Java StarLogo 2.0 english `turtle` breeds [ghs preds] turtles-own [lifeforce cons-amt thecount age death] to ghs-life ;grasshoppers wander around and eat grass, ;which changes the grass density, and reproduce and die setcons-amt (min density (ghs-eat-rate * random 5)) setdensity (max 0 (density - cons-amt)) seth random 360 jump 1 setlifeforce max 0 (lifeforce + cons-amt - 10) setlifeforce min lifeforce 100 if (lifeforce > ghs-birth-thresh) and (age > 2) [setlifeforce min 0 (lifeforce - 5) hatch [setlifeforce 10 setage 0 setthecount 0]] ghs-reaper end to ghs-reaper if death = 1 [die] ifelse lifeforce < 1 [setthecount (thecount + 1) if thecount > 3 [die]] [setthecount 0] if age > ghs-max-age [die] end to pred-life ;predators wander around and eat grasshoppers ;and die and reproduce if breed = preds [if (count-ghs-here > 0) [setdeath-of one-of-ghs-here 1 setlifeforce lifeforce + pred-life-gain] setlifeforce (lifeforce - (random 20) / 10) setlifeforce min lifeforce 150 pred-reaper if (lifeforce > pred-birth-thresh) and (age > 5) [setlifeforce max (lifeforce - 20) 0 hatch [setlifeforce 20 setage 0]] pred-move] end to pred-reaper if age > pred-max-age [die] ifelse lifeforce < .1 [setthecount thecount + 1 if thecount > 3 [die]] [setthecount 0] end to pred-move seth random 360 ifelse count-ghs-here > 0 [fd .1] [fd random 20] end `observer` globals [systime] patches-own [density] to startup plotid 4 end to setup-fast plotid 4 clearplot setplot-title "" ca crt 1 repeat 20 [ask-turtles [setxy (random screen-height) (random screen-width) setc 60 repeat (solar-gain * 4) [stamp color seth random 360 fd 1]]] ask-turtles [die] ask-patches [if pc = 60 [setdensity ((random 50) + 100)]] repeat 55 [diffuse density .9] cgc plot-setup intro-grasshoppers intro-preds end to setup-slow plotid 4 clearplot setplot-title "" setsystime 0 ca ask-patches [if (random 10) < 1 [setdensity 100]] repeat 10 [grow-grass diffuse density .3 cgc] plot-setup intro-grasshoppers intro-preds end to go grow-grass diffuse density .05 cgc generation ask-ghs [ghs-life] cgc ask-preds [pred-life] end to grow-grass ;grass grow by increasing its density ask-patches [if (density > .1) [setdensity min 99 (density + (solar-gain / 10))]] cgc end to cgc ;scales grass color based on density ask-patches [ifelse density > 0 [scale-pc green density 100 0] [setpc 48]] end to intro-grasshoppers create-ghs ghs-num ask-ghs [setxy (random screen-height) (random screen-width) setc red setlifeforce random 100 setage random 50] end to intro-preds create-preds pred-num ask-preds [setxy (random screen-height) (random screen-width) setc 30 setlifeforce random 100 setage random 50] end to generation ;a time-step ask-ghs [ghs-life] cgc ask-preds [pred-life] ask-turtles [setage age + 1] setsystime systime + 1 end to plot-setup pp1 ppreset setppc red pp2 ppreset setppc green pp3 ppreset setppc 1 setplot-xrange 0 25 setplot-yrange 0 500 setplot-title "Amount vs. Time" end to graph-it every 1.8 [ ;only graph every 1.8 seconds ;this causes the graph to be smoother (the averaging makes it somewhat discrete) pp1 ppd plot count-ghs ;pp2 ppd plot sum-of-patches [density / 200] ;a slower way of graphing approximately the same thing ;we're graphing a scaled distribution of the patch colors pp2 ppd plot (5 * (count-pc green) + 4 * (count-pc (green - 1)) + 4 * (count-pc (green + 1)) + 3 * (count-pc (green - 2)) + 3 * (count-pc (green + 2)) + 2 * (count-pc (green - 3)) + 2 * (count-pc (green + 3)) + 1 * (count-pc (green - 4)) + (1 * count-pc (green + 4)) + 0 * (count-pc (green - 5)) + 0 * (count-pc (green + 5))) / 10 pp3 ppd plot count-preds] end to start startgobutton startgraphbutton end to empty end `information` For use with the Adventures in Modeling book, by Vanessa Colella, Eric Klopfer, and Mitchel Resnick published by Teachers College Press, 2001. For more information, see Challenge 10: Predator, Prey, Grass This project models an ecosystem consisting of growing grass, grasshoppers that eat the grass, and predators that eat the grasshoppers. The grasshoppers and predators are implemented as breeds of turtles, while the grass is implemented as patches. If grass is present on a patch (with its density indicated by shades of green) it grows according to the rate specified in the solar-gain slider. Patches that have no grass at all are considered desertified and are shown in yellow. The only way grass can grow in the desertified areas is if it spreads to these patches through diffusion (one algorithm for modeling the re-seeding of the desert patches). The initial number of grasshoppers is controlled with the "ghs-num" slider. Each grasshopper is created with an energy level. The grasshoppers move randomly around, using up a small amount of energy for each step. If a grasshopper lands on a green patch, it consumes the grass at a rate determined by the "ghs-eat-rate" slider. This rate determines both the amount of grass that the grasshopper eats and the amount of energy the grasshopper gains. If a grasshopper is over age 2 and has accumulated enough energy (as determined by the "ghs-birth-thresh" slider), then it will hatch a new grasshopper. If a grasshopper reaches the age shown on the "ghs-max-age" slider or runs out of energy, then it will die. The "pred-num" slider sets the initial number of predators. These predators also have an energy level that decreases slightly as they move randomly around. If a predator encounters a grasshopper, then it will eat it and gain the amount of energy indicated on the "pred-life-gain" slider. Once a predator accumulates enough energy (as shown on the "pred-birth-thresh" slider), it will hatch a new predator. A predator dies when it runs out of energy or reaches the age shown on the "pred-max-age" slider. Try running the model with the default parameters. What happens to the populations over time? Can you control the degree of population fluctuation? How? What seems to determine the degree of fluctuation? Try freezing all but one of the parameters and experimenting with different values for the remaining parameter. What happens to the populations of the three species as you change the parameter? -certified- `interface` SLCanvas top-left 9 330 SLMonitor top-left 62 95 width-height 72 36 name "monitor3" list-to-run "count-preds" digits 0 delay 0.5 monitor-number 3 show-name? false whichip 23 onewhichip 24 SLMonitor top-left 62 14 width-height 72 36 name "monitor1" list-to-run "count-ghs" digits 0 delay 0.5 monitor-number 1 show-name? false whichip 25 onewhichip 26 SLTextWidget top-left 150 183 width-height 136 25 textwidth 132 linenums 1 words "PREDATOR PARAMETERS" drawBorder true textwidget-number 2 SLSlider top-left 184 35 width-height 107 25 name "slider2" variable "ghs-num" min-value 0 max-value 2000 current-value 125 slider-number 1 show-name? false SLSlider top-left 220 35 width-height 107 25 name "slider3" variable "ghs-max-age" min-value 0 max-value 250 current-value 42 slider-number 2 show-name? false SLSlider top-left 259 35 width-height 107 25 name "slider4" variable "ghs-birth-thresh" min-value 0 max-value 100 current-value 25 slider-number 3 show-name? false SLSlider top-left 298 35 width-height 107 25 name "slider5" variable "ghs-eat-rate" min-value 0 max-value 20 current-value 15 slider-number 4 show-name? false SLTextWidget top-left 150 9 width-height 158 25 textwidth 154 linenums 1 words "GRASSHOPPER PARAMETERS" drawBorder true textwidget-number 1 SLSlider top-left 182 198 width-height 107 25 name "slider6" variable "pred-num" min-value 0 max-value 99 current-value 30 slider-number 5 show-name? false SLSlider top-left 221 198 width-height 107 25 name "slider7" variable "pred-max-age" min-value 0 max-value 200 current-value 42 slider-number 6 show-name? false SLSlider top-left 262 197 width-height 107 25 name "slider8" variable "pred-birth-thresh" min-value 0 max-value 100 current-value 50 slider-number 7 show-name? false SLSlider top-left 116 49 width-height 81 25 name "slider1" variable "solar-gain" min-value 1 max-value 20 current-value 10 slider-number 0 show-name? false SLSlider top-left 300 197 width-height 107 25 name "slider9" variable "pred-life-gain" min-value 0 max-value 100 current-value 22 slider-number 8 show-name? false SLLineWidget top-left 337 72 width-height 123 78 id 4 order 4 type 1 title "Amount vs. Time" delay-string "1.0" xlabel "" ylabel "" grid false connected true autoscaletrue location 0 0 wizard-on false SLButton turtle-or-observer? observer top-left 12 98 width-height 65 30 name "button7" line-to-run "setup-fast" forever? false button-number 8 show-name? false whichip 18 SLButton turtle-or-observer? observer top-left 13 212 width-height 55 30 name "button6" line-to-run "start" forever? false button-number 7 show-name? false whichip 19 SLButton turtle-or-observer? observer top-left 62 243 width-height 64 30 name "graphbutton" line-to-run "graph-it" forever? true button-number 6 show-name? false whichip 20 SLButton turtle-or-observer? observer top-left 62 180 width-height 57 30 name "gobutton" line-to-run "go" 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