Showing posts with label women. Show all posts
Showing posts with label women. Show all posts

Thursday, October 5, 2023

Women Eclipse Chasers

We welcome contributions from our readers! This week’s guest post was written by Thomas Hockey, Distinguished Research Professor at the University of Northern Iowa. He lives on the path of the 1869 total eclipse of the Sun. His post is especially timely as we in the United States prepare for the annual eclipse on October 14, 2023 and the total solar eclipse on April 8, 2024.


Sometimes science and politics overlap in serendipitous ways. One just has to look for them.

The trans-continental 7 August 1869 total eclipse of the Sun was the first for which scientific observation was expected to have a spectroscopic component. It also was the inaugural in the United States at which a significant number of women participated in its study. 

The United States Nautical Almanac Expedition to the path of totality included Professor John Van Vleck (1833-1912; Wesleyan University), who was stationed in Mount Pleasant, Iowa. He was assigned spectroscopic observation, even though he was a neophyte to what eventually would be called an astrophysical technique.

The three minutes of totality simply did not allow for an inexperienced spectroscopist to observe and record what he had seen. Van Vleck needed help and found it close by--down the street from his hotel, where an attorney just starting out had hung a new shingle.

Mansfield (~1870), Credit: Wikipedia

Arabella Mansfield (1846-1911; née Belle Aurelia Babb) volunteered to take notes for Van Vleck. Doing so, she gave up time that otherwise might have been spent viewing the celestial spectacle itself, the first over Iowa in recorded history and the last in a lifetime.


But Mansfield was not new to ‘firsts’. She was the very first female lawyer licensed in the entire country.


Less than 50 kilometers away, Maria Mitchell (1818-1889; Vassar College), the pioneer professional female astronomer in the United States, observed the August 1869 total solar eclipse, too. She did so along with a group of her students and young alumni, the first scientific expedition populated exclusively by women. Here is where the coincidence appears.


The famous professor from New York and the attorney from Iowa do not seem to have met surrounding the event that was the total eclipse. However, both the National Woman Suffrage Association and the Association for the Advancement of Woman began organizing in 1869, and membership lists overlapped. Mansfield would become a member of the former’s executive committee, while the presidency of the latter would be held by Mitchell. In these roles they crossed paths. 


We are reminded that even astronomy looking up—considered esoteric by many—does not take place in a vacuum of progress below.



Thursday, September 7, 2023

Crosspost: A woman who composed the first draft of history finds herself written out of the history books

By Allison Gilbert for CNN

The Smithsonian describes itself as the “world’s largest museum, education, and research complex,” housing nearly 157 million objects, of which less than 1% are on view at its 21 museums. Yet its vast collections are unsearchable by gender. Conducting research to find examples of “women in journalism” (or women working in any endeavor) is generally fruitless. The result? It’s nearly impossible to discover women whose names we don’t yet know.
Photo: Library of Congress


Thankfully, this is changing. The Smithsonian acknowledges that the cataloging of its own materials has been a major factor in women’s stories remaining untold. “The terminology and the systems weren’t there and set up to recognize them,” according to Melanie Adams, newly appointed interim director of the Smithsonian American Women’s History Museum, and reported here for the first time. “We now have to fix those systems in order for these stories to be visible.”

Leaders at the Smithsonian American Women’s History Museum, created by an Act of Congress in December 2020, point to a massive systemic challenge, as nearly every category of “metadata” — the data about data that enables users to search files — clashes with century-old frameworks that simply wrote women out of the historical record.

This work is critical. According to a major women’s history and social studies research summit, only 24% of the historical figures taught in K-12 classrooms are women. The National Monument Audit found that 3 of the 50 people most frequently honored with public memorials and monuments are female. And just about 1 in 5 biographical entries on English-language Wikipedia focus on women.


Read more at

Thursday, August 17, 2023

Revisited: Honoring the "Mercury 13"

By Nicolle Zellner

Image: Wikipedia
In the early 1960s, 13 high-flying female pilots underwent the same tests given to NASA's newly selected Mercury 7 astronauts. The women lasted longer, withstood higher stresses, and complained less. The privte testing program was abruptly ended at the start of the third phase of testing. 

In June of this year, U.S. Representatives Chrissy Houlahan (D-PA), Young Kim (R-CA), Haley Stevens (D-MI), and Debbie Lesko (R-AZ), co-chairs of the Women in STEM Caucus, introduced the Mercury 13 Congressional Gold Medal Act, to recognize the contributions of this group of women, the First Lady Astronaut Trainees (known colloquially as the Mercury 13), to our understanding of the simulated effects of space on women and also, importantly, their example of women in STEM fields. Motivated by their pioneering efforts, in 2018, we published a post, The First Lady Astronaut Trainees: Time for a Congressional Gold Medal. 

It's wonderful to see that this topic has regained momentum, and I encourage you to find and contact your own representatives and ask them to endorse the bill.


Learn more about the bill and listen to the full article at

https://www.dailylocal.com/2023/07/18/women-in-stem-co-chairs-introduce-bill-honoring-female-astronaut-pioneers/




Thursday, March 24, 2022

Expanding Space in Astrophysics: A Wikipedia Edit-a-thon

Written by Alexandra Lau

Join APS and Physical Review D for a special event held in conjunction with the APS April Meeting 2022—Expanding Space in Astrophysics: A Wikipedia Edit-a-thon.

This virtual event will be held on Sunday, April 10, 12:00 p.m to 3:00 p.m. ET, where we will create Wikipedia pages about inspiring women and historically marginalized groups in astrophysics. Sound fun? Please RSVP by April 7, using this registration link (https://april.aps.org/events/wiki-edit-a-thon). Please note: You do not need to be a registered attendee of the April Meeting to attend.

Wikipedia is the fifth most popular website in the world, with more than 32 million views a day. Despite this, according to the Wikimedia Foundation, as of 2020 fewer than 20% of its English-language biographies are about women. The statistics for historically marginalized groups are no better.

During the virtual event, we’ll work together to create and improve Wikipedia pages that highlight the accomplishments of women and other historically marginalized groups in astrophysics.

After you register, you will receive instructions on April 8th about how to join the event that weekend. Everyone is welcome, regardless of Wikipedia editing experience. 

We ask participants to do a couple of things after you register and before the event on April 10:
2. Got suggestions for pages to create? Let us know via the RSVP form or Tweet us at #apsaprilwiki.
3. See this tutorial to learn how to edit a Wikipedia page. This is optional since you'll learn how during the event.

We hope to see you all there!

Tuesday, December 14, 2021

Meet Your CSWA: Karly Pitman

This is the seminal feature for our series highlighting the newest members of the American Astronomical Society's Committee on the Status of Women in Astronomy. For today's post, meet Dr. Karly Pitman, the executive director and senior research scientist at the Space Science Institute in Boulder, Colorado. Dr. Pitman earned her A.B. in Astronomy and Geology from Vassar College and completed her PhD at Louisiana State University. She's worked on a wide range of projects in space science from examining spectra of the martian surface to analyzing the composition interstellar dust. 

Dr. Karly Pitman is an accomplished planetary scientist and astrophysicist specializing in radiative transfer modeling and spectroscopy at the Space Science Institute.
Image Description: A person wearing a teal blazer and glasses sitting at a desk behind a laptop, smiling at the camera.

Describe the first time you made a personal connection with the planets and stars.
I’ve always liked looking at the night sky and playing with rocks and minerals. Because my parents were in college and my father worked nights for most of my childhood, we engaged in cheap forms of late-night entertainment, such as low-tech stargazing. As a kid, I could never sleep before midnight (still can’t), so I’d just stay up at night thinking or staring out my window, and this evolved into thinking too hard about what I was staring at.

How did you end up working in the field?
My parents say that I announced my intent to become a scientist to them in kindergarten, but I had seriously been considering it for a couple of years beforehand and settled on astronomy and geology when I was eight years old. My first exposure to physics proper was when I shadowed a physics professor in junior high school during career day. I had heard of and read about planetary science but didn’t get direct exposure to that until college and graduate school.

I went to a liberal arts 4-year college that had a strong science program where I could turbo load on the subjects above and carry a double major and went directly into a Ph.D. physics and astronomy program at a larger university from there. I did two postdocs: a regular postdoctoral research associateship at a university and a NASA Postdoctoral Program fellowship at JPL. Then the Great Recession hit and jobs were scarce for people my age. Many of us became independent contractors, consultants, and soft money researchers during that period, and I’ve worked in that sector for a little over a decade.

Who inspired you?
A great many people have helped me along the way (ref: https://solarsystem.nasa.gov/people/2041/karly-pitman/). I’m currently inspired by the people in our field who make it a priority to help others in addition to doing good scientific work.

What is an Executive Director/Senior Research Scientist?
It is a combo CEO and principal investigator position. As executive director, I am the head of my institution and my duties include leading, developing, and implementing strategic, organizational, programmatic, and financial plans. I have oversight of both the programmatic research and education branches as well as the operations and finance teams (business, IT, human resources, legal) and overarching management of approximately 100 people. As a Senior Research Scientist, I submit proposals, lead my own projects, write papers, etc., the same as any researcher.

What community issues are important to you and why?
The topics most important to me involve professional development, demographics, and workforce planning. We are currently in a period of massive change as our community is issuing new strategy and policy documents related to workforce. Neither the “wish list” recommendations from affinity groups nor the requirements coming down from on high have sufficient dollar amounts or budgets attached to them, and we need that to practically realize the workforce goals outlined for our profession.

Tell us about a favorite moment so far in your career.
The first time I won a grant made me very happy. Because your peers vote on whether you win or lose, it’s a major honor and acknowledgment that your work is important to the community. Since science funding is limited, the odds are very small that you’ll win, so it’s also a relief to know that you’ll be gainfully employed.

What advice would you give to someone who wants to take the same career path as you?
I always issue the caveat that advice is an opinion born of someone’s own experiences and hopes or fears for you. Take what advice is useful to you and leave the rest.

There was a Fortune article (https://fortune.com/2021/11/17/women-ceos-girls-stem-education-shelly-hod-moyal-iangels/) explaining the difference between traditional STEM and another kind of STEM (Sales, Theater, Entrepreneurship, and Management). Whether you’re working as a scientist or in an executive management role, you have to master the latter set of skills too.

What do you do for fun?
My hobbies include sewing, photography, dessert production and consumption, singing, reading literature, and studying dead languages. I have aspirational interest in ballet, fencing, and armored combat. Practically speaking, I watch a lot of T.V. and movies.

What are your goals as a part of the CSWA?
I joined the CSWA to work on its strategic plan initiatives related to professional development, including working on developing a compensation database and improving equitable opportunities for employment and promotion. This is something I’m already doing as part of my job and something that will be very important for the community to have. I would also like to work toward implementing more accessibility and safety measures for women traveling to and attending conferences.

If you weren’t in the field of astronomy, what would you be doing?
I would be curled in the fetal position. In an alternate universe, I would be pursuing a career in something equally as creative and unstable.

What changes would you like to see for women in astronomy?
An exercise that’s done at women in planetary science meetings is asking women who have done XYZ to stand up, where XYZ = leading a mission, winning a grant, leading a team, etc. I would like to see more women in the room standing.

Thursday, August 26, 2021

The experiences of women in graduate physics and astronomy programs - an interview with Ramón Barthelemy and Melinda McCormick

Written By: Jeremy Bailin

Left: Dr. Melinda McCormick, assistant professor at Western Michigan University's School of Social Work; right: Dr. Ramón Barthelemy, assistant professor at the University of Utah's Physics and Astronomy Department


Ramón Barthelemy (RB) and Melinda McCormick (MM) have been doing research on the experiences of women in graduate programs in physics and astronomy for the past decade. Dr. Barthelemy is an Assistant Professor at the University of Utah Department of Physics and Astronomy, and Dr. McCormick is an Assistant Professor at Western Michigan University in the School of Social Work. Jeremy Bailin (JB) sat down over Zoom with them to talk about their work.


JB:

I'm wondering if you can talk about the research that you've been doing on women in graduate astronomy programs.

 

RB:

So Melinda and I have been working together now for almost a decade on this project. The original study was a series of exploratory interviews with 21 women in their graduate physics and astronomy programs. They all had passed their qualifying exams, so all of them were near the dissertation phase and all of them were going to R1 institutions that had strong programs in both physics and astronomy. So we tried to control as much as we could to make a cohort that was fairly similar to each other. The interviews were all done in person on location. We used an open ended protocol structure, so there were five questions. The interviews were conversational in style, so it was more just like discussing their experiences, and I would use follow up questions as necessary. Once we had all of those wonderful interviews, we transcribed them and then Melinda and I met weekly to analyze them line by line to look at the results about their educational trajectories, experiences as undergrads, experiences in graduate school, experiences with mentorship, as well as probably what has been most interesting and something we've discussed the most, which is their gendered experiences with a focus on micro aggressions and sexual harassment.

 

MM:

The results for me were the really exciting part. As a qualitative researcher, I love getting into reading what people are talking about in terms of their experiences. My background is I have a Ph.D. in sociology and I'm a social work professor. So I bring a very different viewpoint to Ramón's work. But one of the first things that I got excited about was figuring out -- Ramón, you remember that paper where we talked about capital? So we figured out that a lot of these women who had gotten this far, it was because they had all of this social capital going into the programs. And I just felt like that was a really important thing to talk about because, you know, we want to think that that myth of American meritocracy really matters. And what was coming through again and again was how well positioned most of these women were to be in graduate studies.

 

RB:

I think one of the interesting things about our collaboration is that I'm a Ph.D. in physics education research. Dr. McCormick has a Ph.D. in sociology and does awesome work on LGBT youth outside of our collaboration. But bringing together our two viewpoints has been really powerful. And it's actually pushed me a lot as a researcher because in the sciences, we oftentimes think that there is an absolute truth, right? But from the social work and the sociology perspective, Melinda's really pushed me to think about how truth is more squishy than what we'd like to think it is, and that the narratives and things that we say, you know, like the meritocracy, the idea that anybody can do physics and astronomy if they want to isn't necessarily true. As Melinda and I wrote about, we looked at social capital, but we also looked at educational capital and monetary capital.

 

MM:

Ramón and I were both doing this when we were grad students ourselves. And I can remember reading some of these women talking about how many schools that they were applying to. And Ramón and I are both going "I couldn't even have afforded to apply to that many schools." So that's when some of the capital stuff became much more evident. And then even figuring out who they are exposed to in their lives, people who are already in academics who could then help them navigate this trajectory. Whereas Ramón and I were both first generation college students. So that part really stuck out for us as well.

 

JB:

To what degree was having the capital especially important, given that they were also women?

 

RB:

My initial reaction to that is even though they had all these forms of capital, they still had to go through the gendered experiences. When we look at this, we have to be able to understand both privilege and discrimination all wrapped up into one. Because as individuals, we can have a lot of privilege that gets us to where we are. But then we can still experience discrimination, right? We can hold these two concepts and ideas at the same time. So I think what's interesting is even though these women were incredibly accomplished, had went to the best schools, had been trained by family, friends that were astronomers or their parents were scientists, even though all of these factors had played in their favor, they still experienced micro aggressions, gender discrimination and other problems with mentorship in communities in graduate education. I would argue that, and this is just pure conjecture, but I would guess that if they had not had any of that capital, those forces probably would have pushed them out. And the fact that we interviewed very few people that really came from the same first generation working class that Dr. McCormick and I come from was a little bit telling. One of my concerns at the end of the project was how do we give voice to the people who weren't represented in this sample and the people who aren't included.

 

MM:

Because giving voice to those folks, I mean, that's a lot of the work that Ramón and I both do, is we want to give voice to folks who are in underrepresented and marginalized communities. That's the underpinning, I think, of a lot of our work. And then finding that who we ended up talking to were not in that group.

 

But nonetheless their experiences were very telling, especially in terms of the field. Because recently I was invited to speak at the AAPT (American Association of Physics Teachers). They invited me to come talk about how to talk about sexual harassment. And that came directly out of my work with Ramón. I just think it's fascinating. Like, here's this sociologist, social worker, coming in to try to help people understand what it is, what it looks like, and then how do we address it in reality?

 

I feel like our most important paper was really the one on the micro aggressions and the sexual harassment. It's a hard thing to talk about because if people aren't aware of micro aggressions, it's really easy for them to be dismissive of them. But I think it was really important for us to do that article so that people could make the connections between what the definition of a microaggression is and then see how it impacts women based on their gender over and over within their educational programs in physics and astronomy. And we had a couple of women who talked about more extreme experiences of actual sexual harassment that were pretty horrifying to hear about, and the fact that this has been able to go on for so long in this field, it's problematic. So I'm glad that we're able to bring something --- hopefully more people than you are reading what we're doing!

 

JB:

Were there any people who had other intersecting identities that affected their experience?

 

RB:

Oh, yeah, absolutely. But the sample was overwhelmingly white and was overwhelmingly upper class. But of the 21 participants, there were one or two that came from the working class. There were a few that were people of color, not necessarily underrepresented in physics, but they were people of color. And then we also had women in the sample who were also parents. We had people that were in the process of having children. And we did see that these things impacted their lives.

 

I think one of the more powerful things is the follow up interviews that I'm now conducting, because one of these women that we're talking to again, 10 years later, she actually came out as bisexual and queer in the process of the ten years since I had spoken to her. And one of the startling things is when she came out as queer, it dramatically impacted her career in physics and astronomy. And not in a positive way, unfortunately. It had a very negative impact on the relationships that she was in personally, which impacted her career, but then also impacted how she was being treated at the place that she was working. And I think that's one of those things is identity isn't stable, so as we talk to these folks 10 years later, we see that their identities change, and in this changing of identities, you see the impacts. And what was really interesting is I've only interviewed six of the original 21 so far, but two of those six talked about their whiteness. They talked about how they have been doing alright. They've had gendered problems, but they felt like their whiteness has been something that has strongly supported them in their careers, because as they've gotten on in their careers and they've worked with more women of color, they see that there's these additional barriers. So I think one thing that's really lacking when we talk about gender and sexuality and marginalization and ability and working class is oftentimes we don't talk about how our own privileges impact those experiences. And in particular, when we talk about women in physics and astronomy, we rarely talk about whiteness. But it is the whiteness oftentimes that can allow people to pass and navigate because at least they have that in common with the oppressors.

 

I think what's surprising too is looking at their visions of success. What were their definitions of success and what did they view as their greatest accomplishment? And I'm asking the same question ten years later so we can look at the change between what they saw as the greatest accomplishments and success in graduate school and what they see now as professionals. And one of the concerning findings was that how people were talking about their experience in graduate school was the same in 2012 as in some of the early papers in 1994, because they talked in terms of surviving. That exact term, "surviving". Even when they talked about publishing a paper, getting a degree, they talked about it in terms of "I just got through this." And that same storyline is also playing out a little bit in the new interviews that I'm doing now six years later.

 

And looking at gender for some of the people, it has really reified itself. It's become more concrete in their experiences. For one participant, looking back, she talked about things in a gendered lens in a way that she didn't necessarily see at the time. And I think that's been the most interesting thing is how people's perspective has changed and how, when that perspective changes, they look back at their experiences a little bit differently. And even for the one person I talked to that didn't really have too many gendered experiences, she still discussed it and said flat out, "I got lucky." And it was the fact that she's at this particular institution with a particularly small department where people think about these things constantly. But she would discuss the challenges she knew that her peers had. So even in the rare cases where we have people that didn't report that they had gendered experiences, the ones that I've talked to so far 10 years later are talking about it in terms of "I'm lucky that I'm not having them."

 

JB:

You have kind of a survivor bias in that the people that you were interviewing were already people who had successfully gotten into a graduate program. Do you have any feeling for what might be missing from those who never got that far?

 

RB:

Yes, my answer to that is yes. So only something like 30 percent of undergraduates actually go into graduate school and then physics graduate programs are notoriously difficult. So then you have a further amount of people that leak out at that point. I don't like that word "leak out". But you have a number of people that are forced out at that point. So the sample in the study, it's just like any scientific study, you have to limit it to the sample that you have. And in our sample there is survivorship bias because there's no possible way not to. So we wanted to look at it and say, OK, these people made it through the program. They're highly successful, incredibly competent. They have the skills to be good physicists and astronomers, but yet they still experience these things. So our study really in a lot of ways is a best case scenario.

 

JB:

I know that you've noted that the numbers in physics are much worse than the numbers in astronomy as far gender balance. And of course, a lot of astronomy happens in physics departments. Do you know whether the experiences of women who are graduate students in astronomy, in physics departments or physics and astronomy departments is different from those in pure astronomy departments?

 

RB:

It's important to remember that astronomy is a large factor smaller than physics. So there's also a numbers game that's going on with that. But I think one of the most startling things in this study is originally I did want it to be comparative between physics and astronomy. But then when we read all the physics and astronomy papers, and a series of our papers were specifically just on women in astronomy, but like the sexual harassment paper, it was the same across the groups. And the microaggressions, there wasn't any difference.

 

The only difference that I could really come up with, and this is anecdotal, it's not a trend, is when people experienced the most egregious, as Melinda said, horrifying examples, the only one that found any restitution was a person who was in astronomy. And it was because a woman found out what happened. It was originally brushed off. And oftentimes they would report these things, and it was brushed off by men. To the point we had one participant who had this man who was effectively stalking her, and whenever she came to the building, he would get violent and he would start punching walls. And the department chair didn't care. He didn't think that it was a big deal. So she ended up having to take action to protect herself. We saw this over and over again where the individual students had to take actions to protect themselves. And the only case where we had an egregious example where the individual didn't have to protect themselves was in astronomy. But that being said, you know, I can't say that that's a trend, because when I talk to these women 10 years later, one of the women that's in astronomy had different but similarly egregious experiences in their new workplace. So my conclusion from this study, if we were to extrapolate, which again could be problematic because of the small sample size, is that there isn't a difference.

 

MM:

You know what I do recall being different, reading the two? I loved the descriptions of some of the women about why they went into astronomy. They were just so beautiful. It was really, I don't know, there's just this real depth of feeling and pull towards that field that really stood out to me.

 

RB:

Yeah, I agree with that. That's one of those really positive things.

 

JB:

Do you think there's any practical takeaways that either departments or individual graduate students, either women or other genders, can take away that can help improve the situation?

 

RB:

Yeah, I can speak to that a little bit. In my other life as a physics education researcher, I do graduate program reform. That's generic graduate program reform, not specific to identities, but I think that it's salient here. With the Loom Model, what we found, and that was based on Dr. Barbara Whitten's work from Colorado College, she talked about how you have to have the infrastructure built around students in order to support them, and then you have to actively be engaging with the students and engaging with that culture. Policies are necessary, but not sufficient to improve people's experiences. You also really have to pay close attention to the individual cultures.

 

So one of the big findings in our graduate program reform is that even though our graduate program changed all of the policies to support students, the individual culture in research groups doesn't change. And until you change the culture in those individual research groups, you're not going to be able to reach every student. But you have to have policies in place that protect students. One of the challenges that our students face is that there's this very hierarchical, linear relationship in physics where your dissertation advisor controls everything. So one policy that we have here at the University of Utah is that every year when you meet with your dissertation committee, there's a moment in the meeting where the dissertation chair actually leaves and then the student can talk one on one with the other committee members, and then we do it vice versa where the committee member comes in and the student leaves so that way they can talk.

 

So you have to have these policies in place that destabilize power structures, diffuse power structures. This all goes back to queer theory and Foucault, which is this idea that you have to disaggregate power. Those are the important things. You have to have policies and structures in place that are failsafes for students. You have to constantly check in with students to know where they're at in their career trajectories and then provide off ramps. Or not off ramps, but provide pathways. In one of our papers we used a roundabout as an example, because we shouldn't think about higher education as a strict linear pathway. You should think about it as having many different pathways and that students enter and then choose and that all of them are equally valuable, but that they're just different pathways. So putting those policies in place is necessary, but not sufficient. You need to constantly check in with students and then when you hire faculty, you need to hire faculty that actually care about these issues. It's a buyer's market when it comes to hiring faculty. And I would argue it's better to hire the faculty member who clearly is empathetic, understanding and a great mentor that has no grants than to hire the faculty member that has three million dollars in grants because you can teach someone how to get grants. You can professional development that. Teaching someone how to be empathetic, understanding and supportive and culturally aware is a much harder challenge.

 

JB:

Are there any other results of the research that you think would be important to disseminate?

 

RB:

I think I think one of the challenges is this, and I already mentioned this earlier, but when we had the most egregious examples of harassment and even some more egregious micro aggressions, oftentimes people were met with silence. Department chairs, oftentimes straight white men, effectively didn't care. I would argue that they didn't do their job. And a lot of these people were also legally liable. I mean, you can look at this in 10 different ways. We look at it from the well-being-of-the-student perspective. But you also can look at it from a legal perspective, and a lot of these departments could have been sued under the ground for what they did. But what we found is that, like Melinda said, people had a passion for physics and astronomy. They wanted to keep doing it. So they had to find workarounds to survive. But that's not students' responsibility. Students shouldn't have to find workarounds. It's our responsibility. It's students' responsibility to learn physics and astronomy and be passionate. It's our responsibility to make sure that they're safe, protected and in a positive and welcoming and affirming environment.

 

MM:

And when they're met with silence and invalidation of their experiences, that is so harmful. So, of course, that's going to make it harder for women or folks who are being treated badly to be able to step forward. It's partly getting people to just recognize that this happens and it has a negative impact on our students, and if we want students to be there and if we want to help them grow and learn and do the cool things that they have the ability to do in the world, then we have to be looking after them. And I think we can use some of the stuff from Title IX, which is what I talked about in my [AAPT] talk. That's our basis to draw from. You shouldn't be discriminated against based on your sex or your gender presentation. And I think we don't always realize that that gender representation stuff is also included in Title IX because we don't talk about it.

 

But just that safety piece. Even with microaggressions, we don't always have to do a ton. But we have to, you know, put up posters with women in them, have books that include women's work. That's part of creating that culture. And also just saying, "yes, I hear you that that happened and it's not OK." Because a lot of times when people are mistreated in that way, it's not that they're looking for something huge from us all the time. I think I look for something huge from us as human beings because I want us to be better. But sometimes we just want acknowledgment of what's happened, somebody to say, "yeah, that happened, and it sucked, and I'm really sorry." That can go a really long way.

 

Thursday, August 5, 2021

Crosspost: I Changed Astronomy Forever. He Won the Nobel Prize for It. | 'Almost Famous' by NYT Op-Docs

For this week, be sure to check out this incredible documentary, "The Silent Pulse of the Universe," created by Ben Proudfoot for the New York Times on Dr. Jocelyn Bell Burnell. We've highlighted Dr. Bell before in an earlier crosspost, but she absolutely deserves another (several hundred).


Growing up in a Quaker household, Jocelyn Bell Burnell was raised to believe that she had as much right to an education as anyone else. But as a girl in the 1940s in Northern Ireland, her enthusiasm for the sciences was met with hostility from teachers and male students. Undeterred, she went on to study radio astronomy at Glasgow University, where she was the only woman in many of her classes. In 1967, Burnell made a discovery that altered our perception of the universe. As a Ph.D. student at Cambridge University assisting the astronomer Anthony Hewish, she discovered pulsars — compact, spinning celestial objects that give off beams of radiation, like cosmic lighthouses. (A visualization of some early pulsar data is immortalized as the album art for Joy Division’s “Unknown Pleasures.”) But as Ben Proudfoot's "The Silent Pulse of the Universe" shows, the world wasn’t yet ready to accept that a breakthrough in astrophysics could have come from a young woman.

Friday, August 7, 2020

AASWomen Newsletter for August 7, 2020

AAS Committee on the Status of Women
Issue of August 7, 2020
eds: Heather Flewelling, Nicolle Zellner, Maria Patterson, Jeremy Bailey, and Alessandra Aloisi

[We hope you all are taking care of yourselves and each other. --eds.]

This week's issues:

1. Women in Space Seminar Series Episode 3: Lack of Representation and Systemic Racism in Academia  
2. 51 Pegasi b Fellowship 
3. NASA ExoPAG, SAG22: A Target Star Archive for Exoplanet Science
4. Ben Barres Fellowship
5. ‘It’s like we’re going back 30 years’: how the coronavirus is gutting diversity in science  
6. The pandemic is hitting scientist parents hard, and some solutions may backfire 
7.  Language may undermine women in science and tech
8. The 'female' brain: why damaging myths about women and science keep coming back in new forms
9. Job Opportunities
10. How to Submit to the AASWomen Newsletter
11. How to Subscribe or Unsubscribe to the AASWomen Newsletter
12. Access to Past Issues of the AASWomen Newsletter

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Thursday, February 7, 2019

Cross-post: The Woman Who Sees Space First

A recent Medium article by Shannon Stirone profiles Candice Hansen-Koharcheck. Candice has been been working with ground-breaking images from a series of iconic spacecraft for over 40 years. “To me, these places have gone from being points of light in the sky to being real places,” Hansen-Koharcheck says.

Read more at: