MAT. SCI. & ENG: AN INTO. WILEYPLUS
MAT. SCI. & ENG: AN INTO. WILEYPLUS
10th Edition
ISBN: 9781119472001
Author: Callister
Publisher: WILEY
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Chapter 7, Problem 34QAP
To determine

The fraction of recrystallization of specimen from the photomicrograph in Figure 7.21 (c):

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3.10 As an anesthesiologist, you are responsible for preparing IV solutions containing various concentrations of drugs. You have three continuous streams available in the operating room. The stream contents are listed with the known mass fractions, where w₁, x is the mass fraction of compound x in stream i: Stream 1: water, salt (w₁s = 0.010) Stream 2: water, salt (w2,s = 0.020), drug A (w2, A = 0.10) Stream 3: water, salt (w3,s = 0.020), drug A (w3, A = 0.050), drug B (w3,B = 0.080) Your goal is to mix the above streams to produce an IV stream (Stream 4) under continuous operation that contains water, salt, drug A, and drug B with the following characteristics: ■ Drug A has a mass fraction of 0.020 (W4,A = 0.020) ■ The ratio of the mass fraction of drug A to the mass fraction of drug B is 2.0 a. Diagram the system, including the streams. Label the system, system boundary, and surroundings. b. State appropriate assumptions applied to the problem. c. What is the basis in your solution…
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Match each of the assembler routines on the left with the equivalent C function on the right. Write the name of the label (e.g., foo) to the right of the corresponding function. Note: shrq is the logical right shift instruction, and sarq is the arithmetic right shift instruction. foo1: leaq 0(,%rdi, 8), %rax long choice1 (long x) { ret return x - 8 >8; foo3: } movq sarq %rdi, %rax $8, %rax long choice4 (long x) ret { return x*256; } foo4: long choice5 (long x) leaq -8 (%rdi), %rax { ret return x-8; } long choice6 (long x) foo5: { leaq -8 (%rdi), %rax return x+8; shrq $63, %rax } ret
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