代做SIO25 Fall24 – Homework #1

SIO25 Fall24 – Homework #1 Due October 4.

Problem 1)

In this problem you will examine information from a single ground-based weather station at the international airport in San Diego, California. The raw data will include the following.

Air temperature (AT) – The temperature of air in a shaded location that is approximately 2 m aboveground level.

Relative humidity (%RH) – The amount of water vapor in the air relative to how much it can hold at a given temperature.

Dew point temperature (DPT) The temperature air needs to be cooled (at a constant pressure) for it to reach RH = 100%.

Wind speed (WS) – The average speed of the wind over a given period of time such as 15 minutes or half an hour

Wind gust (WG) – The maximum wind speed recorded during a given period of time.

Precipitation (Pct) – This is the amount of rain, snow, sleet, or hail that collects in a standardized container during a given period of time – In the case of the data you   will be looking at this is volume of precipitation that collects in one hour.

Begin by launching the National Weather Service weather conditions page for the San Diego Airport

https://www.wrh.noaa.gov/mesowest/getobext.php?wfo=pqr&sid=KSAN&num=72&raw=0

a) What is the latitude longitude and elevation of the station?

b) Look at the graph of temperature, dew point, and relative humidity. What is the

relationship between air temperature and relative humidity? Try to be quantitative with your answer.

c) What is the highest and lowest temperature for all three days?

d) What is the temperature range for all three days?

e) What is the average temperature for all three days?  Hint- click the three bars at the upper right-hand corner of the graph which will allow the raw data to be downloaded to a spreadsheet.

f) Find the time when the dew point temperature was as close as possible to the air temperature – what time of day was this and what were the air and dew point temperatures?

g) Find the time of the maximum relative humidity. What is the value of relative humidity and how does this relate to the answer in f)?

Problem 2)

This problem will examine the Biome for an assigned country. Begin by opening the Biome Viewer:http://media.hhmi.org/biointeractive/biomeviewer_web/index.html from the Biointeractive Program at the Howard Hughes Medical Institute.

You have been assigned a country to investigate by your TA. Begin this part of the problem by typing the name of your assigned country into the searchbox. The program will display this country with a virtual “stickpin”. Once it does, use the gear symbol at the upper-left to turn on the political boundaries and yield amap outline of the country. You will need to click on “More” to answer some of these questions.

a) How many biomes are present within this country?

b) What is the biome that represents the greatest portion of the country?

c)   What is the maximum and minimum monthly average temperature?

d) What is the maximum and minimum monthly precipitation?

e) Under the “Wildlife” tab click on the “Threat Filter Level” and give the number of species that are near threatened, threatened, endangered and/or critically endangered.

Problem 3)

This problem will explore how weather statistic relate to climate.

Begin by opening the Climate Analyzer:https://climatereanalyzer.org/

from the Climate Institute of the University of Maine. On the menu along the left of the

globe, select “Today’sWeather Maps”. After the label at the top of the globe says “Today’s

Weather Maps”, run your cursor along all the variety of variables along the left of the globe

a)   Click on the “Avg 2-m Temperature”. What is the general relationship between temperature and latitude? You may want to view the lower map view that shows the entire globe in a single view.

b)  Based on the “Avg 2-m temperature” name three countries (or regions within countries) with the highest temperatures and give an approximate estimate of their temperatures.

c)   Now click on the “2m Temperature Anomaly” which refers to the departure of the currentday's temperature from along-term mean for the same day of the year. The anomalies are calculated from a 1979–2000.  Which countries (or regions within countries) have the highest “2m Temperature Anomaly” and what is their approximate temperature anomaly?

d)  At the menu at the top of the page goto “Climate Data” and then in the pull- down menu “Daily Surface Air Temperature”.  You should see a graph of temperature.  Select the red line at the mostrecent date (often about a week behind the current date).  What is the World average temperature and temperature anomaly compared to 1979-2000 and 1979-2020?




热门主题

课程名

mktg2509 csci 2600 38170 lng302 csse3010 phas3226 77938 arch1162 engn4536/engn6536 acx5903 comp151101 phl245 cse12 comp9312 stat3016/6016 phas0038 comp2140 6qqmb312 xjco3011 rest0005 ematm0051 5qqmn219 lubs5062m eee8155 cege0100 eap033 artd1109 mat246 etc3430 ecmm462 mis102 inft6800 ddes9903 comp6521 comp9517 comp3331/9331 comp4337 comp6008 comp9414 bu.231.790.81 man00150m csb352h math1041 eengm4100 isys1002 08 6057cem mktg3504 mthm036 mtrx1701 mth3241 eeee3086 cmp-7038b cmp-7000a ints4010 econ2151 infs5710 fins5516 fin3309 fins5510 gsoe9340 math2007 math2036 soee5010 mark3088 infs3605 elec9714 comp2271 ma214 comp2211 infs3604 600426 sit254 acct3091 bbt405 msin0116 com107/com113 mark5826 sit120 comp9021 eco2101 eeen40700 cs253 ece3114 ecmm447 chns3000 math377 itd102 comp9444 comp(2041|9044) econ0060 econ7230 mgt001371 ecs-323 cs6250 mgdi60012 mdia2012 comm221001 comm5000 ma1008 engl642 econ241 com333 math367 mis201 nbs-7041x meek16104 econ2003 comm1190 mbas902 comp-1027 dpst1091 comp7315 eppd1033 m06 ee3025 msci231 bb113/bbs1063 fc709 comp3425 comp9417 econ42915 cb9101 math1102e chme0017 fc307 mkt60104 5522usst litr1-uc6201.200 ee1102 cosc2803 math39512 omp9727 int2067/int5051 bsb151 mgt253 fc021 babs2202 mis2002s phya21 18-213 cege0012 mdia1002 math38032 mech5125 07 cisc102 mgx3110 cs240 11175 fin3020s eco3420 ictten622 comp9727 cpt111 de114102d mgm320h5s bafi1019 math21112 efim20036 mn-3503 fins5568 110.807 bcpm000028 info6030 bma0092 bcpm0054 math20212 ce335 cs365 cenv6141 ftec5580 math2010 ec3450 comm1170 ecmt1010 csci-ua.0480-003 econ12-200 ib3960 ectb60h3f cs247—assignment tk3163 ics3u ib3j80 comp20008 comp9334 eppd1063 acct2343 cct109 isys1055/3412 math350-real math2014 eec180 stat141b econ2101 msinm014/msing014/msing014b fit2004 comp643 bu1002 cm2030
联系我们
EMail: 99515681@qq.com
QQ: 99515681
留学生作业帮-留学生的知心伴侣!
工作时间:08:00-21:00
python代写
微信客服:codinghelp
站长地图