In the early twentieth century, astronomer A.E. Douglass sought to determine whether solar flare activity influenced terrestrial weather by examining annual growth rings in ponderosa pines across the American Southwest. Douglass reasoned that variations in solar radiation would dictate precipitation patterns, which would, in turn, manifest as proportional fluctuations in ring width. Although his search for a direct, predictable link between sunspot cycles and regional rainfall proved largely inconclusive due to local microclimatic noise, Douglass noticed that synchronized patterns of wide and narrow rings recurred across timber samples collected from geographically separated forests. Recognizing that these matching sequence patterns—or cross-dates—formed a continuous chronology, he realized the technique could date wooden beams recovered from ancient Puebloan ruins. Consequently, a method originally conceived to solve a problem in astrophysics ultimately established the foundational chronology for Southwestern archaeology.
Based on the passage, which of the following can be inferred regarding Douglass's investigation of tree rings? Select all that apply.
- Douglass's research yielded significant utility for a field of study outside of astronomy.Answer
- BRegional precipitation patterns were shown to be entirely independent of solar radiation cycles.
- Matching sequences of growth ring widths could be identified in timber samples from distinct geographical locations.Answer