined

98
00:06:08.199 --> 00:06:12.639
to break every classification we throw at it. Recent observations

99
00:06:12.680 --> 00:06:15.639
between twenty twenty and twenty twenty three have shown this

100
00:06:15.800 --> 00:06:20.279
cosmic rebel rapidly switching between different blazar types, something that

101
00:06:20.279 --> 00:06:24.040
should be impossible according to our current understanding. One moment,

102
00:06:24.120 --> 00:06:27.800
it appears as what astronomers call an HBL, then suddenly

103
00:06:27.800 --> 00:06:31.439
transforms into an LBL, before settling briefly as an IBL,

104
00:06:31.879 --> 00:06:34.800
only to change again. It's like watching a cosmic chameleon

105
00:06:34.839 --> 00:06:38.000
that can't make up its mind. The X ray emissions

106
00:06:38.000 --> 00:06:41.480
from BL lassert have also reached record breaking levels during

107
00:06:41.480 --> 00:06:45.519
this period. While scientists believe they understand how blazars produce

108
00:06:45.560 --> 00:06:49.600
their characteristic double peaked emission patterns, with electrons and their

109
00:06:49.639 --> 00:06:54.240
synchrotron radiation responsible for the lower energy peak, the mechanism

110
00:06:54.279 --> 00:06:58.279
behind the rapid switching between types remains a complete mystery.

111
00:06:58.319 --> 00:07:02.560
This bizarre behavior has sparked intense debate in the astronomical community.

112
00:07:03.079 --> 00:07:05.920
Could b L Lacertae represent an entirely new class of

113
00:07:05.920 --> 00:07:09.480
blazar or is there some unknown physical process at work

114
00:07:09.519 --> 00:07:12.839
that allows it to change its emission patterns at unprecedented speeds.

115
00:07:13.360 --> 00:07:16.959
These questions are keeping theoretical astrophysicists up at night as

116
00:07:17.000 --> 00:07:20.879
they struggle to explain what they're seeing. The discovery challenges

117
00:07:20.959 --> 00:07:25.000
our fundamental understanding of how these powerful cosmic engines operate

118
00:07:25.480 --> 00:07:28.160
and reminds us that the universe still has plenty of

119
00:07:28.199 --> 00:07:32.199
surprises in store. As one of the earliest discovered blazars

120
00:07:32.199 --> 00:07:35.800
continues to defy explanation, it's clear that we still have

121
00:07:35.879 --> 00:07:40.279
much to learn about these fascinating cosmic objects. Let's get

122
00:07:40.319 --> 00:07:44.240
an update now from another spacefaring nation. China's space program

123
00:07:44.319 --> 00:07:47.560
continues to make impressive strides with their Chiangong space station,

124
00:07:48.040 --> 00:07:51.360
which has been continuously occupied since its completion in late

125
00:07:51.399 --> 00:07:55.759
twenty twenty two. The current crew aboard the station Shunho nineteen,

126
00:07:55.959 --> 00:07:58.480
is over one hundred and thirty days into their six

127
00:07:58.519 --> 00:08:01.800
month mission and has been conducted groundbreaking research in orbit.

128
00:08:02.519 --> 00:08:06.680
The three person crew, led by Commander Chai Shuje, alongside

129
00:08:06.720 --> 00:08:10.519
crew members Songling Dong and Wang Housi, has been particularly

130
00:08:10.560 --> 00:08:14.480
busy with cutting edge experiments. They've been working extensively with

131
00:08:14.560 --> 00:08:19.360
electro andcephalogram equipment to study how microgravity affects visual processing

132
00:08:19.759 --> 00:08:22.879
and exploring how brain wave music might help astronauts maintain

133
00:08:23.000 --> 00:08:28.199
better cognitive control during extended space missions. Wang Houzi, who

134
00:08:28.279 --> 00:08:31.399
made history as China's first female flight engineer in space,

135
00:08:31.839 --> 00:08:36.440
has been demonstrating the crucial exercise protocols using resistance bands

136
00:08:36.559 --> 00:08:39.360
that help combat the muscle and bone loss that naturally

137
00:08:39.399 --> 00:08:42.799
occurs in zero gravity. The crew has also been pushing

138
00:08:42.840 --> 00:08:46.360
the boundaries of human machine interaction, working with an AI

139
00:08:46.480 --> 00:08:50.600
robot called Xiaohang to develop more intuitive ways for astronauts

140
00:08:50.639 --> 00:08:55.840
to communicate with automated systems. Looking ahead, China has ambitious

141
00:08:55.840 --> 00:08:59.519
plans for Changong in twenty twenty five. The Space Agency

142
00:08:59.559 --> 00:09:03.679
CMS has announced two crude missions Shunzo twenty and twenty one,

143
00:09:04.039 --> 00:09:07.159
along with a Tianjo cargo spacecraft to keep the station

144
00:09:07.240 --> 00:09:11.679
well supplied. In an exciting development for international cooperation, China

145
00:09:11.679 --> 00:09:14.639
will also be training Pakistani astronauts for an upcoming short

146
00:09:14.720 --> 00:09:19.480
term mission to Changong. This steady progress demonstrates China's growing

147
00:09:19.519 --> 00:09:23.519
capabilities in space exploration and their commitment to maintaining a

148
00:09:23.559 --> 00:09:28.039
permanent human presence in orbit. As the Shenzo nineteen crew

149
00:09:28.120 --> 00:09:32.080
continues their scientific work, they're not just advancing our understanding

150
00:09:32.159 --> 00:09:35.200
of space. They're helping pave the way for an increasingly

151
00:09:35.240 --> 00:09:40.240
diverse and collaborative future in space exploration. The outer reaches

152
00:09:40.240 --> 00:09:42.399
of our Solar System might soon become a lot less

153
00:09:42.440 --> 00:09:45.960
mysterious thanks to an exciting collaboration between one of our

154
00:09:46.000 --> 00:09:50.559
most distant spacecraft and a powerful new telescope. The Vera

155
00:09:50.600 --> 00:09:54.480
Reuben Observatory, set to begin operations later this year, could

156
00:09:54.519 --> 00:09:57.320
help chart a new course for NASA's New Horizon spacecraft

157
00:09:57.360 --> 00:10:00.799
as it ventures through the Kuiper Belt. The New Horizons,

158
00:10:01.039 --> 00:10:04.159
which gave us those stunning images of Pluto in twenty fifteen,

159
00:10:04.759 --> 00:10:08.639
is now about sixty one astronomical units from Earth that's

160
00:10:08.679 --> 00:10:11.320
sixty one times the distance between Earth and the Sun.

161
00:10:12.120 --> 00:10:15.879
While it's still functioning perfectly, it needs new targets to study,

162
00:10:16.159 --> 00:10:19.440
and that's where the Vera Ruben Observatory comes in. A

163
00:10:19.480 --> 00:10:22.399
team of scientists led by JJ Kavilars has proposed an

164
00:10:22.480 --> 00:10:27.759
innovative survey using the observatory's powerful capabilities. Their plan involves

165
00:10:27.799 --> 00:10:31.799
dedicating about thirty hours of telescope time across six different

166
00:10:31.919 --> 00:10:35.960
nights to conduct what they're calling a deep drilling microsurvey

167
00:10:36.039 --> 00:10:40.039
of the spacecraft's trajectory through the Kuiper Belt. This survey

168
00:10:40.080 --> 00:10:44.480
could potentially identify around seven hundred Kuiper Belt objects, and

169
00:10:44.519 --> 00:10:47.240
while finding one close enough for a direct flyby might

170
00:10:47.279 --> 00:10:50.480
be a long shot, the spacecraft could still make valuable

171
00:10:50.519 --> 00:10:54.720
observations of these distant objects. The team expects to discover

172
00:10:54.840 --> 00:10:59.840
numerous binary objects and possibly even contact binaries similar to Aricoth,

173
00:11:00.399 --> 00:11:04.639
which New Horizons famously visited in twenty nineteen. The Via

174
00:11:04.720 --> 00:11:09.159
Reuben Observatory's involvement could confirm recent findings suggesting the Kuiper

175
00:11:09.159 --> 00:11:12.639
Belt is more densely populated than our current models predict.

176
00:11:13.320 --> 00:11:16.639
If the initial survey proves insufficient for finding suitable fly

177
00:11:16.720 --> 00:11:20.440
by targets. The team is already thinking ahead to potentially

178
00:11:20.519 --> 00:11:24.480
using the upcoming Roman Observatory to conduct even more detailed searches.

179
00:11:25.559 --> 00:11:29.080
This collaboration between Earth based telescopes and our deep space

180
00:11:29.159 --> 00:11:33.279
pioneers represents a fascinating new chapter in our exploration of

181
00:11:33.279 --> 00:11:37.480
the Solar System's frontier, potentially revealing new secrets about these

182
00:11:37.519 --> 00:11:40.600
mysterious outer regions that have remained hidden from view for

183
00:11:40.639 --> 00:11:45.480
so long. Well that's it for today, from the successful

184
00:11:45.519 --> 00:11:48.279
launch of Crew ten to the International Space Station, to

185
00:11:48.360 --> 00:11:52.919
the groundbreaking easy emission studying our auroras and that fascinating

186
00:11:52.960 --> 00:11:56.799
shape shifting blazar that's got astronomers scratching their heads. We've

187
00:11:56.840 --> 00:11:59.799
also checked in with China's Tangong Space station and explored

188
00:11:59.799 --> 00:12:02.679
the citing possibilities for new horizons in the Kuiper Belt.

189
00:12:03.480 --> 00:12:05.639
Thank you for joining me Anna on another episode of

190
00:12:05.679 --> 00:12:08.080
Astronomy Daily. If you want to stay up to date

191
00:12:08.120 --> 00:12:10.679
with all these stories and more, head over to Astronomy

192
00:12:10.720 --> 00:12:13.159
Daily dot io, where you can listen to all our

193
00:12:13.200 --> 00:12:16.320
episodes and catch up on the latest space and astronomy news.

194
00:12:16.840 --> 00:12:19.360
Don't forget to follow us on social media. You can

195
00:12:19.360 --> 00:12:25.120
find us as Astro Daily Pod on Facebook, x YouTube, YouTube, music, Tumblr,

196
00:12:25.240 --> 00:12:29.120
TikTok and Instagram. Until next time, Keep looking up and

197
00:12:29.159 --> 00:12:35.320
wondering about the mysteries of our universe. Start