NEAREST NEIGHBOUR ANALYSIS: attached maps of Central Thailand lements in two areas. Use the neares

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PRACTICAL EXERCISE 13
NEAREST NEIGHBOUR ANALYSIS: TEST FOR DISTRIBUTION IN SPACE
The attached maps of Central Thailand at 1:100,000 scale show the distribution of
settlements in two areas. Use the nearest neighbour index to describe statistically the
two settlement distribution patterns.
Method
1.
2.
For each area separately:-
a)
b)
c)
dy
e)
number the settlements
measure the distances (in kilometres) between each settlement and its
nearest neighbouring settlement
find the mean distance between nearest neighbours
measure the total area in square kilometres
calculate R using the formula
10
B
A
N
II
||
R=2D (NA)
97
mean distance between nearest neighbours (km)
area under study (km²)
number of points in study area
Test the result you have obtained for each area for its significance:-
a)
Formulate H, and H₁
b)
Set your rejection level at 0.01 using Column C for the probability table.
c)
Calculate the Standard Error o of Dran.
e Dran-(0.26136)
√N(NA)
Transcribed Image Text:PRACTICAL EXERCISE 13 NEAREST NEIGHBOUR ANALYSIS: TEST FOR DISTRIBUTION IN SPACE The attached maps of Central Thailand at 1:100,000 scale show the distribution of settlements in two areas. Use the nearest neighbour index to describe statistically the two settlement distribution patterns. Method 1. 2. For each area separately:- a) b) c) dy e) number the settlements measure the distances (in kilometres) between each settlement and its nearest neighbouring settlement find the mean distance between nearest neighbours measure the total area in square kilometres calculate R using the formula 10 B A N II || R=2D (NA) 97 mean distance between nearest neighbours (km) area under study (km²) number of points in study area Test the result you have obtained for each area for its significance:- a) Formulate H, and H₁ b) Set your rejection level at 0.01 using Column C for the probability table. c) Calculate the Standard Error o of Dran. e Dran-(0.26136) √N(NA)
AREA
1
1km
0.57am
1km
A
AREA
1
40.5km
850-5km
3
62km
B
2 km
70.5km
was a
OP
125 км
0.5 km
3-5 km
19
nibhs
1km 1.75km
KEY
River
Roud
1km
2.25 km
5.5km
32
2
14.75 km
13 14
0.75 km.
Settlement centre
Rainforest
1km
2km
55km
Scale 1:100000
2 3 4
2km
21 km
12.75 km
17
0-5km
1.25km
0.5km
19
1.25km
5
1.75km
22
0.75 km
1km
20
Item
23
3km
6 km
R
131
2.5 km
0.5
26
25
3km
14
0.7518
27
99
9 km
9-75 km
Transcribed Image Text:AREA 1 1km 0.57am 1km A AREA 1 40.5km 850-5km 3 62km B 2 km 70.5km was a OP 125 км 0.5 km 3-5 km 19 nibhs 1km 1.75km KEY River Roud 1km 2.25 km 5.5km 32 2 14.75 km 13 14 0.75 km. Settlement centre Rainforest 1km 2km 55km Scale 1:100000 2 3 4 2km 21 km 12.75 km 17 0-5km 1.25km 0.5km 19 1.25km 5 1.75km 22 0.75 km 1km 20 Item 23 3km 6 km R 131 2.5 km 0.5 26 25 3km 14 0.7518 27 99 9 km 9-75 km
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Follow-up Question

b) Set your rejection level at 0.01 using Column C for the probability table.

S
Column C
P2
1.000
0-920
0-841
0.764
0-689
0.617
0.549
0.484
0.424
0.368.
0-317
0-271
0-230%
0-193
. 0.162
0-134
And cold 0-110 dedor
0.089
rio
0.072
0-057
0-050
0-046
0-036
0-028
0-021
0.016
0.012.
0-010
0.009
0.007.
0.005
0-004
0-003
0-002
0.001
0-001
0-001
0.000
noljud
RG
well br
and so
Transcribed Image Text:S Column C P2 1.000 0-920 0-841 0.764 0-689 0.617 0.549 0.484 0.424 0.368. 0-317 0-271 0-230% 0-193 . 0.162 0-134 And cold 0-110 dedor 0.089 rio 0.072 0-057 0-050 0-046 0-036 0-028 0-021 0.016 0.012. 0-010 0.009 0.007. 0.005 0-004 0-003 0-002 0.001 0-001 0-001 0.000 noljud RG well br and so
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