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9 results for “Kathmandu valley”
Kathmandu Valley Single Hazards and Multi-Hazard Interrelationships Database
<p>This <em>Kathmandu Valley Single Hazards and Multi-Hazard Interrelationships Database</em> uses a systematic review of blended evidence types (academic literature, grey literature, media, databases, and social media) to compile single hazard and multi-hazard interrelationship exemplars of natural hazards in the context of Kathmandu Valley.</p> <p>We identify 58 sources of evidence for single hazard types and 21 sources of evidence for multi-hazard interrelationships. These sources evidence 21 single hazard types across six hazard groups, and 83 multi-hazard interrelationships that could influence Kathmandu Valley. Of these multi-hazard interrelationships, 12 have direct case study evidence of previous influence in Kathmandu Valley.</p> <p>This Excel database accompanies the paper Thompson et al. (2024).</p> <p>The <em>Kathmandu Valley Single Hazards and Multi-Hazard Interrelationships Database </em>comprises the following sheets: <br>A. Single Hazards Evidence <br>B. Hazard Interrelationships Evidence <br>C. Hazard Interrelationships Matrix <br>D. Matrix Evidence <br>E. Definitions (Source Types) <br>F. Definitions (Hazards) <br>G. Definitions (Interrelationships) <br>H. References </p> <p>In Sheet A, each row in the database describes a separate source of evidence of a single hazard influencing Kathmandu Valley. In each column, we describe the evidence using the qualifiers outlined below:</p> <ul> <li>Hazard type</li> <li>Source information and link</li> <li>Source content</li> <li>Hazard interrelationships and anthropogenic processes</li> <li>Video evidence</li> <li>Source reflections</li> <li>Major event typical frequency reflection</li> <li>Any other reflection on a single hazard</li> <li>Impact</li> </ul> <p>In Sheet B, each row in the database describes a separate source of evidence of a multi-hazard interrelationship influencing Kathmandu Valley. In each column, we describe the evidence using the qualifiers outlined below:</p> <ul> <li>Hazard type</li> <li>Source information and link</li> <li>Source content</li> <li>Hazard sequence</li> <li>Source reflections</li> <li>Impact</li> <li>Input from practitioner stakeholders</li> <li>Input from practitioner stakeholders - prioritisation</li> </ul> <p>We refer the reader to Thompson et al. (2024) for details of the methodology used to populate this database.</p> <p><strong>References</strong></p> <p>Thompson, H. E., Gill, J. C., Šakić Trogrlić, R., Taylor, F. E., and Malamud, B. D.: A methodology to compile multi-hazard interrelationships in a data-scarce setting: an application to Kathmandu Valley, Nepal, Nat. Hazards Earth Syst. Sci. Discuss. [preprint], https://doi.org/10.5194/nhess-2024-101, in review, 2024.</p>
Fig. 6 in Gastro-intestinal parasites of urban rhesus macaques (Macaca mulatta) in the Kathmandu Valley, Nepal
Fig. 6. The prevalence of parasites is examined in relation to a) location and b) season. Multicolor triangles and circles in the plots represent individual data points (triangles) and centroid of each specific grouping factor (circle).
Fig. 3 in Gastro-intestinal parasites of urban rhesus macaques (Macaca mulatta) in the Kathmandu Valley, Nepal
Fig. 3. Photomicrographs of various GI parasites of the rhesus macaques at 400×: Trophozoite of E. histolytica (A), Cyst of E. histolytica (B), Cyst of E. coli (C), Cyst of Iodomoeba butschlii (D), Cyst of Giardia spp. (E), Trophozoite of Balantioides coli (F), Cyst of Balantioides coli (G), Egg of Trichuris spp. (H), Egg of Strongyloides spp. (I), Larva of Strongyloides spp. (J), Egg of Hookworm (K), Egg of Trichostrongylus spp. (L), Egg of Ascarid spp. (M), Egg of Physaloptera spp. (N), Egg of Toxocara spp.(O), Egg of Toxocara spp. (P), Egg of Strongyle spp. (Q), Egg of Strongyle spp.(R), Oocyst of Cryptosporidium spp. (S), Unknown spp. 1 (T).
Fig. 1 in Gastro-intestinal parasites of urban rhesus macaques (Macaca mulatta) in the Kathmandu Valley, Nepal
Fig. 1. Map showing the four fecal collection sites of the urban rhesus macaques in the Kathmandu Valley.
Fig. 2 in Gastro-intestinal parasites of urban rhesus macaques (Macaca mulatta) in the Kathmandu Valley, Nepal
Fig. 2. Prevalence of gastro-intestinal parasites in the rhesus macaques of Kathmandu Valley.
Fig. 4 in Gastro-intestinal parasites of urban rhesus macaques (Macaca mulatta) in the Kathmandu Valley, Nepal
Fig. 4. Location-wise richness of parasitic infection in rhesus macaques of the Kathmandu Valley.
Fig. 5 in Gastro-intestinal parasites of urban rhesus macaques (Macaca mulatta) in the Kathmandu Valley, Nepal
Fig. 5. Species Richness of GI parasite infection in rhesus macaques of the Kathmandu Valley.
Total estimated number of informal waste pickers or recyclers in Kathmandu Valley, as of December 2022
<p>Using key informants representing different parts of the informal waste management value chain, the RIPL project has produced an updated estimated total number of informal recyclers for Kathmandu Valley, in December 2022. The overview includes methods of calculation and names of key informants. </p>
Data related to boundary layer evolution and air pollution potential of the Kathmandu Valley.
<p>This study presents the mechanism of air pollution transport and evaluates the air pollution potential over the Kathmandu valley.</p>
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