The statement is true because the "java_home" environment variable is a required configuration variable for Java applications to run correctly. It is used to point to the location where Java is installed on a computer.
When a Java application is launched, it needs to locate the Java Runtime Environment (JRE) in order to run. The "java_home" environment variable provides the path to the directory where the JRE is located. If the variable is not defined or is defined incorrectly, the application will not be able to find the JRE and will not be able to run.
Therefore, if the "java_home" environment variable is not defined correctly, it is necessary to update it to the correct path to enable Java applications to run on the computer.
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The statement is true. The JAVA_HOME environment variable is crucial for running certain Java-related programs. If it's not correctly defined, issues may arise when running applications developed in Java.
Explanation:The statement is true. The JAVA_HOME environment variable is indeed crucial for running certain programs, especially those related to Java development. When you install Java Development Kit (JDK) on your system, JAVA_HOME is an environment variable that should point towards the directory where JDK is installed. If it's not defined correctly, you would encounter issues while running Java implemented software. It serves as a reference point for other Java-based applications to locate JDK on your system. For instance, in a Java-based server like Apache Tomcat, the server start-up scripts often need to access tools provided within the JDK, and they use the JAVA_HOME environment variable to locate the right directory.
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Why did you choose your proposed course and institution"? not less than 2000 words.
I chose university of Australia and the course is master of Engineering science (Metallurgy)
Answer:
I can provide some general guidance on how to approach answering the question "Why did you choose your proposed course and institution?" in case it may be helpful.
When answering this question, it is important to provide specific and detailed reasons for why you chose the particular course and institution. Here are some tips on how to structure your response:
1. Introduction: Start by briefly introducing the course and institution you have chosen, including their names and locations.
2. Why the institution? Provide some reasons for why you chose the particular institution. This could include factors such as:
- Reputation: Discuss the institution's reputation and how it influenced your decision. Has it been recognized for excellence in your chosen field or in general? Did the institution have a ranking that you found impressive?
- Resources: Discuss the resources that the institution has that are relevant to your course of study. These could include things like state-of-the-art facilities, research centers, or specialized faculty.
- Location: Discuss why you chose the institution's location. Does it offer a unique advantage for your studies, such as being located near industry-specific hubs, or do you find the location attractive or convenient for other reasons?
- Culture and community: Discuss the institution's culture and community. Do you feel like you will fit in with the community and thrive in the institution's culture? Did you attend any campus events or talk to current students or alumni to get a sense of what the community is like?
3. Why the course? Provide some reasons for why you chose the particular course. This could include factors such as:
- Interest and passion: Discuss your interest in the subject matter of the course and your passion for the field. Have you taken any related courses in the past that sparked your interest in this area?
- Career goals: Discuss how the course will help you achieve your career goals. Have you researched the job market and found that this degree will give you a competitive advantage? Have you talked to alumni or professionals in the field who have recommended this course?
- Curriculum: Discuss the curriculum of the course and how it aligns with your interests and goals. Did you review the course syllabus and find that the topics covered were relevant to your goals?
4. Conclusion: Sum up your reasons for choosing the course and institution and how they align with your interests and goals. Show enthusiasm for the opportunity to study at the institution and to pursue your chosen course.
Remember to tailor your response to your specific situation and experiences. Use personal anecdotes and examples wherever possible to add depth and authenticity to your response. Best of luck with your application!
what is the rated power output in ( kw) of a 8 pole motor designed to an IEC 180L motor frame ?
Answer:
P=11 kW
Explanation:
Given that
Number of poles= 8
I.E.C. 180L motor frame
From data book , for 8 poles motor at 50 Hz
Speed = 730 rpm
Power factor = 0.75
Efficiency at 100 % load= 89.3 %
Efficiency at 50 % load= 89.1 %
Output power = 11 kW
Therefore the rated output power of 8 poles motor will be 11 kW. Thus the answer will be 11 kW.
P=11 kW
Which of the following best describes the difference between engineering and engineering technology?
a.
Engineering technology are the systems used in the development of engineering projects.
b.
Engineering is the application of engineering technology.
c
Engineering is focused on design and theory, while engineering technology focuses on application and troubleshooting.
Engineering is the application of scientific and mathematical principles to design and develop structures, machines, systems, and processes. Engineers use their knowledge of science, mathematics, and engineering principles to design, develop, and test new products and processes. They also analyze existing products and processes to identify areas for improvement.
On the other hand, engineering technology is the practical application of engineering principles in the workplace. Engineering technology professionals work in a hands-on capacity to solve technical problems, troubleshoot issues with machinery and systems, and improve production processes.
While both engineering and engineering technology involve the application of scientific and mathematical principles, engineering is focused on design and theory, while engineering technology focuses on application and troubleshooting. Engineers typically work in research and development, while engineering technology professionals work in industries such as manufacturing, construction, and transportation.
Gold and silver rings can receive an arc and turn molten. True or False
Micropulse arc welding is a well-known tool for speeding up simple bench operations during the welding process like ring size, making connections near thermally sensitive gemstones, and mending porosity castings.
The practice performs effectively on gold, silver, copper, and stainless steel whether joining tiny jewelry materials or bigger pieces for miniature metal sculptures.
The welding arc temperatures typically range from 6000°C to 8000°C, which translates to about 10000F to 15000F.
This increased range of thermal heat is high enough to turn Gold and silver rings into a molten state. A molten state is a phase at which a solid element is being melted and turns into a liquid state under the influence of a high temperature.
Therefore, from the above explanation, we can conclude that it is possible and true for gold and silver rings to receive an arc and turn molten.
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The spoked wheel of radius r-705 mm is made to roll up the incline by the cord wrapped securely around a shallow groove on its outer rim.
If the cord speed at point P is v-2.0 mys, determine the velocities of points A and B. No slipping occurs. Answers: Ve- mis
GivenDataRadius of the spoked wheel, r = 705 mmCord speed at point P, v = 2.0 m/sVelocity of point E = VeWe know that linear velocity (v) = angular velocity (ω) × radius (r)We can find the angular velocity using the formula:ω = v / rω = 2 / 0.705= 2.84 rad/s
We know that the velocity of point A is perpendicular to the incline and the velocity of point E is parallel to the incline.As no slipping occurs, the velocity of point B is zero.The velocity of point E is given byVe = ω × r = 2.84 × 0.705 = 2.00 m/sLet VA be the velocity of point A. Then we can write:VA / Ve = AB / AEBut AB = 2r and AE = r + hSo we haveVA / 2 = AB / (r + h)VA / 2 = 2r / (r + h)VA = 4r / (r + h)Substitute the values to obtainVA = 4 × 705 / (705 + 300) = 2.22 m/sTherefore, the velocities of points A and B are VA = 2.22 m/s and VB = 0 m/s respectively.Note that the solution has a word count of 159 words.
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According to the information, the velocity of point A is v = 1.0 m/s and the velocity of point B is v = 2.0 m/s.
How to calculate the velocity of point A and point B?Fist we have to consider that since no slipping occurs, the linear velocity of any point on the wheel must be equal to the tangential velocity of the cord. At point P, the cord speed is given as v = 2.0 m/s.
Now, to determine the velocities of points A and B, we need to consider the relationship between linear velocity, angular velocity, and radius. The linear velocity of a point on the wheel is equal to the product of the angular velocity and the radius of the wheel.
Additionally, the radius of the wheel is given as r = 705 mm, which is equivalent to 0.705 m, we can calculate the angular velocity (ω) of the wheel by dividing the linear velocity of point P (v) by the radius (r).
ω = v / r = 2.0 m/s / 0.705 m ≈ 2.836 rad/sNow, we can calculate the velocities of points A and B using the angular velocity and their respective radii.
Velocity of point A:
v_A = ω * r_A = 2.836 rad/s * r_AVelocity of point B:
v_B = ω * r_B = 2.836 rad/s * r_BSince the radius of point A (r_A) is 0.705 m, the velocity of point A is:
v_A = 2.836 rad/s * 0.705 m = 2.0 m/sSince the radius of point B (r_B) is twice the radius of point A, i.e., 2 * 0.705 m = 1.41 m, the velocity of point B is:
v_B = 2.836 rad/s * 1.41 m = 4.0 m/sAccording to the above, the velocity of point A is v_A = 2.0 m/s and the velocity of point B is v_B = 4.0 m/s.
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Find the magnitude and phase of the following complex numbers.Also plot the magnitude and phase as a function of omega (a)
z= 1+jω
1
, where
ω
is a real number. (b)
z= 1+jω
−1
where
ω
is a real number.
(a) To find the magnitude and phase of the complex number z = 1 + jω:
Magnitude:
|z| = sqrt(1^2 + ω^2) = sqrt(1 + ω^2)
Phase:
φ = arctan(ω/1) = arctan(ω)
To plot the magnitude and phase as a function of ω, we can use a graph with ω on the x-axis and the magnitude or phase on the y-axis. The magnitude will increase as ω increases, while the phase will increase from 0 to π/2 as ω increases from 0 to infinity.
(b) To find the magnitude and phase of the complex number z = 1 + jω^-1:
Magnitude:
|z| = sqrt(1^2 + (1/ω)^2) = sqrt(ω^-2 + 1)
Phase:
φ = arctan(1/ω) = 1/ω
To plot the magnitude and phase as a function of ω, we can use a graph with ω on the x-axis and the magnitude or phase on the y-axis. The magnitude will decrease as ω increases, approaching 1 as ω approaches infinity. The phase will approach 0 as ω increases from 0 to infinity.
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what term describes the architectural elements framing the square openings and large arch of the porta marzia?
A terminology which describes the architectural elements framing the square openings and large arch of the Porta Marzia is: b. Pilasters.
What is architecture?Architecture can be defined as an art that involves the process of planning, designing, developing, and construction of a b or other structures such as the Porta Marzia, cathedral of Florence, Paolina fortress, etc.
What is the Porta Marzia?The Porta Marzia is sometimes referred to as Marzia Gate and it can be defined as the main entrance to the southern end of the Etruscan city which was constructed in the 1540s BC (in the third century BC), in order to serve as a blind arch within the masonry of the Paolina fortress.
Based on historical records and information, we can reasonably infer and logically deduce that pilasters were used as architectural elements in order to help frame the square openings and large arch of the Porta Marzia.
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Complete Question:
What term describes the architectural elements framing the square openings and large arch of the Porta Marzia?
a.Columns
b.Pilasters
c.Brackets
d.Antefix
barcoding and radio frequency
identification (RFID) are technologies utilized in material
management. How are these technologies used to improve performance
in the supply chain?
Barcoding and radio frequency identification (RFID) are technologies that are commonly used in material management to improve performance in the supply chain.
Barcoding involves the use of unique codes, usually in the form of a series of black and white lines, to represent information about a product or item. These codes are scanned using a barcode reader, which then retrieves the corresponding information from a database. Barcodes are widely used in inventory management, as they allow for quick and accurate tracking of products as they move through the supply chain.
Together, barcoding and RFID technologies improve performance in the supply chain by providing accurate and real-time data about the movement and status of products. This enables businesses to make informed decisions, optimize inventory levels, reduce stockouts, minimize theft and loss, and enhance customer satisfaction.
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In which of the following ways does Bo Lim describe prophets in the Old Testament story of Israel?
a. Intermediaries
b. God's messengers
c. Poets
d. all of the above
We can see here that Bo Lim describes prophets in the Old Testament story of Israel in: d. all of the above
What is Old Testament?The Old Testament, also known as the Hebrew Bible, is the first major section of the Christian Bible and an important religious text in Judaism. It is a collection of religious writings and sacred texts that were compiled and preserved by the ancient Israelites and later adopted by the early Christian community.
The Old Testament contains various genres of literature, including historical narratives, laws, poetry, wisdom literature, and prophetic writings.
Bo Lim describes prophets in the Old Testament story of Israel as intermediaries, God's messengers, and poets.
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Which characteristic would atoms of a ferromagnetic material have?A. A lack of electrons B. North and south poles C. A temporary magnetic field D. The ability to attract nonmagnetic materials
Answer:
Option B
Explanation:
Atoms of ferromagnetic materials have north and south pole but these atoms are oriented in random directions due to which they do no exhibit magnetic properties until unless they are brought into influence of any external temporary or permanent magnetic field.
Under the influence of external magnetic force, the atoms of the ferromagnetic material get oriented in a particular direction.
Hence, option B is correct
An article that discusses pharaohs and gives examples and explains how they look. Which text structure is that?
The correct answer to this open question is the following.
The text structure of an article that discusses pharaohs and gives examples and explains how they look is a description.
The text structure called description allows the reader to fully know the characteristics of the people it is referring to, including some important details. That is why the author of a description text adds words like "such as" and "for example."
When describing something, the write is giving structure to the text and sequence. What comes first., what is followed, and so on.
That is why The text structure of an article that discusses pharaohs and gives examples and explains how they look is a description. It includes cause and effect sentences, and some comparisons in order to contrast an idea.
In Value Engineering (VE) what does the acronym TIPS stand for
and what is its primary focus?
TIPS is an acronym in Value Engineering (VE) that stands for Technique, Information, Product, and Schedule.The primary focus of the TIPS approach is to improve the performance of the product or service by using creative and innovative methods to achieve the same results at a lower cost.
It is used to achieve a significant increase in the value of a product or service while lowering its cost. The primary focus of the TIPS approach is to improve the performance of the product or service by using creative and innovacronymative methods to achieve the same results at a lower cost.
Value Engineering (VE) is a systematic approach that is used to improve the value of a product or service. It is a method that is used to optimize the function and cost of a product or service by analyzing its various components and identifying ways to improve its performance while reducing its cost. The goal of value engineering is to achieve the highest possible value for a product or service while minimizing its cost.
TIPS is an acronym that stands for Technique, Information, Product, and Schedule. It is an approach that is used in Value Engineering to improve the performance of a product or service while lowering its cost.
The primary focus of the TIPS approach is to use innovative and creative methods to achieve the same results at a lower cost. By using this approach, a product or service can be optimized to achieve maximum value while minimizing its cost.
TIPS is used in Value Engineering to:Identify techniques that can be used to improve the performance of a product or serviceIdentify information that is needed to improve the performance of a product or serviceIdentify ways to optimize the product or service to improve its value while reducing its costIdentify ways to schedule the work to achieve the best possible results in the shortest possible time.
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Which of the following characteristics of an object-oriented programming language restricts behavior so that an object can only perform actions that are defined for its class?
Polymorphism
Inheritance
Encapsulation
Programmers who use object-oriented methods consider in terms of a class instance that has its own properties and behaviours, which is how they vary from those who use procedural methods.
Procedural programming tackles applications by managing difficulties using a top-down method where it solves problems from the top of the code and to the bottom, whereas object-oriented programming is known to be one that employs classes and objects. A programming design strategy known as procedural programming attempts to break down clearly specified tasks into modules, functions, etc. In object-oriented programming, objects are only the individual parts of a programme. The (c) Method defines the behaviour of objects. The behaviour of objects is defined through methods, which are merely functions and subroutines. Consider the following approach, for instance: Public static int (int I Fibonacci
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an emt called to the scene of a multiple-vehicle collision has:
An EMT (Emergency Medical Technician) called to the scene of a multiple-vehicle collision has a critical role in providing immediate medical care to those who have been injured. In such a situation, the EMT must quickly assess the scene and prioritize patients for treatment based on the severity of their injuries.
The EMT's first priority is to ensure that the scene is safe for both the victims and the medical personnel. They will assess each patient to determine the extent of their injuries and provide any necessary emergency care, such as stabilizing fractures, controlling bleeding, or assisting with breathing.
In cases of multiple injuries, the EMT will also need to communicate effectively with other emergency personnel on the scene, including firefighters, police officers, and other medical professionals. The EMT may be required to coordinate transport of patients to local hospitals and ensure that the most critically injured are taken first.
Additionally, the EMT will need to maintain accurate records of all medical treatments provided, including vital signs, medications administered, and patient response to treatments. This information will be crucial for ongoing care and follow-up after the incident.
Overall, the EMT called to the scene of a multiple-vehicle collision plays a critical role in saving lives and preventing further harm to those who have been injured. Their quick thinking, professionalism, and expertise are essential in these high-stress situations.
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How can statistical analysis of a dataset inform a design process
I don't know how?
i hate it that it says 20 charcters long
40. AASHTO assumes a deceleration value in calculating SSD of:
a. 14 ft /sec2
b. 11.2 ft /sec2
c. 9.6 ft /sec2
d. 10.2 ft /sec2
AASHTO assumes a deceleration value in calculating stopping sight distance (SSD) of B. 11.2 ft/s^2. This doesn't take any road defects into account.
Please help with JAVA, this is an add on code the require is
Create an Edit Menu Add another JMenu to the JMenuBar called Edit. This menu should have one JMenuItem called Add Word. Clicking on the menu item should prompt the user for another word to add to the words already read from the file. The word, if valid, should be added to the proper cell of the grid layout. All the other cells remain the same. Read from a file that has multiple words on a line The input file will now have multiple words on a line separated by spaces, commas and periods. Use either a Scanner or a String Tokenizer to separate out the words, and add them, if valid, to the appropriate cells of the grid layout. Invalid words, once again, get displayed on the system console.
import javax.swing.*;
import java.awt.event.*;
import java.io.*;
public class project3 extends JFrame implements ActionListener{
JMenuBar mb;
JMenu file;
JMenuItem open;
JTextArea ta;
project(){
open=new JMenuItem("Open File");
open.addActionListener(this);
file=new JMenu("File");
file.add(open);
mb=new JMenuBar();
mb.setBounds(0,0,800,20);
mb.add(file);
ta=new JTextArea(800,800);
ta.setBounds(0,20,800,800);
add(mb);
add(ta);
}
public void actionPerformed(ActionEvent e) {
if(e.getSource()==open){
JFileChooser fc=new JFileChooser();
int i=fc.showOpenDialog(this);
if(i==JFileChooser.APPROVE_OPTION){
File f=fc.getSelectedFile();
String filepath=f.getPath();
try{
BufferedReader br=new BufferedReader(new FileReader(filepath));
String s1="",s2="";
while((s1=br.readLine())!=null){
s2+=s1+"\n";
}
ta.setText(s2);
br.close();
}
catch (Exception ex) {ex.printStackTrace(); }
}
}
}
public static void main(String[] args) {
project3 om=new project3();
om.setSize(500,500);
om.setLayout(null);
om.setVisible(true);
om.setDefaultCloseOperation(EXIT_ON_CLOSE);
}
}
The above is the code I had now if it can helps. Thank You.
The JAVA code for creating Edit Menu Add another J Menu to the J Menu Bar called Edit .
JAVA Code :
import javax.swing.*;
import java.awt.event.*;
import java.io.*;
public class project3 extends JFrame implements ActionListener{
JMenuBar mb;
JMenu file;
JMenuItem open;
JTextArea ta;
project(){
open=new JMenuItem("Open File");
open.addActionListener(this);
file=new JMenu("File");
file.add(open);
mb=new JMenuBar();
mb.setBounds(0,0,800,20);
mb.add(file);
ta=new JTextArea(800,800);
ta.setBounds(0,20,800,800);
add(mb);
add(ta);
}
public void actionPerformed(ActionEvent e) {
if(e.getSource()==open){
JFileChooser fc=new JFileChooser();
int i=fc.showOpenDialog(this);
if(i==JFileChooser.APPROVE_OPTION){
File f=fc.getSelectedFile();
String filepath=f.getPath();
try{
BufferedReader br=new BufferedReader(new FileReader(filepath));
String s1="",s2="";
while((s1=br.readLine())!=null){
s2+=s1+"\n";
}
ta.setText(s2);
br.close();
}
catch (Exception ex) {ex.printStackTrace(); }
}
}
}
public static void main(String[] args) {
project3 om=new project3();
om.setSize(500,500);
om.setLayout(null);
om.setVisible(true);
om.setDefaultCloseOperation(EXIT_ON_CLOSE);
}
}
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A function is different from a procedure because a functiondoes not contain a set of instructions.can have only a limited number of steps.returns a value.is mathematical.
Answer: A function returns a value and a procedure just executes commands.
Explanation:
Answer:
c - returns a value.
Explanation:
on edge pls mark brainiest
Consider the following data for 2008 in a small suburban community:
1. number of accidents: 360 fatal 10 injury 36 pdo 314
2. number of fatalities 15
3. area population: 50,000
4. registered vehicles 35,000
5. annual vmt: 12,000,000
6. average speed 30 mi/hr
compute all relevant exposure and population based accident and fatality rates for this data. compare these to national norms for the current year. (hint: use the internet to location current national norms)
Answer:
Motorcyclist Fatality and Injury Rates per Vehicle Miles Traveled, 1998-2008. 10. 9. Fatalities in School Transportation Related Crashes,. 1998-2008.
Explanation:
A brass alloy is known to have a yield strength of 275 MPa (40,000 psi), a tensile strength of 380 MPa (55,000 psi), and an elastic modulus of 103 GPa (15.0×106 psi). A cylindrical specimen of this alloy 5.4 mm (0.21 in.) in diameter and 225 mm (8.87 in.) long is stressed in tension and found to elongate 6.8 mm (0.27 in.). On the basis of the information given, is it possible to compute the magnitude of the load that is necessary to produce this change in length? If not, explain why.
Answer:
The magnitude of the load can be computed because it is mandatory in order to produce the change in length ( elongation )
Explanation:
Yield strength = 275 Mpa
Tensile strength = 380 Mpa
elastic modulus = 103 GPa
The magnitude of the load can be computed because it is mandatory in order to produce the change in length ( elongation ) .
Given that the yield strength, elastic modulus and strain that is experienced by the test spectrum are given
strain = yield strength / elastic modulus
= 0.0027
Consider a mixing tank with a volume of 4 m3. Glycerinflows into a mixing tank through pipe A with an average velocity of 6 m/s, and oil flow into the tank through pipe B at 3 m/s. Determine the average density of the mixture that flows out through the pipe at C. Assumeuniform mixing of the fluids occurs within the 4 m3 tank.
This question is incomplete, the complete question as well as the missing diagram is uploaded below;
Consider a mixing tank with a volume of 4 m³. Glycerin flows into a mixing tank through pipe A with an average velocity of 6 m/s, and oil flow into the tank through pipe B at 3 m/s. Determine the average density of the mixture that flows out through the pipe at C. Assume uniform mixing of the fluids occurs within the 4 m³ tank.
Take \(p_o\) = 880 kg/m³ and \(p_{glycerol\) = 1260 kg/m³
Answer:
the average density of the mixture that flows out through the pipe at C is 1167.8 kg/m³
Explanation:
Given that;
Inlet velocity of Glycerin, \(V_A\) = 6 m/s
Inlet velocity of oil, \(V_B\) = 3 m/s
Density velocity of glycerin, \(p_{glycerol\) = 1260 kg/m³
Density velocity of glycerin, Take \(p_o\) = 880 kg/m³
Volume of tank V = 4 m
from the diagram;
Diameter of glycerin pipe, \(d_A\) = 100 mm = 0.1 m
Diameter of oil pipe, \(d_B\) = 80 mm = 0.08 m
Diameter of outlet pipe \(d_C\) = 120 mm = 0.12 m
Now, Appling the discharge flow equation;
\(Q_A + Q_B = Q_C\)
\(A_Av_A + A_Bv_B = A_Cv_C\)
π/4 × (\(d_A\))²\(v_A\) + π/4 × (\(d_B\) )²\(v_B\) = π/4 × (\(d_C\))²\(v_C\)
we substitute
π/4 × (0.1 )² × 6 + π/4 × (0.08 )² × 3 = π/4 × (0.12)²\(v_C\)
0.04712 + 0.0150796 = 0.0113097\(v_C\)
0.0621996 = 0.0113097\(v_C\)
\(v_C\) = 0.0621996 / 0.0113097
\(v_C\) = 5.5 m/s
Now we apply the mass flow rate condition
\(m_A + m_B = m_C\)
\(p_{glycerin}A_Av_A + p_0A_Bv_B = pA_Cv_C\)
so we substitute
1260 × π/4 × (0.1 )² × 6 + 880 × π/4 × (0.08 )² × 3 = p × π/4 × (0.12)² × 5.5
1260 × 0.04712 + 880 × 0.0150796 = p × 0.06220335
59.3712 + 13.27 = 0.06220335p
72.6412 = 0.06220335p
p = 72.6412 / 0.06220335
p = 1167.8 kg/m³
Therefore, the average density of the mixture that flows out through the pipe at C is 1167.8 kg/m³
Select all the correct answers. What are two reasons why the terrestrial planets formed closer to the sun after a supernova event that initiated the formation of the solar system?
With appropriate sketches, show how the Analysis, Plan and Measure (APM) technique may be used to troubleshoot any electronic device or system. You may choose your own electronic device or system. You may give your answer in point form, rather than as an essay?
Answer: Open this link : https://www.eit.edu.au/resources/practical-troubleshooting-of-electronic-circuits-for-engineers-and-technicians/
Explanation:
A milling machine can do all of the following tasks except
A. machine flat and contoured surfaces
b. rotate a multitoothed cutter into the workpiece to remove material
c. machine threads, gears, and spirals
d. ream a highly accurate hole with a fine finish
Note that a milling machine can do all of the following tasks except: " ream a highly accurate hole with a fine finish" (Option D).
What is a milling machine?A milling machine is a tool that is used to machine flat and contoured surfaces, and it can also be used to rotate a multitoothed cutter into the workpiece to remove material. It is also capable of machining threads, gears, and spirals.
However, a milling machine is not typically used to ream holes, as reaming is a finishing operation that is usually done with a reamer, which is a specialized tool designed for this purpose. Reaming is used to create highly accurate holes with a fine finish, and it is typically done after the hole has been drilled or milled to its rough size.
There are several advantages to using a milling machine, including:
Versatility: Milling machines can be used to machine a wide range of parts and materials, including flat and contoured surfaces, threads, gears, and spirals.
Precision: Milling machines are capable of producing highly precise parts, as they can be accurately positioned and controlled using computer numerical control (CNC) technology, etc.
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the competitive battles among rival sellers striving for better market positions, higher sales and market shares, and competitive advantage suggest the rivalry force multiple choice is stronger when firms strive to be low-cost producers than when they use differentiation and focus strategies. is often weak when rivals have emotional stakes in business or face high exit barriers. is largely unaffected by whether industry conditions tempt rivals to use price cuts or other competitive weapons to boost unit sales. tends to intensify when strong companies with sizable financial resources, proven competitive capabilities, and respected brand names hurdle entry barriers looking for growth opportunities and launch aggressive, well-funded moves to transform into strong market contenders. is weaker when more firms have weakly differentiated products, buyer demand is growing slowly, and buyers have moderate switching costs.
tends to intensify when strong companies with sizable financial resources, proven competitive capabilities, and respected brand names hurdle entry barriers looking for growth opportunities and launch aggressive, well-funded moves to transform into strong market contenders.
A competitive analysis, also known as a competitor analysis, evaluates your company's performance in relation to other companies in your market providing equivalent products or services.
A competitor study identifies each participant's operational strengths, substantive shortcomings, product offers, market dominance, and missed opportunities, according to David Taffet, CEO of Petal, and focuses on finding market competitors positioned to intrude on your potential.
These are some ways competitor analyses aid in business improvement:
Determine your areas of strength and weakness.Recognize the environment you work in.Analyze the trends in your industry.Make plans for future expansion.To know more about competitive:
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The process of designing green buildings is called Design
Explanation:
Also known as sustainable design, this approach integrates the building life-cycle with each green practice employed with a design-purpose to create a synergy among the practices used. ... The essence of green building is an optimization of one or more of these principles.
which of the following is a function of a safety device
Answer:
what are the options available?
In the fully developed region of flow in a circular pipe, does the velocity profile change in the flow direction?
Answer:
No, the velocity profile does not change in the flow direction.
Explanation:
In a fluid flow in a circular pipe, the boundary layer thickness increases in the direction of flow, until it reaches the center of the pipe, and fill the whole pipe. If the density, and other properties of the fluid does not change either by heating or cooling of the pipe, then the velocity profile downstream becomes fully developed, and constant, and does not change in the direction of flow.
Consider a simple ideal Rankine cycle and an ideal regenerative Rankine cycle with one open feedwater heater. The two cycles are very much alike, except the feedwater in the regenerative cycle is heated by extracting some steam just before it enters the turbine. Hence, the simple ideal Rankine cycle is more efficient than the ideal regenerative Rankine cycle. How would you compare the efficiencies of of these two cycles?
Answer:
They both have the same efficiency.
Explanation:
The simple ideal Rankine cycle and an ideal regenerative Rankine cycle with one open feedwater heater would both have the same efficiency because the extraction steam would just create a mini cycle that recirculates. The energy given to the feedwater heater is proportional to the added heat in the boiler to the feedwater in the simple cycle to raise its temperature to the same boiler inlet condition.
Therefore in comparison, the efficiency is the same for both.
A chef needs 20 walnuts for a recipe and has to crack each one. the effort force is 4.1inches from the fulcrum and the walnut sits 2.2inces from the fulcrum. if the chef can only apply 7lb of force, what is the maximum amount of resistance force the walnut can apply in order for the nut to be cracked? answer should be to the nearest (0.0)
The calculated answer is 4 kgf. The greatest resisting force that the walnut may exert before the nut cracks
In physics, resistive force is a a type of force, or the vector sum of the various forces, whose direction is opposite to the motion of a body, and may refer to: Friction, during sliding and/or rolling. During moving through a fluid, drag (physics) (see fluid dynamics). For all compression positions, the direction of specific deformation as a function of shell thickness and geometric mean diameter was identical to the direction of energy.
If load is 40 kgf and effort is?
effort arm=20 cm, load arm=2 cm
By the moments' principle,
effort arm equals load arm.
40kgf×2cm=E×10cm
∴E=40×220kgf=4kgf.
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