Julia Bitterli
Biographic Data
| ID | 5599394 |
|---|---|
| NAME | Julia Bitterli |
| GIVEN NAMES | Julia |
| FAMILY NAME | Bitterli |
| SIGNATURE | BITTERLI J |
| VERIFIED | No |
| TOTAL WORKS | 1 |
| TOTAL CITATIONS | 1 |
| AUTHOR COUNT | 1 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2024 |
| LATEST PUBLICATION YEAR | 2024 |
| H-INDEX | 1 |
Origin and Age of Carbon in the Cellulose of Mid-Latitude Tree Rings
Cellulose of tree rings is often assumed to be predominantly formed by direct assimilation of CO 2 by photosynthesis and consequently can be used to reconstruct past atmospheric 14 C concentrations at annual resolution. Yet little is known about the extent and the age of stored carbon from previous years used in addition to the direct assimilation in tree rings. Here, we studied 14 C in earlywood and latewood cellulose of four different species (…
Origin and Age of Carbon in the Cellulose of Mid-Latitude Tree Rings
Cellulose of tree rings is often assumed to be predominantly formed by direct assimilation of CO 2 by photosynthesis and consequently can be used to reconstruct past atmospheric 14 C concentrations at annual resolution. Yet little is known about the extent and the age of stored carbon from previous years used in addition to the direct assimilation in tree rings. Here, we studied 14 C in earlywood and latewood cellulose of four different species (…
Origin and Age of Carbon in the Cellulose of Mid-Latitude Tree Rings
Cellulose of tree rings is often assumed to be predominantly formed by direct assimilation of CO 2 by photosynthesis and consequently can be used to reconstruct past atmospheric 14 C concentrations at annual resolution. Yet little is known about the extent and the age of stored carbon from previous years used in addition to the direct assimilation in tree rings. Here, we studied 14 C in earlywood and latewood cellulose of four different species (…
Absolute dating (1 works) · Archaeology (1 works) · Carbon fibers (1 works) · Cellulose (1 works) · Chemistry (1 works) · Combinatorics (1 works) · Composite material (1 works) · Dendrochronology (1 works) · Geodesy (1 works) · Geography (1 works)