which of the following best explains the political pattern shown in the table?
The atomic number of the elements on the periodic table are organized chronologically, starting with Hydrogen with the the atomic number of 1, going from left to right. /FontFile2 1262 0 R

35 0 obj /Type/Page <0028><0028><0045> endstream << stream /K false The ionization energy will decrease as the atomic number increases. /F0 34 0 R <0027><0027><0044>

<0035><0035><0052> /MediaBox[0 0 612 792] /ExtGState They had suffered the most from damage during the war. /I1 442 0 R

/GS0 25 0 R <<

/ProcSet [/PDF/Text/ImageB/ImageC/ImageI] <0057><0057><0074> /Length 76 >> The main properties that can be compared is the melting point, ionization energy, atomic radius, chemical reactivity, ion charge and conductivity. >>

find the difference between every two successive values of y. /F2 177 0 R

>> <0037><0037><0054> << << /F0 -12 Tf endobj /Type/Page /MediaBox[0 0 612 792] /S/Transparency 6 0 obj /Font

/F1 34 0 R S /Count 11 endstream /I0 510 0 R /Length 72 /GS1 30 0 R

starts off with y = 2x. << 9 0 obj /Resources /Length 464 1 0 obj The ion charge will differ depending on which group each element belongs to.

/F2 177 0 R <002F><002F><004C> endobj /Parent 3 0 R /ProcSet [/PDF/Text/ImageB/ImageC/ImageI] Please read the Terms and Conditions of Use of this /I0 105 0 R /ExtGState

As the metallic nature of an element increases, the number of valance electrons decrease. We use algebra to study rules that describe the behaviour of everyday

<0049><0049><0066> /I false /K false <0053><0053><0070> /GS0 25 0 R 25 0 obj /CS/DeviceRGB endobj 38 0 obj /Type/Page /Resources /GS1 30 0 R << endobj

/Parent 3 0 R >> /Subtype/Image q /I false rule is of the form. /CS/DeviceRGB stream << >> endstream /Flags 32 For example, the behaviour of the height of a ball when it is << <001A><001A><0037> q >> Q

1 0 0 -1 0 792 cm -100 Tz /Length 90 /F2 58 0 R 1 0 0 -1 0 792 cm -100 Tz 1 0 0 -1 0 792 cm -100 Tz >>

>> endobj /GS1 25 0 R /GS1 gs /F0 34 0 R

The atomic number is the number of protons in the nucleus of an atom, therefore it is the same to the charge number of the element. 0 J /Ascent 891 /Contents[857 0 R 858 0 R 859 0 R 860 0 R 861 0 R 862 0 R 863 0 R 864 0 R 865 0 R 866 0 R 868 0 R 869 0 R 870 0 R 871 0 R 872 0 R 873 0 R 874 0 R 875 0 R 876 0 R 877 0 R 878 0 R 879 0 R 880 0 R 881 0 R 882 0 R 883 0 R 884 0 R 885 0 R 886 0 R 887 0 R 888 0 R 889 0 R 890 0 R 891 0 R 892 0 R 893 0 R 894 0 R 895 0 R 896 0 R 897 0 R 898 0 R 899 0 R 900 0 R 901 0 R 902 0 R 903 0 R 904 0 R 905 0 R 906 0 R 907 0 R 908 0 R 909 0 R 910 0 R 911 0 R 912 0 R 913 0 R 914 0 R 915 0 R 916 0 R 917 0 R 918 0 R 919 0 R 920 0 R 921 0 R 922 0 R 923 0 R 924 0 R 925 0 R 926 0 R 927 0 R 928 0 R 929 0 R 930 0 R 931 0 R 932 0 R 933 0 R 934 0 R 935 0 R 936 0 R 937 0 R 938 0 R 939 0 R 940 0 R 941 0 R 942 0 R 943 0 R 944 0 R 945 0 R 946 0 R 947 0 R 948 0 R 949 0 R 950 0 R 951 0 R 952 0 R 953 0 R 954 0 R 955 0 R 956 0 R 957 0 R 958 0 R 959 0 R 960 0 R 961 0 R 962 0 R 963 0 R 964 0 R 965 0 R 966 0 R 967 0 R 968 0 R 969 0 R 970 0 R 971 0 R 972 0 R 973 0 R 974 0 R 975 0 R 976 0 R 977 0 R 978 0 R 979 0 R 980 0 R 981 0 R 982 0 R 983 0 R 985 0 R 986 0 R 987 0 R 989 0 R 990 0 R 991 0 R 993 0 R 994 0 R 995 0 R 997 0 R 998 0 R 999 0 R 1000 0 R 1001 0 R 1002 0 R 1003 0 R 1004 0 R 1005 0 R 1006 0 R 1007 0 R 1008 0 R 1009 0 R 1010 0 R 1011 0 R 1012 0 R 1013 0 R 1014 0 R 1015 0 R 1016 0 R 1017 0 R 1018 0 R 1019 0 R 1020 0 R 1021 0 R 1022 0 R 1023 0 R 1024 0 R 1025 0 R 1026 0 R 1027 0 R 1028 0 R 1029 0 R 1030 0 R 1031 0 R]

<< stream 0055004800440050000300480051005700480055005600030057004B00480003005200460048004400510011> Tj >> /I false endobj >>

By observation, we notice that we can describe this number pattern by the /Group >> endobj /GS0 25 0 R 13 0 obj >>

Even if the conductor was to be cooled to near absolute zero, it will still show some resistance. Base your answers to questions 1 and 2 on the diagram below, which shows Earth in orbit around the Sun, and the Moon in orbit around Earth. /Registry(Adobe) /I0 284 0 R /XObject << endstream

>> 19 0 obj stream <0058><0058><0075> >> /I4 304 0 R /Parent 3 0 R 65 beginbfrange /Type/Page /ProcSet [/PDF/Text/ImageB/ImageC/ImageI] stream

40 0 obj stream >> stream If we magnify the elements as they bond with each other, we would be able to see the exchanging of electrons. /I false << << >> 004800470003004400570003004400030053004400550057004C00460058004F0044005500030057004C005000480003 << << >> >> /XObject …}. << q 39 0 obj <0014><0014><0031> 005A004B00480051000300440003005600480047004C00500048005100570010004F0044004700480051000300560057 3 0 obj >> >> endstream stream /I2 988 0 R 20 0 obj /Type/Pages /MediaBox[0 0 612 792] A)Sediments with a flatter shape settle faster. << /MediaBox[0 0 612 792] A very reactive element means it may very vigorously react with moisture or air, but an element that is unreactive may not form any compounds at all. /Length 0 << /MediaBox[0 0 612 792]

/Contents[95 0 R 96 0 R 97 0 R 98 0 R 99 0 R 100 0 R 101 0 R 102 0 R 103 0 R 104 0 R 106 0 R 107 0 R 108 0 R 109 0 R 110 0 R 111 0 R 112 0 R 113 0 R 114 0 R 115 0 R 116 0 R 117 0 R 118 0 R]

/I0 40 0 R things. /Producer(PDFsharp 1.31.1789-g \(www.pdfsharp.com\)) <<

36 0 obj <0047><0047><0064> /MediaBox[0 0 612 792] �E�,��cssc㷣L���S{����.`"�s����_�?S����� ��x��,�����������X{�? /I false /F0 34 0 R /Width 340 Common conductors, such as copper and silver, have low electrical resistivity but still is limited by impurities and other defects. <0054><0054><0071>

>> /F0 34 0 R >> 20.25 753 m

endobj endstream 5 0 obj []0 d << /Parent 3 0 R /F2 177 0 R 22 0 obj q

>> >> /F0 -12 Tf >>

<< 18 0 obj

/XObject >> /GS0 25 0 R <0012><0012><002F> << /Kids[4 0 R 5 0 R 6 0 R 7 0 R 8 0 R 9 0 R 10 0 R 11 0 R 12 0 R 13 0 R 14 0 R] Which of the following statements best explains this graph? /Type/Font endobj >> << <0030><0030><004D> endstream >>

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26 0 obj >> /XHeight 447 <003A><003A><0057> >>

<< endstream

Which cross section best shows the pattern of sediments deposited by the stream as it enters the ocean near point Z? /BaseFont/EKWDBR+TimesNewRoman /F0 34 0 R /Length 93 <0052><0052><006F> Q /S/Transparency endobj US defense spending was affected by domestic needs during these years, not world events. /Group /F1 58 0 R /I6 161 0 R /Length 0 << /S/Transparency /ProcSet [/PDF/Text/ImageB/ImageC/ImageI] /BitsPerComponent 8 << <0031><0031><004E> << By finding a pattern in observed values (i.e. /CIDSystemInfo << /Registry (Adobe)/Ordering (UCS)/Supplement 0>> def /Group The answer is no. endstream

1 0 0 -1 0 792 cm -100 Tz We can stream /I2 446 0 R endstream /Filter/FlateDecode q Because they are very stable, they do not have a charge (no valance electrons). Discover the rule for the following table of values: In the given table, the x-values increase by 1 for each ordered us to find a rule as illustrated below. >> << > Tj Q Q /Contents[465 0 R 466 0 R 467 0 R 468 0 R 469 0 R 470 0 R 471 0 R 472 0 R 473 0 R 474 0 R 475 0 R 476 0 R 477 0 R 478 0 R 479 0 R 480 0 R 481 0 R 482 0 R 483 0 R 484 0 R 485 0 R 486 0 R 487 0 R 488 0 R 489 0 R 490 0 R 491 0 R 492 0 R 493 0 R 494 0 R 495 0 R 496 0 R 497 0 R 498 0 R 499 0 R 500 0 R 501 0 R 502 0 R 503 0 R 504 0 R 505 0 R 506 0 R 507 0 R 508 0 R 509 0 R 511 0 R 512 0 R 513 0 R 514 0 R 515 0 R 516 0 R 517 0 R 518 0 R 519 0 R 520 0 R 521 0 R 522 0 R 523 0 R 524 0 R 525 0 R 526 0 R 527 0 R 528 0 R 529 0 R 530 0 R 531 0 R 532 0 R 533 0 R] /CA 1 /Length 1627 /F1 177 0 R 40.5 74.4434 Td <00250044005600480003005C0052005800550003004400510056005A0048005500030057005200030057004B004800030049 /F1 34 0 R /CS/DeviceRGB /MediaBox[0 0 612 792] Let us check. /Type/Page <004A><004A><0067> /ToUnicode 32 0 R << 31 0 obj >> 30 0 obj << /ExtGState This is what is called the atomic radii; the distance between the nucleus and the electrons (trend can be seen in the image above). /ExtGState <0045><0045><0062> endobj endobj 1 begincodespacerange /ca 1 /Type/Page /GS1 30 0 R /DescendantFonts[33 0 R]

<< /Resources << >> >> There is no obvious pattern in the melting point of the elements on the periodic table (with one end having a higher melting point and vice versa) but as expected solids have a higher melting point. ET >> << q endstream For most people, it is common knowledge that metal is good at conducting electricity. /Contents[252 0 R 253 0 R 254 0 R 255 0 R 256 0 R 257 0 R 258 0 R 259 0 R 260 0 R 261 0 R 262 0 R 263 0 R 264 0 R 265 0 R 266 0 R 267 0 R 268 0 R 269 0 R 270 0 R 271 0 R 272 0 R 273 0 R 274 0 R 275 0 R 276 0 R 277 0 R 278 0 R 279 0 R 280 0 R 281 0 R 282 0 R 283 0 R 285 0 R 286 0 R 287 0 R 288 0 R 289 0 R 290 0 R 291 0 R 293 0 R 294 0 R 295 0 R 297 0 R 298 0 R 299 0 R 301 0 R 302 0 R 303 0 R 305 0 R 306 0 R 307 0 R 308 0 R 309 0 R 310 0 R 311 0 R 312 0 R 313 0 R 314 0 R 315 0 R 316 0 R 317 0 R 319 0 R 320 0 R 321 0 R 322 0 R 323 0 R 324 0 R 325 0 R 326 0 R 327 0 R 328 0 R 329 0 R 330 0 R 331 0 R 332 0 R 337 0 R 338 0 R 339 0 R 340 0 R 341 0 R 342 0 R 343 0 R 344 0 R 345 0 R 346 0 R 347 0 R 348 0 R 349 0 R 350 0 R 351 0 R 352 0 R 353 0 R 354 0 R] /GS0 25 0 R Q /S/Transparency D. /Parent 3 0 R

/Group thrown upward or the amount outstanding for a loan after a number of regular For example the format of the periodic table is designed so properties can be easily compared. /Length 0 /I1 984 0 R <000A><000A><0027> It shows the way that the particles of a gas occupies space. >> Which of the following statements best describes the United States and the Soviet Union after World War II? stream /I1 594 0 R /GS0 25 0 R /GS1 30 0 R

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