KQED, a San Francisco based public media organization, is interested in broadening participation and attracting and engaging a younger and more diverse audience, especially millennials, for their science media. The KQED science team is one of the largest reporting teams in the West with a focus on science news and it’s YouTube series, Deep Look.
This is a summary of Cracking the Code: Influencing Millennial Science Engagement, a three year media research project supported by NSF. The project brought together KQED science media professionals, academic science media researchers from Texas
This is the third of three guides for media practitioners, evaluators and researchers about some of what was learned through the project Cracking the Code: Influencing Millennial Science Engagement. This guide focuses on steps for conducting media research and research protocals.
This is the second of three guides for media practitioners, evaluators and researchers about some of what was learned through the project Cracking the Code: Influencing Millennial Science Engagement. This guide focuses on ways to identify your missing audience.
This is the first of three guides for media practioners, evaluators and researchers about some of what was learned through the project Cracking the Code: Influencing Millennial Science Engagement. This guide focuses on possible practices for creating an audience research collaboration for media professionals, evaluators and communication researchers.
The series of articles below is a study of Cracking the Code, one of the largest public investments in science media, journalism and science communication research collaborations, a project between KQED, Texas Tech and Yale Universities. KQED has the largest science reporting unit in the West focusing on science news and features including their YouTube series Deep Look.This series was written by Scott Burg from Rockman et al, the project's independent evaluator. Links to the articles in this series are below. The full articles in the series are posted on Medium.
A Three Year Case Study
We started our three year National Science Foundation Cracking the Code: Influencing Millennial Science Engagement audience research in 2018 with a national survey of millennials’ media consumption habits. This survey was conducted by Jacobs Media Strategies and found, among other things, that millennials were the most science curious generation. This survey provided the groundwork for each of the studies that we have conducted over the past three years as part of our Cracking the Code: Influencing Millennial Science Engagement study.
To wrap up our project, we conducted another large
During the course of our ongoing collaboration with KQED, my fellow academic researchers and I have learned that science media professionals are especially interested in improving strategies for headline design, with the goal of increasing audience engagement. Their intuitions about the importance of headlines are supported by research findings. At least when browsing on social media platforms, media consumers often make decisions about whether to engage with stories based only off of the headline. Moreover, headlines influence the way people interpret the story and the impressions they form
KQED’s science engagement team is on the front lines of making sure our overall science content, which includes science news and our Deep Look videos, are shared and engaged with on our various social media platforms. One of the platforms we use daily to disseminate our science content is Facebook. To better understand the success of our efforts beyond the usual metrics we track, the science engagement team tested a few Deep Look grant-related research questions using Facebook as a parallel research tool to our grant’s more traditional survey related research.
More specifically, Facebook’s
For an award-winning, public media YouTube science and nature series like KQED’s Deep Look, which delights its audiences by exploring unusual, tiny animals and plants up-close in ultra-high definition, how do you quantify and assess the value of different kinds of behind-the-scenes content when your original short videos are so fantastic at engaging your target audience?
Below is a summary of the key findings of the behind-the-scenes survey. Attached is the full report.
1. The measurable benefits of appending a fully produced behind-the-scenes video to a Deep Look episode appear to
Science writers, science producers, and science engagement specialists from KQED Science Deep Look joined a team of researchers from the University of Connecticut, Missouri State University, and Texas Tech University to focus on women’s preferences and identities as related to their science engagement intentions. Findings from this most recent study of the gender disparity in Deep Look viewership suggests that one key piece of the puzzle is related to women’s preferences for images and another key piece of the puzzle is related to the identities that women report as most important to them.
The KQED science digital media team continue their research on gender disparity of their YouTube series Deep Look.
Can videos with titles that pertained to health/home and sex/mating, on average, attach a higher proportion of female viewers?
DATE:
TEAM MEMBERS:
Sue Ellen McCannSevda ErisAsheley LandrumSarah MohamadOthello RichardsKristina JanétKelsi OpatSarah MohamadGabriela Quiros
The KQED science digital video team continue their study of gender disparity in viewership for the YouTube series Deep Look.
Below is a summary of the study’s key findings and you can read the complete study attached below.
1. Science curiosity is a key motivator of viewing Deep Look videos; science comprehension is not. You don’t need a Ph.D. in chemistry, just a dash of curiosity to have a look at, and maybe even get hooked on, science videos.
2. Diverging from previous findings — and researchers’ expectations — the gender disparity previously found in Deep Look viewership was not