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advances.sciencemag.org/cgi/content/full/1/11/e1500806/DC1 Supplementary Materials for Glacier maxima in Baffin Bay during the Medieval Warm Period coeval with Norse settlement Nicolás E. Young, Avriel D. Schweinsberg, Jason P. Briner, Joerg M. Schaefer Published 4 December 2015, Sci. Adv. 1, e1500806 (2015) DOI: 10.1126/sciadv.1500806 The PDF file includes: Fig. S1. Uigordleq Lake valley moraine complex and 10 Be ages. Fig. S2. Normal kernel density estimates of 10 Be ages grouped by moraine from Baffin Island. Fig. S3. Comparison of moraine ages between Naqsaq, Ayr, and Uigordleq Lake valley moraines. Fig. S4. Representative moraine boulders from Naqsaq valley. Fig. S5. Representative moraine boulders from Uigordleq Lake valley. Table S1. 10 Be sample input information. Table S2. Process blank 10 Be data. Table S3. 10 Be ages using alternative scaling schemes.

Supplementary Materials for · 12/1/2015  · Including production-rate uncertainty. 268 ± 42 years Weighted mean/uncertainty. 273 ± 12 years peak age: 287 years Reduced 502 Calendar

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Page 1: Supplementary Materials for · 12/1/2015  · Including production-rate uncertainty. 268 ± 42 years Weighted mean/uncertainty. 273 ± 12 years peak age: 287 years Reduced 502 Calendar

advances.sciencemag.org/cgi/content/full/1/11/e1500806/DC1

Supplementary Materials for

Glacier maxima in Baffin Bay during the Medieval Warm Period coeval

with Norse settlement

Nicolás E. Young, Avriel D. Schweinsberg, Jason P. Briner, Joerg M. Schaefer

Published 4 December 2015, Sci. Adv. 1, e1500806 (2015)

DOI: 10.1126/sciadv.1500806

The PDF file includes:

Fig. S1. Uigordleq Lake valley moraine complex and 10Be ages.

Fig. S2. Normal kernel density estimates of 10Be ages grouped by moraine from

Baffin Island.

Fig. S3. Comparison of moraine ages between Naqsaq, Ayr, and Uigordleq Lake

valley moraines.

Fig. S4. Representative moraine boulders from Naqsaq valley.

Fig. S5. Representative moraine boulders from Uigordleq Lake valley.

Table S1. 10Be sample input information.

Table S2. Process blank 10Be data.

Table S3. 10Be ages using alternative scaling schemes.

Page 2: Supplementary Materials for · 12/1/2015  · Including production-rate uncertainty. 268 ± 42 years Weighted mean/uncertainty. 273 ± 12 years peak age: 287 years Reduced 502 Calendar

Supplemental material for Young et al:

Page 3: Supplementary Materials for · 12/1/2015  · Including production-rate uncertainty. 268 ± 42 years Weighted mean/uncertainty. 273 ± 12 years peak age: 287 years Reduced 502 Calendar
Page 4: Supplementary Materials for · 12/1/2015  · Including production-rate uncertainty. 268 ± 42 years Weighted mean/uncertainty. 273 ± 12 years peak age: 287 years Reduced 502 Calendar
Page 5: Supplementary Materials for · 12/1/2015  · Including production-rate uncertainty. 268 ± 42 years Weighted mean/uncertainty. 273 ± 12 years peak age: 287 years Reduced 502 Calendar
Page 6: Supplementary Materials for · 12/1/2015  · Including production-rate uncertainty. 268 ± 42 years Weighted mean/uncertainty. 273 ± 12 years peak age: 287 years Reduced 502 Calendar
Page 7: Supplementary Materials for · 12/1/2015  · Including production-rate uncertainty. 268 ± 42 years Weighted mean/uncertainty. 273 ± 12 years peak age: 287 years Reduced 502 Calendar
Page 8: Supplementary Materials for · 12/1/2015  · Including production-rate uncertainty. 268 ± 42 years Weighted mean/uncertainty. 273 ± 12 years peak age: 287 years Reduced 502 Calendar
Page 9: Supplementary Materials for · 12/1/2015  · Including production-rate uncertainty. 268 ± 42 years Weighted mean/uncertainty. 273 ± 12 years peak age: 287 years Reduced 502 Calendar