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TJ Maxx, a discount clothing retailer, would like to compare the sales per square foot in its different locations, taking into account the substantial differences

TJ Maxx, a discount clothing retailer, would like to compare the sales per square foot in its different

locations, taking into account the substantial differences in income and population. The management is

planning to use this information to guide their location selections for new store openings.

For each of the locations in the dataset below, we have values of the following variables:

Variable Coding & explanation

STORE ID :. Each store has a unique identifier number

SALES : Sales per square foot (in dollars/sq-ft)

INCOME : The median household income in the surrounding

Community : (in dollars)

POPULATION : The size of the surrounding population (in thousands)

MARKET : The market type which can take 3 possible values rural, urban and suburban

1. Using the dataset below, can you please help me run a regression with Sales as the dependent variable and Population

as the only explanatory variable. Print out your regression output on a single page, and answer the

following:

a) Is the sign on the slope coefficients for Population as you expected? Please provide a brief

justification for the conclusions.

b) Can you help Provide a brief interpretation of the value of the Population coefficient in the model.

c) What percent of the variation in Sales is explained in this model?

Store ID Sales ($/SF) Income Population (000) Market Random
3 471.4 67000 831 Rural 0.325584
6 409.9 60000 774 Rural 0.507334
7 561.1 69000 684 Urban 0.625809
8 564.2 52000 592 Urban 0.39794
9 213.8 63000 222 Rural 0.668485
10 417.5 76000 1034 Suburban 0.624649
11 290.9 65000 395 Rural 0.429842
12 468.4 86000 713 Suburban 0.052057
13 319.8 66000 260 Rural 0.466951
18 441.5 78000 326 Urban 0.023217
20 572.6 64000 760 Urban 0.781223
21 355.8 73000 798 Suburban 0.581177
22 376 63000 612 Rural 0.366008
23 428 70000 926 Suburban 0.153008
24 310.5 65000 438 Rural 0.701262
25 555.2 73000 992 Suburban 0.156267
26 455.9 74000 786 Suburban 0.530419
27 489.1 68000 712 Urban 0.186439
28 454 92000 424 Suburban 0.072635
29 469.3 86000 1224 Suburban 0.394054
31 475.7 80000 953 Suburban 0.525134
33 458.2 69000 548 Rural 0.041619
34 495.8 84000 796 Suburban 0.75447
35 612.8 73000 872 Urban 0.73372
36 466.6 78000 923 Suburban 0.171836
37 401.7 71000 626 Suburban 0.269112
38 375.1 66000 323 Rural 0.525628
39 490.1 67000 559 Urban 0.608761
41 607.6 72000 499 Urban 0.078369
42 476.4 56000 947 Rural 0.411476
43 305.1 54000 705 Rural 0.081916
44 587.4 71000 1077 Urban 0.089739
45 491.1 59000 610 Urban 0.132568
46 483.5 59000 663 Urban 0.755113
47 379.3 86000 849 Suburban 0.282094
48 437.9 95000 884 Suburban 0.486075
49 508.9 67000 672 Urban 0.437197
50 573.8 76000 769 Urban 0.263417
51 376.8 85000 828 Suburban 0.25484
53 467.9 78000 421 Urban 0.508737
55 550.5 64000 452 Urban 0.476944
56 544.3 89000 503 Urban 0.290959
57 467.1 61000 581 Urban 0.705923
58 126.9 55000 321 Rural 0.64167
59 382 84000 740 Suburban 0.088533
60 403.3 61000 685 Urban 0.381972
61 407.5 63000 945 Rural 0.334219
62 512 71000 1075 Suburban 0.331482
63 691.7 76000 699 Urban 0.607442
64 569.4 73000 650 Urban 0.736546
65 425.6 70000 552 Rural 0.146243
68 442 74000 862 Suburban 0.606241
69 272.7 59000 434 Rural 0.051439
70 630.2 79000 531 Urban 0.148649
75 461.1 79000 793 Suburban 0.195759
76 352.7 75000 827 Suburban 0.215642
77 325.9 74000 270 Rural 0.212112
78 458.3 64000 452 Rural 0.50538
79 362.9 80000 578 Suburban 0.586547
80 442.9 66000 738 Rural 0.405788
81 641.9 88000 755 Urban 0.374868
82 287.2 56000 401 Rural 0.582873
83 313.1 62000 433 Rural 0.630649
84 468.4 72000 656 Rural 0.703657
85 616.5 69000 726 Urban 0.39427
86 276.6 65000 658 Rural 0.221737
87 580.2 71000 482 Urban 0.748047

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