Home
Categories
EXPLORE
True Crime
Comedy
Society & Culture
Business
Sports
TV & Film
Technology
About Us
Contact Us
Copyright
© 2024 PodJoint
00:00 / 00:00
Sign in

or

Don't have an account?
Sign up
Forgot password
https://is1-ssl.mzstatic.com/image/thumb/Podcasts115/v4/af/fe/ed/affeed73-c617-bf53-e963-27cb934033c0/mza_10010807133494778115.png/600x600bb.jpg
Fire Ecology Chats
Association for Fire Ecology
74 episodes
2 days ago
In this episode of Fire Ecology Chats, Fire Ecology editor Bob Keane speaks with George Jensen, Benjamin Knapp, and Jeffery Cannon about how understanding structural complexity enhances understanding of the ecology and restoration of fire-maintained ecosystems.
Show more...
Science
RSS
All content for Fire Ecology Chats is the property of Association for Fire Ecology and is served directly from their servers with no modification, redirects, or rehosting. The podcast is not affiliated with or endorsed by Podjoint in any way.
In this episode of Fire Ecology Chats, Fire Ecology editor Bob Keane speaks with George Jensen, Benjamin Knapp, and Jeffery Cannon about how understanding structural complexity enhances understanding of the ecology and restoration of fire-maintained ecosystems.
Show more...
Science
https://images.squarespace-cdn.com/content/v1/5ea4a2778a22135afc733499/1594142707518-FDGQVFWT10EZVH20B5AV/Podcast+Cover.png?format=1500w
Episode 65: Topographic conditions dominate tree species recovery over 15 years post-fire in a temperate Pinus sylvestris forest
Fire Ecology Chats
6 minutes 5 seconds
3 months ago
Episode 65: Topographic conditions dominate tree species recovery over 15 years post-fire in a temperate Pinus sylvestris forest
In this episode of Fire Ecology Chats, Fire Ecology editor Bob Keane speaks with Jan Holik about detecting our expectations about how trees regenerate after different kinds of disturbances.
Fire Ecology Chats
In this episode of Fire Ecology Chats, Fire Ecology editor Bob Keane speaks with George Jensen, Benjamin Knapp, and Jeffery Cannon about how understanding structural complexity enhances understanding of the ecology and restoration of fire-maintained ecosystems.