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(a)
Interpretation:
The phases present, composition of each of the phases present, and the amount of each of the phase in wt% for
Concept Introduction:
A matter can exist in different physical forms such as sold, liquid, gas, and plasma. These distinct physical forms are known as a Phase.
A phase has uniform physical and chemical properties and is bounded by a surface due to which two phases can be
Amount of each phase in wt% is calculated using lever rule. At a particular temperature and ceramic composition, a tie line is drawn on the phase diagram of the ceramic between the solidus and liquidus curve. Then the portion of the lever opposite to the phase whose amount is to be calculated is considered in the formula used as:
(b)
Interpretation:
The phases present, composition of each of the phases present, and the amount of each of the phase in wt% for
Concept Introduction:
A matter can exist in different physical forms such as sold, liquid, gas, and plasma. These distinct physical forms are known as a Phase.
A phase has uniform physical and chemical properties and is bounded by a surface due to which two phases can be mechanically separated from each other.
Amount of each phase in wt% is calculated using lever rule. At a particular temperature and ceramic composition, a tie line is drawn on the phase diagram of the ceramic between the solidus and liquidus curve. Then the portion of the lever opposite to the phase whose amount is to be calculated is considered in the formula used as:
(c)
Interpretation:
The phases present, composition of each of the phases present, and the amount of each of the phase in wt% for
Concept Introduction:
A matter can exist in different physical forms such as sold, liquid, gas, and plasma. These distinct physical forms are known as a Phase.
A phase has uniform physical and chemical properties and is bounded by a surface due to which two phases can be mechanically separated from each other.
Amount of each phase in wt% is calculated using lever rule. At a particular temperature and ceramic composition, a tie line is drawn on the phase diagram of the ceramic between the solidus and liquidus curve. Then the portion of the lever opposite to the phase whose amount is to be calculated is considered in the formula used as:
(d)
Interpretation:
The phases present, composition of each of the phases present, and the amount of each of the phase in wt% for
Concept Introduction:
A matter can exist in different physical forms such as sold, liquid, gas, and plasma. These distinct physical forms are known as a Phase.
A phase has uniform physical and chemical properties and is bounded by a surface due to which two phases can be mechanically separated from each other.
Amount of each phase in wt% is calculated using lever rule. At a particular temperature and ceramic composition, a tie line is drawn on the phase diagram of the ceramic between the solidus and liquidus curve. Then the portion of the lever opposite to the phase whose amount is to be calculated is considered in the formula used as:
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Chapter 10 Solutions
Essentials Of Materials Science And Engineering
- 3-3) Similar to Lathi & Ding prob. 3.3-7. The signals in the figure below are modulated signals with carrier cos(5t). Find the Fourier transforms of these signals using the appropriate properties of the Fourier transform and text Table 3.1. The sketch the magnitude and phase spectra for figure parts (a) and (b). Hint: these functions can be expressed in the form g(t) cos(2лfot) (a) 1 1 2π www. σπ (b) (c) όπarrow_forwardSketch the Energy Line and the Hydraulic Grade Line through the Venturi meter. Label the contribution of each term from bernoulli equationarrow_forward2. Design a storage and distribution system for the town of Waffle. The requirements are that fire protection shall be provided, the minimum water pressure at the top of the apartments is to be 240 kPa and the maximum system pressure is to be 550 kPa. The following assumptions may be used: Each of the four apartment buildings is occupied by 50 residents. Each apartment building is four stories high. Each story is 3 meters high. Each house is occupied by three residents. Average daily demand for the village is 500 Lpcd and the peak hourly demand factor is 6.2. Needed fire flow for the houses is 230 m3/h. and for apartment building is 500 m3/h, with 2 h duration. System pressure is to be provided from the elevated storage tank. Minor pressure losses in buildings may be ignored. The distribution system will not contain any loops. Assume that emergency supply (ES), fire department supply (FDS) or off peak pumping are not provided (they are all equal to zero). Provide the following…arrow_forward
- 3-1) Similar to Lathi & Ding prob. 3.1-1. Use direct integration to find the Fourier transforms of the signals shown below. a) g₁(t) = II(t − 2) + 2 exp (−3|t|) b) g(t) = d(t+2)+3e¯u (t − 2)arrow_forward3-2) Lathi & Ding prob. 3.1-5. From the definition in eq. 3.1b, find the inverse Fourier transforms of the spectra in the figure below. G(f) COS лf 10 (a) G(f) 1 -B B (b)arrow_forwardFundamentals of Energy Systems HW 4 Q2arrow_forward
- Suppose your computer is responding very slowly to information requests from the Internet. You observe that your network gateway shows high levels of network activity even though you have closed your e-mail client, Web browser, and all other programs that access the Internet. What types of malwares could cause such symptoms? What steps can you take to check whether malware has gained access to your system? What tools can you use at each step? If you identify malware, what ways might it have entered your system? How can you restore your PC to safe operation, including the special software tools you may use?arrow_forward1. The city of Ten Sleep proposes to use Crater Lake for its water supply. Water quality analysis results revealed no detectable Giardia, viruses, or Cryptosporidium in the source water (Giardia cysts <1/100 L; Viruses <1/100 L; Cryptosporidium oocysts <0.075/L). Design a disinfection system to treat 3,500 m³/d by direct filtration and chlorine dioxide (CIO2) will be used as a primary disinfectant. The filtered water has a pH of 7.5 and a temperature of 5°C. Provide the following information for your design: • Determine the total removal/inactivation required for disinfection for each pathogen group • Determine the required CT value to achieve the required inactivation for the design conditions (pH, temperature)arrow_forwardFundamentals of Energy Systems HW 4 Q3arrow_forward
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