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USSR: Measures of Economic Growth and Development, 1950-80

Central Intelligence Agency · 1982-12-08 · 399 pages · text from the file's own layer

This Joint Committee Print, dated December 8, 1982, gathers studies that the Central Intelligence Agency's Directorate of Intelligence prepared for the Joint Economic Committee of the US Congress. It gives estimates of Soviet gross national product for 1950 to 1980, with indexes of industrial production, agricultural production and consumption, and explains the methods and data behind them. The foreword says official Soviet statistics inflate growth and that the CIA measures offer a more accurate picture. The document contains no UFO material.

  • p. 4 …The volume contains a series of tables estimating the Soviet gross national product and its components…
  • p. 5 …quantified estimates of the value of Soviet gross national product (GNP), its rate of growth, its…
  • p. 6 …The Soviet indices of industrial and agricultural production are based on gross output rather than value…
  • p. 7 …For example, data on the amount of waste included in the gross output data of agricultural…
  • p. 8 …The measure shown represents “net output,” or gross output less products used by agriculture (seed and…
  • p. 9 …compendium on the Soviet eeonomV- “The Real Gross National Product of the U.S.S.R…
  • p. 10 …Contributions of Rush V. Greenslade ________ _________________-________ ____ __ 1x I. Gross National Product of the USSR, 1950—80.-______________________________ 3…
  • p. 12 …Release: 2019/07/19 C05210421 Part I. GROSS NATIONAL PRODUCT OF THE USSR, 1950-80 By…
  • p. 14 …Turnover Taxes as a Share of Gross Output in Industry, 1972 6. Subsidies on Agricultural Products…
  • p. 15 …2019/07/19 C05210421 Gross National Product of the Soviet Union in Established Prices, 39 by…
  • p. 16 …of Value Added in Agriculture B-8. Gross Output, Total Material Purchases, and Value Added in…
  • p. 17 …I Soviet Gross National Product in Established Priceskby End Use, I if I970 D-6. I…
  • p. 18 …An International Comparison, 1981 Gross National Product of the USSR: An International Comparison, 1982 Soviet Economic…
  • p. 19 …2019/07/19 C05210421 Gross National Product of the USSR, 1950-80 Introduction This paper presents…
  • p. 20 …Lee, “USSR Gross National Product in Established Prices, 1955-1975,” Jahrbuch der Wirtsc/la/I Osteuropas…
  • p. 27 …GNP for the Soviet Union and of gross domestic product (GDP) for selected OECD countries.” For…
  • p. 34 …Lee, “USSR Gross National Product," p. 413; and Becker, 1969, p. 128. difference between the growth…
  • p. 35 …conducted on a net rather than a gross basis. The enterprise is expected to be managed…
  • p. 41 …the business sector and are included in gross private business investment. The second US account shows…
  • p. 43 …On the other hand, the tax amounts to 30 percent of the gross output of the…
  • p. 44 …Turnover taxes were 30 and 56 percent of the gross outputs of the sugar and other…
  • p. 45 …The capital stock data used in this study are gross of depreciation. Approved for Release: 2019…
  • p. 47 …2019/07/19 C05210421 Table 8 Billion Rubles Gross National Product of the Soviet Union ' in…
  • p. 48 …The row and column sums are determined as each sector’s gross output less, respec- tively…
  • p. 49 …2019/07/19 C05210421 Table 10 Percent 1970 Soviet Gross National Product by End Use W…
  • p. 52 …Therefore, value added is computed as a residual—the difference between gross output and current material…
  • p. 53 …Therefore, if in- dexes of gross output and current inputs are both available, the gross output…
  • p. 56 …Each subbranch index measures the gross output of an I-O sector by summing the physical…
  • p. 57 …The material-input index is less desirable than a double deflation or gross output index, but…
  • p. 58 …2019/07/19 C05210421 Appendix A ' Soviet Gross National Product, 1950-80 This appendix presents the…
  • p. 59 …5 0.5 0.6 0.6 Gross national product 133.6 137.7 145.8…
  • p. 60 …4 ._ §l§5QfI.i2j§§5 1.0 Gross national product 232.3 245.3 254.5…
  • p. 61 …4 1.4 1.4 1.4 Gross national product 383.3 398.2 405.7…
  • p. 62 …0 5.2 3.7 2.7___ Gross national product 5.5 5.9 5.0…
  • p. 63 …8 7.6 5.8 4.0 Gross national product 3.1 5.9 5.2…
  • p. 64 …5.1 4.; 2.9 7.7“ ' Gross national product 5.6 3.8 -1.1…
  • p. 65 …2 3.4 0.8 1 4 Gross national product 3.9 1.9 7.3…
  • p. 66 …9 0.3 2.5 0.3 Gross national product 100.0 100.0 100.0…
  • p. 67 …3 0.3 0.3 0.3 Gross national product 100.0 100.0 100.0…
  • p. 68 …3 0.3 0.3 0.3 Gross national product 100.0 100.0 100.0…
  • p. 69 …3 51.2 55.1 58.3 _ Gross national product 34.9 35.9 38.0…
  • p. 71 …7 134.1 135.2 137.1 Gross national product 100.0 103.9 105.9…
  • p. 72 …27.5 24.. ?6i5j_; Gross national product 133.6 137.7 145.8 153.4 160…
  • p. 73 …1 43.7 45.9 s9.7_‘ Gross national product 232.3 245.3 254.5…
  • p. 75 …4.5 1.1 5.9 -3.1 Gross national product 5.5 5.9 5…
  • p. 76 …0 0.0 0.0 0.0 Gross national product 3.1 5.9 5.2…
  • p. 77 …0 0.0 0.0 0.0 Gross national product 5.6 3.8 -1.1…
  • p. 78 …g 4.3 0.0 0.0 Gross national product 3.9 1.9 7.3…
  • p. 79 …1 28.1 29.1 30.2 Gross national product 741.7 752.2 784.0…
  • p. 80 …9 36.6 31.8 Ww3§’.98W Gross national product 1,083.8 1,124.6…
  • p. 81 …1 46.1 46.9 46.8 Gross national product 1,578.5 1,624.6…
  • p. 82 …3.2 7* 1.4 1.3 Gross national product 3.7 4.0 3.5…
  • p. 83 …1 14.0 13.8 13.5 Gross national product 100.0 100.0 100.0…
  • p. 84 …8 13.4 13.3 7 17717 Gross national product 100.0 100.0 100.0…
  • p. 85 …4 9.6 8.1 6.9 Gross national product 100.0 100.0 100.0…
  • p. 86 …31.7 65.3______s.9 g Gross national product 34.9 35.9 38.0…
  • p. 87 …9 98.2 103.1 89.1 Gross national product 60.6 64.0 66.4…
  • p. 88 …8 110.4 93.7 81.8 Gross national product 100.0 103.9 105.9…
  • p. 89 …Subtracting the deflated material pur- chases from the deflated gross output produces value added in constant…
  • p. 90 …The ratio of material inputs (gross output less NMP) to gross output declined slowly in this…
Approved for Release: 2019/07/19 C05210421
Mathematically, the unknown parts of the table are
estimated by minimizing the sum of squared differ-
ences between the corresponding entries of the 1972
and 1970 I-O tables. If x(i,j) is the value of the sales of
sector i to sector j in 1970 and y(i,j) is the same sales
in 1972, then the following is minimized:
I1 Tl
5 =_ E _E(X(i.i)—y(i,J'))’/y(i,j).
l=l j=1
subject to the constraints that:
(1) gJx(i,j)=C(j), and
i=l
(2) ;x(i,j)=R(i), where
j=l
C(j) is the column sum of sector j (gross output less
value added and other estimated purchases) and R(i) is
the row sum of sector i (gross output less final demand
and other estimated sales). The minimum value of S is
determined by the equations:
(3) X(i.j)=y(iJ)(1+>\(i)+#(J')), Where
)\(i) and p(i) are Lagrangian multipliers. Substituting
each equation (3) into equations (1) and (2) produces a
system of 2n-l linear equations in 2n-1 unknowns (the
Lagrangian multipliers), where n is the number of
sectors in the I-O table (19 in this case). The values of
the Lagrangian multipliers can then be substituted
back into each equation (3) to determine the actual
value of each cell in the 1970 I-O table. For a detailed
description of this and other methods of estimating
I-O tables see John Pitzer, An Analysis of Technical
Change in the Soviet Economy: An Application of
Soviet Input-Output Tables (Ph.D. dissertation,
American University, 1980).
167
Estimating GNP in Factor-Cost Prices
The preceding sections have described the estimation
of GNP in producers’ prices and a complete 1970
Soviet I-O table. In order to complete the conversion
to factor-cost prices, it is necessary to eliminate the
remaining elements of value added which do not
represent a payment to a factor of production, esti-
mate the capital stock of each sector, and replace
Soviet profits with a capital charge which provides an
equal rate of return in each sector. All of these
changes directly affect value added. The I-O table is
needed to compute the direct and indirect impact of
the value-added changes on end-use GNP.
In any I-O table, the sum of a sector’s material
purchases and value added equal its gross output, or:
n
()4) X(j)= Ex(i,j)+w(j)+d(j)+Z(j), where
i=1
X(j) is the gross output of sector j, w(j) is the labor
income earned in sector j, d(j) is the depreciation in
sector j, and Z(j) is all other value added in sector j.
As in previous estimates of Soviet GNP in factor-cost
prices, it is assumed that w(i) and d(j) adequately
represent their respective variables. It is desired to
compute a uniform rate of return on each sector’s
capital stock, r, and to reprice the output of all sectors
to accommodate this uniform return. Equation (4)
now becomes
(5) P(i)X(i)= §D(i)X(iJl'l'WU)+d(.l)+FK(.l).
i=l
where p(i) is the price change required in sector i, and
K_(i) is the capital stock of sector j.
We make two further refinements. First, the capital
stock of each sector is disaggregated to show how
much was produced by the machinery, construction,
Approved for Release: 2019/07/19 C05210421

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FOIA release, from the cia-readingroom collection. The PDF is mirrored here; the original link is under it. 399 pages are in the text index: search them above, or from the library's search.