Firms which have successfully achieved both operational relatedness and corporate relatedness
A. are termed diversified corporations.
B. are unstable because of the difficulty of maintaining this "hybrid" strategy.
C. are difficult for competitors to imitate.
D. rely almost entirely on the transfer of intangible core competencies for their success.
Answer: D
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Provide an appropriate response.Three components A, B, and C, are used in the manufacturing of a product. For a production run, 100, 150, and 200 units of A, B, and C are $2, $1, and $3, respectively. Represent the total cost of A, B, and C by a matrix product.
What will be an ideal response?
Write the number in standard form a + bi.
A. - +
i
B. - +
i
C. - -
i
D. - -
i
Use the rules of exponents to simplify the expression. Write the answer with positive exponents. Assume that all variables represent positive real numbers.-5k1/8(-4k3/8 + 8k3/4)
A. 20k3/64 - 40k3/32 B. 20k1/2 - 40k7/8 C. 20k-1/4 + 40k-5/8 D. 20k1/2 + 40k7/8
The volume V (in liters) of a certain mass of gas is related to its pressure P (in millimeters of mercury) and its temperature T (in degrees Kelvin) by the law
?
?
Compute
and
when T = 260 and P = 700.
?
A.
The volume increases by 0.044 L when the temperature decreases by 1 degree (beyond 260 K) and the pressure is fixed at 700 mm of mercury. The volume decreases by 0.016 L when the pressure increases by 1 mm of mercury (beyond 700 mm) and the temperature is fixed at 260 K.
?
B.
The volume increases by 0.044 L when the temperature increases by 1 degree (beyond 260 K) and the pressure is fixed at 700 mm of mercury. The volume decreases by 0.016 L when the pressure increases by 1 mm of mercury (beyond 700 mm) and the temperature is fixed at 260 K.
?
C.
The volume increases by 0.044 L when the temperature increases by 1 degree (beyond 260 K) and the pressure is fixed at 700 mm of mercury. The volume increases by 0.016 L when the pressure increases by 1 mm of mercury (beyond 700 mm) and the temperature is fixed at 260 K.
?
D. ?
The volume increases by 0.044 L when the temperature increases by 1 degree (beyond 260 K) and the pressure is fixed at 700 mm of mercury. The volume increases by 0.016 L when the pressure increases by 1 mm of mercury (beyond 700 mm) and the temperature is fixed at 260 K.
?