
Interpretation:
The inter planar spacing, the length of the Burgers
Concept Introduction:
The formula used is:
Here,

Answer to Problem 4.29P
The length of Burgers vector for slip system
The inter planar spacing for lip system of plane
The length of Burgers vector for slip system
The inter planar spacing for slip system of plane
The ratio of shear stresses required for two slip systems is
Explanation of Solution
Plane:
The length of Burgers vector for slip system
Here,
The lattice parameter
Substituting as
Hence, the length of Burgers vector for slip system
The inter planar spacing for slip system of plane
Here, Miller indices of adjacent planes are
Substitute
The length of Burgers vector for slip system
Here,
The lattice parameter
Substitute
The inter planar spacing for slip system of plane
Here, Miller indices of adjacent planes are
Substitute
Hence, the inter planar spacing for slip system of plane
The ratio between the inter planar spacing and length of Burgers vector for slip system of
Substitute
The ratio between the inter planar spacing and length of Burgers vector for slip system of
Substitute
The ratio of shear stresses required for two slip system is calculated as:
Substitute
Hence, the ratio of shear stresses required for two slip systems is
The length of Burgers vector for slip system
The inter planar spacing for lip system of plane
The length of Burgers vector for slip system
The inter planar spacing for slip system of plane
The ratio of shear stresses required for two slip systems is
Want to see more full solutions like this?
Chapter 4 Solutions
Essentials Of Materials Science And Engineering
- A sample of Achilles saturated with water has a mass of 1710 g. After heating in an oven, a constant mass of 1815 g is obtained. The density of solid Achilles seeds is 2.78 g/cm3. We are asked to calculate: a) The water content and void ratio b) The porosity and specific gravity of the clayey soil c) The wet density of the clayey soil, the corresponding dry density and dry densityarrow_forwardCalculate the nodal voltage in the circuitarrow_forwardCalculate the mesh currents, find Ia, Ib, Ic. Apply mesh analysisarrow_forward
- Find Va and Vb using Nodal analysisarrow_forwardNote that the solution should be handwritten showing how you managed to break the cipher. You can Scan and upload your solution. Hint: The Cipher text given below is encrypted using reciprocal substitution. Use Frequency Analysis to break this Cipher. MOBUEWO LI QOUOYNYVA PZYF BOPPOQ IEC GQO EVO ES PZO SOM UZEFOV PE NYFYP CF GP PZO SYSPZ VOJP WEVPZ GVK PGDO TGQP ES PZO OBOUPYEV TQEUOFF MO ZETO PZGP IEC ZGNO PZO TEFFYLYBYPI PE AYNO CF PZO TBOGFCQO ES IECQ UEWTGVI GVK PZGP IEC GUUOTP PZO ZEVECQ GF MOBB GF PZO QOFTEVFYLYBYPI ES PZYF GFFYAVWOVP PZYF IOGQ PZO WOOPYVA MYBB PGDO TBGUO GP DOVFYVAPEV VYVO PGDO PZO LCF PZQOO ZCVKQOK PMOBNO FONOV FPGPYEVF SQEW PZO UOVPQGB DOOT PZO GKKQOFF GF MOBB GF PZO KGI G FOUQOP LOFP QOAGQKFarrow_forward4. A battery operated sensor transmits to a receiver that is plugged in to a power outlet. The device is continuously operated. The battery is a 3.6 V coin-cell battery with a 245mAHr capacity. The application requires a bit rate of 36 Mbps and an error rate of less than 10^-3. The channel has a center frequency of 2.4 GHz, a bandwidth of 10 MHz and a noise power spectral density of 10^-14 W/Hz. The maximum distance is 36 meters and the losses in the channel attenuates the signal by 0.25 dB/meter. Your company has two families of chips that you can use. An M-ary ASK and an M-ary QAM chip. The have very different power requirements as shown in the table below. The total current for the system is the current required to achieve the desired Eb/No PLUS the current identified below: Hokies PSK Chip Set Operating Current NOT Including the required Eb/No for the application Hokies QAM Chip Set Operating Current NOT Including the required Eb/No for the application Chip ID M-ary Voltage (volts)…arrow_forward
- 8. A prestressed concrete beam is subjected to the following stress distributions: Pi is the initial prestressing force, Pe is the effective prestressing force, M, is the bending moment due to self- weight, Ma and M, are the dead load and live load bending moment, respectively. The concrete has the following properties: fr = 6000 psi and fri = 4200 psi +250 -85 -2500 +550 Pe+ Mo+Ma+Mi P alone P₁+ Mo -2450 -3500 Stress at midspan +210 +250 P, alone Pe alone -2500 -3500 Stress at ends Using Table 22.1, evaluate whether the stresses at the center of the span and the end of the span comply with the permissible stress limits. The beam is classified as U-class. Provide justifications for each condition listed in the table. Note: Calculated stresses are to be taken from the above diagram, and permissible stresses are to be calculated using Table 22.1. Compressive stresses immediately after transfer Tensile stresses immediately after transfer Compressive stresses under sustained and total…arrow_forwardUsing the 802.11a specifications given below, in Matlab (or similar tool) create the time domain signal for one OFDM symbol using QPSK modulation. See attached plot for the QPSK constellation. Your results should include the power measure in the time and frequency domain and comment on those results. BW 802.11a OFDM PHY Parameters 20 MHZ OBW Subcarrer Spacing Information Rate Modulation Coding Rate Total Subcarriers Data Subcarriers Pilot Subcarriers DC Subcarrier 16.6 MHZ 312.5 Khz (20MHz/64 Pt FFT) 6/9/12/18/24/36/48/54 Mbits/s BPSK, QPSK, 16QAM, 64QAM 1/2, 2/3, 3/4 52 (Freq Index -26 to +26) 48 4 (-21, -7, +7, +21) *Always BPSK Null (0 subcarrier) 52 subarriers -7 (48 Data, 4 Pilot (BPSK), 1 Null) -26 -21 0 7 21 +26 14 One Subcarrier 1 OFDM symbol 1 OFDM Burst -OBW 16.6 MHz BW 20 MHZ 1 constellation point = 52 subcarriers = one or more OFDM symbols 802.11a OFDM Physical Parameters Show signal at this point x bits do Serial Data d₁ S₁ Serial-to- Input Signal Parallel Converter IFFT…arrow_forwardFind Vb and Va using Mesh analysisarrow_forward
- 1. The communication channel bandwidth is 25 MHz centered at 1GHz and has a noise power spectral density of 10^-9 W/Hz. The channel loss between the transmitter and receiver is 25dB. The application requires a bit rate of 200Mbps and BER of less than 10^-4. Excluding Mary FSK, Determine the minimum transmit power required.arrow_forward2. An existing system uses noncoherent BASK. The application requires a BER of <10^-5. The current transmit power is 25 Watts. If the system changes to a coherent BPSK modulation scheme, what is the new transmit power required to deliver the same BER?arrow_forward10. A short column is subjected to an eccentric loading. The axial load P = 1000 kips and the eccentricity e = 12 in. The material strengths are fy = 60 ksi and f = 6000 psi. The Young's modulus of steel is 29000 ksi. (a) Fill in the blanks in the interaction diagram shown below. (2pts each, 10pt total) Po Pn (1) failure range H 3" 30" Ast 6 No. 10 bars = P 22" I e H 3" (4) e = e small Load path for given e Radial lines show constant (2) eb (3) e large failure range Mn (5) e= Mo (b) Compute the balanced failure point, i.e., P and Mb.arrow_forward
- MATLAB: An Introduction with ApplicationsEngineeringISBN:9781119256830Author:Amos GilatPublisher:John Wiley & Sons IncEssentials Of Materials Science And EngineeringEngineeringISBN:9781337385497Author:WRIGHT, Wendelin J.Publisher:Cengage,Industrial Motor ControlEngineeringISBN:9781133691808Author:Stephen HermanPublisher:Cengage Learning
- Basics Of Engineering EconomyEngineeringISBN:9780073376356Author:Leland Blank, Anthony TarquinPublisher:MCGRAW-HILL HIGHER EDUCATIONStructural Steel Design (6th Edition)EngineeringISBN:9780134589657Author:Jack C. McCormac, Stephen F. CsernakPublisher:PEARSONFundamentals of Materials Science and Engineering...EngineeringISBN:9781119175483Author:William D. Callister Jr., David G. RethwischPublisher:WILEY





