Sudanese Female Activist Wins Martin Institute Prize for Human Rights Defenders

Tahani Abbas holds the Martin Institute Prize (Martin Institute)
Tahani Abbas holds the Martin Institute Prize (Martin Institute)
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Sudanese Female Activist Wins Martin Institute Prize for Human Rights Defenders

Tahani Abbas holds the Martin Institute Prize (Martin Institute)
Tahani Abbas holds the Martin Institute Prize (Martin Institute)

Tahani Abbas, a Sudanese human rights activist, was awarded the Martin Institute Prize in Switzerland. This is the fifth edition of the prize awarded to human rights defenders and was awarded to her in appreciation of her work on human rights and women's issues in Sudan.

The Martine Institute Prize is named after a French-Swiss woman who dedicated her life to defending human rights. After her death, her family and the Swiss authorities dedicated a prize in her name, to be given on the 6th of March every year as part of the Human Rights Film Festival, to honor human rights activists and to remind nations of the importance of their rights.

Ms. Abbas told Asharq Al-Awsat that she was proud to receive the prize and because it embodies the distant world’s perception of the Sudanese people’s struggle and shows that the world is watching out for human rights. She went on to say that “personally, the award credits me with a strong role with regards to defending human rights and makes me feel that our efforts and positions in the defense of human rights are appreciated and did not go in vain."

In her acceptance speech, Abbas stressed that all Sudanese women qualify to stand in her place and receive the prize, adding that “I am only a miniature and symbolic example that personifies that struggle of all the women of Sudan. I am an extension of Sudan’s feminist struggle, which is deeply ingrained in its history since before the era of the Kandakes or Nubian Queens, passing through Mendi, daughter of the Sultan Ajabna, and reaching the icon of the Sudanese revolution, Alaa Salah."

Despite the admiration of observers and the organizers of the prize for the role of Sudanese women in the revolution, Abbas demonstrated her anger at what she calls “women's weak political participation of after the revolution”. However, she says “Despite being denied political participation after the success of the revolution, our struggle will not stop.”

Abbas says she is from rural Sudan, a member of the nation and of the feminist movement in particular and an activist defending human rights, saying, “I was nominated for the International Federation for Human Rights Award, it received the award for which 26 people and 16 organizations around the world had been nominated.

Abbas has been an active human rights defender since 2009 and is a member of many Sudanese feminist and human rights groups. She is a member of the executive committee of the Regional Alliance of Women Human Rights Defenders of North Africa and the Middle East, a member of the executive committee of the No to the Oppression of Sudanese Women Initiative, the My Fair Home campaign which is concerned with domestic workers, the I am Sudanese, which is concerned with nationality and a member of the Sudanese Alliance to End Child Marriage.

In her assessment of the human rights situation in Sudan after the revolution, she says that it has improved a lot as per international standards.

She said: ”The reports of international human rights organizations demonstrate this, and, locally, we feel that, as human rights defenders, we have achieved some victories."



Fast-forming Alien Planet has Astronomers Intrigued

An artist's depiction of a planet and its host star with a misaligned disk of material, and a binary companion in the background, is shown in this undated handout image. NASA/JPL-Caltech/R. Hurt, K. Miller (Caltech/IPAC)/Handout via REUTERS
An artist's depiction of a planet and its host star with a misaligned disk of material, and a binary companion in the background, is shown in this undated handout image. NASA/JPL-Caltech/R. Hurt, K. Miller (Caltech/IPAC)/Handout via REUTERS
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Fast-forming Alien Planet has Astronomers Intrigued

An artist's depiction of a planet and its host star with a misaligned disk of material, and a binary companion in the background, is shown in this undated handout image. NASA/JPL-Caltech/R. Hurt, K. Miller (Caltech/IPAC)/Handout via REUTERS
An artist's depiction of a planet and its host star with a misaligned disk of material, and a binary companion in the background, is shown in this undated handout image. NASA/JPL-Caltech/R. Hurt, K. Miller (Caltech/IPAC)/Handout via REUTERS

Astronomers have spotted orbiting around a young star a newborn planet that took only 3 million years to form - quite swift in cosmic terms - in a discovery that challenges the current understanding of the speed of planetary formation.
This infant world, estimated at around 10 to 20 times the mass of Earth, is one of the youngest planets beyond our solar system - called exoplanets - ever discovered. It resides alongside the remnants of the disk of dense gas and dust circling the host star - called a protoplanetary disk - that provided the ingredients for the planet to form.
The star it orbits is expected to become a stellar type called an orange dwarf, less hot and less massive than our sun. The star's mass is about 70% that of the sun and it is about half as luminous. It is located in our Milky Way galaxy about 520 light-years from Earth, Reuters reported. A light-year is the distance light travels in a year, 5.9 trillion miles (9.5 trillion km).
"This discovery confirms that planets can be in a cohesive form within 3 million years, which was previously unclear as Earth took 10 to 20 million years to form," said Madyson Barber, a graduate student in the department of physics and astronomy at the University of North Carolina at Chapel Hill and lead author of the study published this week in the journal Nature.
"We don't really know how long it takes for planets to form," UNC astrophysicist and study co-author Andrew Mann added. "We know that giant planets must form faster than their disk dissipates because they need a lot of gas from the disk. But disks take 5 to 10 million years to dissipate. So do planets form in 1 million years? 5? 10?"
The planet, given the names IRAS 04125+2902 b and TIDYE-1b, orbits its star every 8.8 days at a distance about one-fifth that separating our solar system's innermost planet Mercury from the sun. Its mass is in between that of Earth, the largest of our solar system's rocky planets, and Neptune, the smallest of the gas planets. It is less dense than Earth and has a diameter about 11 times greater. Its chemical composition is not known.
The researchers suspect that the planet formed further away from its star and then migrated inward.
"Forming large planets close to the star is difficult because the protoplanetary disk dissipates away from closest to the star the fastest, meaning there's not enough material to form a large planet that close that quickly," Barber said.
The researchers detected it using what is called the "transit" method, observing a dip in the host star's brightness when the planet passes in front of it, from the perspective of a viewer on Earth. It was found by NASA's Transiting Exoplanet Survey Satellite, or TESS, space telescope.
"This is the youngest-known transiting planet. It is on par with the youngest planets known," Barber said.
Exoplanets not detected using this method sometimes are directly imaged using telescopes. But these typically are massive ones, around 10 times greater than our solar system's largest planet Jupiter.
Stars and planets form from clouds of interstellar gas and dust.
"To form a star-planet system, the cloud of gas and dust will collapse and spin into a flat environment, with the star at the center and the disk surrounding it. Planets will form in that disk. The disk will then dissipate starting from the inner region near the star," Barber said.
"It was previously thought that we wouldn't be able to find a transiting planet this young because the disk would be in the way. But for some reason that we aren't sure of, the outer disk is warped, leaving a perfect window to the star and allowing us to detect the transit," Barber added.