Direct-tension tests use the kind of test specimens known as D. Round tensile specimens
What is a Direct-tension test?A direct-tension test, also known as a tension test or a tensile test, is a type of mechanical test used to determine the material's strength and behavior under tension loads.
The test specimen is typically a cylindrical or round shape and is placed in a tensile testing machine. The machine applies a load to the specimen in one direction, stretching it until it fractures.
The load, elongation, and other data are recorded during the test, and from these data, the material's properties such as ultimate tensile strength (UTS), yield strength, and modulus of elasticity can be determined.
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How should you approach the dock when docking your vessel? A. Into the wind or current, whichever is stronger B. With the wind or current, whichever is stronger C. At regular operating speed without slowing down D. Between other vessels in heavy traffic.
The best way to approach the dock when docking your vessel is A. Into the wind or current, whichever is stronger
What is a Dock?This refers to the term that is used to describe and define the area of water between or close to one or more man-made structures that are used to handle boats, ships, or similar objects
Hence, it can be seen that according to maritime laws, it is expected that when docking a vessel, one should approach into the wind or current, whichever is stronger
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15.26 given the furnace wall and other conditions as specified in problem 15.25, what thickness of celotex (k 0.065 w/m k) must be added to the furnace wall in order that the outside surface temperature of the insulation not exceed 340 k?
"6.4 cm" must be added to the furnace wall in order that the outside surface temperature of the insulation not exceed 340 k
Does the insulation's temperature not exceed 340 k?The values are as follows:
Length, l = 0.2 m
Thermal conductivity,
K₁ = 1.82 W/m-K
K₂ = 0.095 W/m-K
Temperature,
T = 950 K
T = 300 K
Heat transfer rate,
Q = 830 W/m²
When the insulation thickness is greater than the critical value?The term "critical radius" refers to the insulation radius at which the rate of heat flow is highest and the resistance to heat flow is lowest. Additionally, it begins to decrease after the critical insulation thickness.
Which high-temperature insulation is used?For temperatures up to 1200 degrees Fahrenheit, fiberglass has excellent flexibility and dimensional stability. Fiberglass is easy to use and does not corrode the metals it protects. Fiberglass is one of the most widely used materials for insulation and is utilized in numerous everyday tasks.
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From the following list, select all of the devices to which the Clausius statement of the second law directly applies
a) Coal-fired power plant
b) Heat pump
c) Air conditioner
d) Automobile engine
Answer:
a) Coal-fired power plant
b) Heat pump
c) Air conditioner
Answer:I hope this helps let me know if I can wrong
Explanation:
b) Heat pumpc) Air conditioner
The Clausius statement is expressed as: it is impossible to construct a device that operates in a cycle and produces no effect other than the transfer of heat from a lower-temperature body to a higher-temperature body
Which of the following codes and standards groups is a private, non-profit organization that identifies public requirements for national safety, engineering, and industrial standards?
A. National Safety Council
B. American National Standards Institute
C. International Conference of building officials
D. the International fire code Institute
The American Medical Association, the National Organization for Women, and the National Conference of Mayors.
Economic interest is the stake that a person or organization has in the prosperity of a specific industry, location, or activity. It could be used to describe anticipated financial gains or returns or the desire to preserve or advance a specific economic system. It can also refer to any force or drive that persuades a person or group to do something that will bring them financial gain. Every year, individuals from all over the country come together at the National Conference to talk about problems that are important to the whole country, including public policy, the economy, education, and healthcare. Organizations like political parties, think institutes, or advocacy groups frequently arrange it.
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A vineyard owner is planting several new rows of grapevines, and needs to know how many grapevines to plant in each row. She has determined that after measuring the length of a future row, she can use the following formula to calculate the number of vines that will fit in the row, along with the trellis end-post assemblies that will need to be constructed at each end of the row:
V = R – 2E / S
The terms in the formula are:
V is the number of grapevines that will fit in the row.
R is the length of the row, in feet.
E is the amount of space, in feet, used by an end-post assembly.
S is the space between vines, in feet.
Write a program that makes the calculation for the vineyard owner. The program should ask the user to input the following:
• The length of the row, in feet
• The amount of space used by an end-post assembly, in feet
• The amount of space between the vines, in feet
Once the input data has been entered, the program should calculate and display the number of grapevines that will fit in the row.
The row's length, measured in feet. The square footage (in feet) occupied by an end-post assembly
A vineyard owner needs to know how many grapevines to plant in each row as they prepare to plant numerous more rows. She has discovered that after measuring the length of a future row, she can use the formula shown below to determine how many vines will fit in the row as well as the number of trellis end-post assemblies that will need to be built at each end of the row: The formula's terms are: The maximum number of grapevines that can fit in a row is V. R is the row's length in feet. E is the end-post assembly's space requirement, expressed in feet. S is the distance in feet between vines.
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Imagine that NASA has funding for only one telescope. The three following proposals are submitted. Which one will be most successful?a. an X-ray telescope located in Antarcticab. a radio telescope in space that orbits Earthc. a near-infrared telescope on a mountaintop inChile
The most successful proposal is likely to be the radio telescope in space that orbits Earth.
This is because a radio telescope in space is able to observe signals from farther away, including from galaxies and objects outside our own. Additionally, it is not limited by the weather or other environmental factors on Earth, as space-based telescopes are able to operate uninterrupted. This makes it an ideal choice for NASA's limited funding.
NASA, or the National Aeronautics and Space Administration, is the United States government agency responsible for the civilian space program, as well as aeronautics and aerospace research. NASA was established in 1958, and since then it has been responsible for a number of revolutionary advancements in space exploration, including the first human landing on the moon and the development of the Space Shuttle.
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note: if you re-upload the files, you must re-upload all files as the system keeps the most recent uploaded submission only. no zip files! note 2: never hard-code test data in the test program, unless explicitly stated in the assignment. always allow the user to enter the test data using menu option. note 3: code documentation. in addition to the author header at the top of each file, please include a comment block before each method explaining the method and what it does. add in-line comment to explain the code within the method. the goal of this assignment is to reinforce recursive thinking and writing recursive code. program
The method through which software developers document their code is known as code documentation.
What is good documentation for code?
The method through which software developers document their code is known as code documentation. The description of what a codebase does and how it may be used combines written explanations with crystal-clear illustrations.
It makes code more readable, reproducible, and usable. Short-form notes will do to capture details without disrupting your coding session flow, even though you will want to explain things to yourself in longer form later. Write down the commands, choices, and sources you use in a document that is open next to your code.
The four types of documentation are as follows: tutorials with a learning focus, goal-oriented, instruction manuals, discussions focused on understanding, reference material with a focus on information.
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true/false. for this system to be useful, the radio signal must notremain null when the plane is flying in any other direc-tion near the airstrip, and should also increase as rap-idly as possible away from zero as distance between the airpla
The phrase "When a hypothesis test's sample mean is relatively far from zero.
In general, you should draw the conclusion that the null hypothesis is false when the p-value is less than or equal to your significance threshold. The alternative hypothesis, which suggests that the effect might be present in the population at large, is supported by your findings from the sample. As a mnemonic, keep in mind that the null hypothesis must be rejected when the p-value is low. It is incorrect to say that one should reject the null hypothesis when the sample means in a hypothesis test are significantly far from 0. Below, this is further discussed. As a mnemonic, keep in mind that the null hypothesis must be rejected when the p-value is low.
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Desiccant failures arise when the system is left open for long periods of time and the
desiccant:
absorbs too much moisture.
becomes to dusty and dirty.
dries out too much.
is exposed to sunlight.
Desiccant failures can occur when the system is left open for long periods of time, allowing the desiccant to absorb too much moisture,
Desiccant failure refers to the inability of a desiccant material to effectively remove moisture from a system.
This can happen due to a variety of reasons such as the desiccant being saturated with moisture, becoming clogged with dust or dirt, becoming too dry, or being exposed to UV radiation.
This can lead to issues such as corrosion, mold growth, and reduced efficiency of the system.
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Element-wise division: Convert pounds to kilograms Assign row array weightKilo with the corresponding weight in kilograms. Use the following conversion: kg = lb / 2. 2 Function Save Reset MATLAB DocumentationOpens in new tab function weightKilo = ConvertToKilo(weightPounds) % weightPounds: Row array of weights in pounds % Assign weightKilo with the corresponding weight in kilograms weightKilo = weightPounds; end 1 2 3 4 5 6 7 Code to call your function
Go to the Home tab and select NewScript or New Live Script to create a script or live script with local functions.
How should you use functions in a MATLAB script ?
Go to the Home tab and select NewScript or New Live Script to create a script or live script with local functions. Then paste the code into the file. After the script code, place any local functions at the end of the file.
Add at least one line of script before the local functions.
Function weight Kilo = Convert to Kilo (weight Pounds)
weight Pounds: array of lines with weights in pounds
weight Assign kilo from corresponding weight in kilogram
weight Kilo weight lbs/2.2 ; divides each element of the Pounds Weight array by 2.2.
End.
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Two 10
c
m
-long thin glass rods uniformly charged to +
12
n
C
are placed side by side, 4.0
c
m
apart. What are the electric field strengths E1, E2, and E3 at distances 1.0
c
m
, 2.0
c
m
, and 3.0
c
m
to the right of the rod on the left, along the line connecting the midpoints of the two rods?
a) Specify the electric field strength E1.
b) Specify the electric field strength E2.
c) Specify the electric field strength E3.
The 3 electric field strengths are
a) E1 = 4800 N/C, b) E2 = 2400 N/C , c) E3 = 0 N/C
What is Coulomb's Law?
This question can be solved using Coulomb's Law.
Coulomb's Law states that the force of attraction or repulsion between two charged particles is given by the equation F = k*q1*q2/r^2,
where k is the Coulomb Constant (8.99 x 10^9 Nm^2/C^2), q1 and q2 are the charges of the two particles, and r is the distance between them.
First, we need to calculate the electric field strength at each of the given distances (1.0 cm, 2.0 cm, and 3.0 cm).
To do this, we can use the equation E = k*q/r^2,
where k is the Coulomb Constant (8.99 x 10^9 Nm^2/C^2), q is the charge of the rod, and r is the distance between the rod and the point of interest.
For E1, we can calculate the electric field strength at 1.0 cm to the right of the rod on the left as follows:
E1 = 8.99 x 10^9 Nm^2/C^2 * 12 N/C / (0.01 m)^2
= 8.99 x 10^11 N/C
= 8990 x 10^6 N/C
= 4800 N/C
For E2, we can calculate the electric field strength at 2.0 cm to the right of the rod on the left as follows:
E2 = 8.99 x 10^9 Nm^2/C^2 * 12 N/C / (0.02 m)^2
= 4.495 x 10^11 N/C
= 4495 x 10^6 N/C
= 2400 N/C
For E3, we can calculate the electric field strength at 3.0 cm to the right of the rod on the left as follows:
E3 = 8.99 x 10^9 Nm^2/C^2 * 12 N/C / (0.03 m)^2
= 2.997 x 10^11 N/C
= 2997 x 10^6 N/C
= 0 N/C
Therefore, the electric field strengths E1, E2, and E3 at distances 1.0 cm, 2.0 cm, and 3.0 cm to the right of the rod on the left, along the line connecting the midpoints of the two rods are 4800 N/C, 2400 N/C, and 0 N/C, respectively.
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Select the correct answer. Carmela wants to take out a loan for a car. Which benefit will Carmela receive if she makes a down payment when she obtains the loan? A. A decrease in the total cost of the loan B. No penalties for late payments C. An increase in the loan term D. An increase in the principal amount
Answer:
A) a decrease in the total cost of the loan
Explanation:
Which is the most likely reason that using energy generated from wind is better for air quality than burning fossil fuels?
a. the equipment for harnessing wind is inexpensive
b. wind produces less pollution than fossil fuels
c. energy from wind power is easy to store
d. wind is more efficient than fossil fuels
In addition to lowering carbon dioxide emissions and overall air pollution, wind turbines may also reduce the amount of power produced using fossil fuels.
Explain about the burning fossil fuels?Large volumes of carbon dioxide, a greenhouse gas, are released into the atmosphere when fossil fuels are burned. Global warming is a result of greenhouse gases' ability to trap heat in our atmosphere. One degree Celsius has already been added to the average world temperature.
In order to produce energy, coal, natural gas, and oil are referred to as "fossil fuels." This energy is used to produce electricity, as well as to power industrial activities, as well as transportation (such as cars and aeroplanes).
Air pollution, water pollution, and climate change are three negative consequences of burning fossil fuels. The byproducts produced when fossil fuels are consumed are what cause these impacts.
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given string inputstr on one line and integer strindex on a second line, change the character at index strindex of inputstr to 'b'. ex: if the input is: eagle 0 then the output is: bagle note: assume the length of string inputstr is greater than strindex.
You can add code to the function Find Chars() that counts how many times the character "x" appears in the string "input String" and returns this count as the function's output.
In this version, each character in the string "input String" is iterated over using a for loop, and a conditional statement (if) is used to determine whether the current character is equal to "x." If so, one is added to the count. The function returns the final count as its output when the loop is finished. When called from the main function, this method should accurately count the number of times "x" appears in "input String" and return the result. You can add code to the function Find Chars() that counts how many times the character "x" appears in the string "input String" and returns this count as the function's output.
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perform the calculations and describe the method used to prepare 5 l of 50x tae buffer using a solid form of tris and edta and a liquid form of acetic acid. the recipe for tae can be found on the internet
TAE buffer is commonly prepared as a 50× stock solution for laboratory use. A 50× stock solution can be prepared by dissolving 242 g Tris base in water, adding 57.1 ml glacial acetic acid, and 100 ml of 500 mM EDTA (pH 8.0) solution, and bringing the final volume up to 1 liter.
What is Tea Buffer?It is typically employed in agarose electrophoresis in molecular biology to separate nucleic acids like DNA and RNA. It is composed of EDTA, which binds to divalent cations, and Tris-acetate buffer, which is typically at a pH of 8.3. Although linear, double-stranded DNA moves more quickly in TAE than it does in TBE, TAE has a smaller buffer capacity and is more easily depleted.
Nucleic acids in agarose and polyacrylamide gels are electrophoresed using Thermo Scientific 50X TAE Buffer (Tris-acetate-EDTA). This buffer can be used as a running buffer or a gel preparation buffer, and it can be used for both genomic and big supercoiled DNA.
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For usage in laboratories, TAE buffer is frequently produced as a 50 stock solution.
Explain about the Tae Buffer?Molecular biologists commonly use it to separate nucleic acids like DNA and RNA during agarose electrophoresis. It is made up of EDTA, which binds to divalent cations, and Tris-acetate buffer, which normally has a pH of 8.3. Although linear, double-stranded DNA flows through TAE more quickly than it does via TBE, TAE has a smaller buffer capacity and is more susceptible to depletion.
Using Thermo Scientific 50X TAE Buffer, nucleic acids in agarose and polyacrylamide gels are electrophoresed (Tris-acetate-EDTA). Both genomic and large supercoiled DNA can be used with this buffer, which can also be used as a running buffer or a gel preparation buffer.
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Which action can cause an increase in density that results in a deep ocean current?
Choose the correct answer.
The sun heats the water’s surface.
A warm wind blows across cold water.
An iceberg melts, adding fresh water to ocean water.
Warm water loses energy to its surroundings and cools
Answer:
An iceberg melts, adding fresh water to ocean water.
take in a string from the user and split it into an array of single characters. split the list of characters into a list of lists where each inner list has 3 elements. notice that the last inner array may have fewer than 3 element
The split() method splits a string into an array of substrings. The split() method returns the new array. The split() method does not change the original string. If (" ") is used as separator, the string is split between words.
How do split a string into characters?Following are the program in Java Programming language
import java. util.*; //import package.
public class Main //define class main
{
public static Array List<Character>to Character Array(String s) //define function
{
Array List<Character> o b = new Array List<Character>(); //create Array List object.
for(char ch1: s.to Char Array())// iterating over the loop
{
ob. add(ch1); //add Character in list.
}
return o b; //return the object I. e return the value
}
public static void main(String arcs[]) // main method.
{
String str; // variable declaration.
int I; //define variable.
Scanner ob1 = new Scanner(System.in); //creating scanner class object.
System .out. print("Enter any string: "); //message
str = ob1.nextLine();//input value in str variable.
Array List<Character> ob2 = to Character Array(str); //create Array List reference variable and call to Character Array() function
System. out. print("Elements of the character array list: ");//message
for(I = 0;i<ob2.size();I++) //loop
{
Output:
Enter any string: Stony Brook
Elements of the character array list: S t o n y B r o o k
Explanation:
In the above java program firstly we import the package. Then we define a class that is "Main". In this class we define a function that is "to Character Array()" function and pass a string variable that is "s". After that, we create an Array List class object that is "o b" and define a loop. The loop is used to take input value and return its value.Then we define a main function. In the main function, we define a variable that is "i" and "str".Finally create an Array List object and use the loop for print inserted value with a separate of one space.To learn more about string refers to;
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What does it mean when it says an unknown being has entered this world in Blox fruit?
An unknown being has appeared in this world..."
This message only appears on the 3rd sea. The raid boss Soul Reaper has been reborn.
What does the world mean?
The word "world" refers to all that is, the totality of reality or the totality of beings. Different realms have developed different ideas about the world of nature. While some ideas regard the world as one, others refer to "many worlds". "Some people see the world as one simple thing, while others see it as a complex system with many moving parts. The term "world" or "universe" in scientific Cosmology refers to "[t]he totality of all space and time; all that is, was, and will be".
Potential worlds, on the other hand, are described as complete and coherent ways that things in modality theories would have can.
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A polluted stream contaminated with agricultural run-off discharges into a lake. The lake contains 10 x 106 m² of water. The stream flows at 120 ft / min and contains 0.40 mg/L of phosphorous (P) and 0.01 ug / L of a regulated pesticide. A larger river flows into the lake with a flow rate of 24,000 ft/min containing 0.001 mg/L of P and no detectable levels of the pesticide. Assume phosphorous is a conserved pollutant and the herbicide as non-conserved with a decay coefficient k = 3.23 x 10-4 mindue to chemical destruction by sunlight in the lake. A river flows out of the lake at the opposite end. a. Assuming the lake is well mixed, calculate the steady state phosphorous concentration in the lake in units of ug / Land ppb (parts per billion) b. Assuming the lake is well mixed, calculate the steady state pesticide concentration in the lake in units of ug/L and ppt (parts per trillion). c. What is the residence time of water in the lake?
This type of calculation is called a mass balance calculation. Mass balance calculations are used to determine the steady-state concentrations of pollutants in a system as well as to calculate the residence time of water.
What is the residence time of water in the lake?The steady state phosphorous concentration in the lake in units of ug/L is 0.0032 ug/L and in parts per billion is 3.2 ppb. The steady state pesticide concentration in the lake in units of ug/L is 0.0011 ug/L and in parts per trillion is 11 ppt.The residence time of water in the lake is 4.5 hours.The steady state phosphorus concentration in the lake in units of ug/L is 0.012, and in parts per billion it is 12 ppb.The steady state pesticide concentration in the lake in units of ug/L is 0.0004, and in parts per trillion it is 0.4 ppt.The residence time of water in the lake is calculated by dividing the volume of the lake (10 x 106 m²) by the total flow rate into and out of the lake (24,000 ft/min + 120 ft/min). This gives a residence time of 4.17 hours.This means that, on average, it takes 4.17 hours for water to move through the lake and out the other end. The residence time is important in determining the amount of time pollutants will remain in the lake, as they will take the same amount of time to be flushed out.This is also important in determining how much time pollutants will have to be degraded and removed before exiting the lake.To learn more about Mass balance calculations refer to:
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The average amount of time that water (or any dissolved substance) spends in a certain lake is expressed by a calculated number known as lake retention time, also known as the residency time of lake water, water age, or flushing time.
What two elements influence the length of time a lake is submerged?The entire amount of the reservoir (the stock; typically stated as a mass or volume) and either the total rate of inflow (expressed in units of mass or volume per time) or outflow (expressed in units of mass or volume per time) can be used to calculate the residence time for water in a reservoir.
The amount of time it takes for all the water in a lake to completely replenish itself is known as the retention time. The retention times range amongst the Great Lakes. The retention duration for Lake Superior is far longer than the others, at 194 years as opposed to Lake Huron's 75 years.
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The brass tube AB (E 5 105 GPa) has a cross-sectional area of 140 mm2 and is fitted with a plug at A. The tube is attached at B to a rigid plate that is itself attached at C to the bottom of an aluminum cylinder (E 5 72 GPa) with a cross-sectional area of 250 mm2. The cylinder is then hung from a support at D. In order to close the cylinder, the plug must move down through 1 mm. Determine the force P that must be applied to the cylinder
In order to close the cylinder, the plug must move down through 1 mm.The force P that must be applied to the cylinder is 1.61 x 10⁶ N.
What is Hooke's Law?According to Hooke's Law, the force applied to an object is inversely proportional to its extension or compression. In this instance, the aluminum cylinder compression, which is 1 millimeter, is inversely proportional to the force P.
Hooke's Law is the basis of this question. The following are the procedure's steps:
1. Calculating the force required to move the plug down 1 mm is the first step.
The Young's Modulus and cross-sectional area of the brass tube AB, respectively, and the Young's Modulus and cross-sectional area of the aluminum cylinder, respectively, are used to calculate this force using the equation
P = (E₁A₁ + E₂A₂) x L.
2. The values for E₁, A₁, E₂, and A₂ must be determined next. The brass tube has a cross-sectional area of 140 mm², and its Young's Modulus is
5×105 GPa.
The aluminum cylinder has a cross-sectional area of 250 mm² and a Young's Modulus of
5×72 GPa.
3. Last but not least, we need to figure out the displacement, L. L is 1 mm in this case.
4. When these numbers are added to the equation, we get
P = (5 ×105 ×140 + 5×72×250) x 0.001,
which gives us a force of 1.61 x 10⁶ N.
P = (E₁A₁ + E₂A₂) x L
P = (5×105 ×140 + 5× 72× 250) x 0.001
P = 1.61 x 10⁶ N
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0 shows a tank within a tank, each containing air. pressure gage a, which indicates pressure inside tank a, is located inside tank b and reads 5 psig (vacuum). the u-tube manometer connected to tank b contains water with a column length of 10 in. using data on the diagram, determine the absolute pressure of the air inside tank b and inside tank a, both in psia. the atmospheric pressure surrounding tank b is 14.7 psia. the acceleration of gravity is g
The acceleration of gravity is g = 32.2 ft/s2.
Why pressure gage a reads 5 psig (vacuum)?Absolute pressure of air inside Tank B = 14.7 psia + 5 psia = 19.7 psiaAbsolute pressure of air inside Tank A = 14.7 psia + 0.43 psia = 15.1 psia (Calculation: Pb = Patm + ρgh, where Pb = absolute pressure inside Tank B, Patm = atmospheric pressure, ρ = density of water, g = acceleration of gravity, and h = height of water column = 10 in. = 0.83 ft. Thus, Pb = 14.7 psia + (62.4 lb/ft3)(32.2 ft/s2)(0.83 ft) = 14.7 psia + 5 psia = 19.7 psia. Similarly, Pa = 14.7 psia + (62.4 lb/ft3)(32.2 ft/s2)(-0.43 ft) = 14.7 psia + (-0.43 psia) = 15.1 psia, where Pa = absolute pressure inside Tank A, and h = -0.43 ft = difference in water column heights.)The pressure gage a reads 5 psig (vacuum) because the pressure inside tank b is less than the atmospheric pressure surrounding tank b. Since the water in the U-tube manometer is in contact with the air inside tank b, the height of the water column is 10 in, which corresponds to a pressure difference of 10 in. Hg, or 5 psig. Therefore, the absolute pressure inside tank b is 14.7 psia – 5 psig = 9.7 psia, and the absolute pressure inside tank a is 9.7 psia + 5 psig = 14.7 psia. This is the same as the atmospheric pressure surrounding tank b.In summary, the pressure gage a reads 5 psig (vacuum) because the pressure inside tank b is lower than the atmospheric pressure surrounding it. This is indicated by the height of the water column in the U-tube manometer, which is 10 in, corresponding to a pressure difference of 10 in. Hg, or 5 psig. The absolute pressure inside tank b is 9.7 psia and inside tank a is 14.7 psia.To learn more about the pressure gage a reads 5 psig (vacuum) refer to:
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The air pressure surrounding tank b is lower than the pressure inside tank b, the pressure gauge a reads 5 psig (vacuum). The water column in the U-tube manometer is 10 inches high, which translates to a pressure difference of 10 inches of mercury, or 5 psig, when the water is in contact with the air in tank b. As a result, the absolute pressure inside tank b is 14.7 psia minus 5 psig = 9.7 psia, whereas the absolute pressure inside tank an is 9.7 psia plus 5 psig = 14.7 psia. This is the same as the pressure in the air around tank b.
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If the pressure gauges read low pressure on the high side, high pressure on the low
side, or about equal pressures, what might it indicate?
The system may be low on refrigerant.
The compressor is not working fully.
There is a blockage in the low side of the system that is not allowing refrigerant
to pass.
There is a blockage on the high side or an airflow restriction across the
condenser.
Note that if the pressure gauges read low pressure on the high side, high pressure on the low side, or about equal pressures, what tthis might indicate is that "There is a blockage on the high side or an airflow restriction across the condenser." (Option D)
How can the above problem be resolved?A high-side obstruction or an airflow restriction over the condenser can be remedied by locating and eliminating the cause of the blockage or restriction.
This may include cleaning or replacing filthy filters, inspecting the condenser unit for debris, and inspecting for any other obstacles that may be restricting airflow.
A professional technician should be summoned if the system needs to be inspected and repaired.
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Coal is being discharged from a first conveyor belt at the rate of 120 kg/s. It is received at A by a second belt that discharges it again at B. Knowing that v1 = 3 m/s and v2 = 4.25 m/s and that the second belt assembly and the coal it supports have a total mass of 472 kg, determine the components of the reactions at C and D.
To determine the components of the reactions at C and D, we need to use the equations of motion. We can use these equations to calculate the components of the reactions at C and D.
To calculate the components of the reactions at C and D, we need to first calculate the acceleration of the second belt assembly and the coal it supports. This can be done by dividing the difference in velocities (v2-v1) by the time it takes for the coal to travel from A to B. We can then use this acceleration to calculate the forces in the x-direction and the y-direction. The forces in the x-direction will be equal to the mass times the acceleration in the x-direction, and the forces in the y-direction will be equal to the mass times the acceleration in the y-direction. We can then use these forces to calculate the components of the reactions at C and D.
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A car drives on a curved road that goes down a hill. The car's position is defined by the position vector,
r={?[30.0cos(?10.0t)]i+[30.0sin(?10.0t)]j?(Azt)k} ft
where Az=13.0ft/s. The image below shows the system projected onto the x–y plane. What are the car's velocity and acceleration vectors at this position?
For cars W and Z, the set of equations x=x0+v0xt+12axt2 and x=x0+v0xt+12axt2 could be used to determine where on the horizontal surface the two cars will collide.
Due to the fact that we know the automobiles will collide at the same moment, by solving for t in one equation and substituting the new expression for t into the other, all variables other than x will be known. A formula that connects two expressions with the equals sign to express the equality of the two is known as an equation. We will apply the equations X=X0+v0xt+12axt2 for car W and x=x0+v0xt+12axt2 for car Z to find the point on the horizontal surface where the two cars meet. The rationale is that we are aware that the two cars will collide at the same location and time.
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compute the alternating sum of all elements in an array. for example, if your program reads the input 1 4 9 16 9 7 4 9 11 then it computes
The Java-based method is as follows: for(int index = myarray.length-1;) public static void Array Reverse
(int Array[]) index greater than or equal to 0; index--) System.out print (Array "index" plus ");
How should the program be computed?The method public static void Array Reverse(int Array[]) is defined on this line.
This line iterates through the array from highest to lowest index for (int index = myarray.length-1; index>=0; index--)
The system prints the elements of the array in reverse. out. print(Mary [index]+");
Reverse(mar) array;However, before the method can be called, mar must be declared and filled in as an integer array. The reverse() method returns a reference to the same array in which the first array element is now the last and the last array element is now the first. In other words, the order of the array's elements will change in the opposite direction from what was stated earlier.
How can an array array be reversed?The most fundamental method for reversing an array is to iterate through it and swap its elements in such a way that they reverse the array—for example, swap the first element for the last, swap the second element for the second last, and so on—until we reach the middle of the array.
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how many centimeters are there in a length 32.7 inches ? express your answer in centimeters to three significant figures. activate to select the appropriates template from the following choices. operate up and down arrow for selection and press enter to choose the input value typeactivate to select the appropriates symbol from the following choices. operate up and down arrow for selection and press enter to choose the input value type nothing cm request answer sometimes you will need to change units twice to get the final unit that you want. suppose that you know how to convert from centimeters to inches and from inches to feet. by doing both, in order, you can convert from centimeters to feet. part b suppose that a particular artillery piece has a range r
In a length of 32.7 inches, there are 83.058 cm.
Explain about the centimeters?A centimetre is the unit of measurement for length in the metric system. One centimetre, which is equal to one hundredth of a metre, is denoted by the abbreviation "cm." Basically, 1 centimetre is equal to 0.01 metres, 10 millimetres, and 0.3937 inches.
An object's length is measured in centimetres, which are metric units of measurement. Cm is used to write it. Centimeters make up one metre. The length of a centimetre is 10 millimetres.
It is possible to refer to a centimeter as 10 millimeters. One centimeter about covers the width of a fingernail.
Inches should be multiplied by the conversion factor of 2.54.
So, 32.7 inches is 32.7 plus 2.54
= 83.1 580 millimeters
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what are you not allowed to do when building digital logic circuits? (multiple correct answers are possible. wrong answers will deduct points. group of answer choices
For the specified situation, the anticipated points are 5, 3.75, 2.5, 1.25, 0, and -1.25, respectively.
The area of mathematics known as probability is concerned with calculating the likelihood that a random event will occur. Any event's probability always falls inside the contiguous range [0,1] between 0 and 1. Probability values between 0 and 1 imply that an event will occur while values between 0 and 1 indicate that it won't. Due to that, there are five answers in all. Each accurate response earns 1 point, whereas each incorrect response earns 1/4 of a point. The following situations, Case 1, The responses are all accurate. The total number of points earned is therefore reported as 5 + 1 = 5. Case 2, One of the four options is incorrect.
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predict the temperature at which the saturation pressure is 1 atm (i.e., the normal boiling point) (in k) for pure di-tert-butylsilane based on extrapolating the antoine equation with the coefficients you determine
Water boils at a temperature of more than 100°C at pressures greater than 1 atm.
Explain about the saturation pressure?When water vapor and its condensed state are in thermodynamic equilibrium, that pressure is known as the saturation vapor pressure. Water would condense at pressures greater than the vapor pressure, whereas it would evaporate or sublimate at pressures lower than that.
The maximum pressure that water vapor can achieve at a particular temperature. This pressure is that of a vapor that is in equilibrium with its liquid (such as steam with water).
When the saturated vapor pressure of a liquid reaches the same level as its external pressure, it begins to boil. When that takes place, the liquid can begin to boil and vapor bubbles can start to appear all over the liquid.
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EXAMPLE 1. 8 A current of 30. 0 mA is to be divided into two branch
currents of 20. 0 mA and 10. 0 mA by a network with an equivalent
resistance equal to or greater than 10. 0 N. Obtain the branch resistances.
COTTITION 1 g
The resistance in the branch with a current of 20mA is 10 ohms, and the resistance in the branch with a current of 10mA is 20 ohms.
What is the resistance about?We can use Ohm's law, which states that the current through a conductor between two points is directly proportional to the voltage across the two points, and inversely proportional to the resistance between them, to solve for the branch resistances.
I = V / R
Let R1 be the resistance in the branch with a current of 20mA and R2 be the resistance in the branch with a current of 10mA.
We know that the total current flowing through the network is 30mA and the equivalent resistance is greater than or equal to 10 ohms.
R_eq = (R1 + R2) >= 10 ohms
We also know that the current flowing through the two branches is equal to the total current flowing through the network.
I = I1 + I2
30mA = 20mA + 10mA
Now we can use the above equations to find the resistance of the two branches.
R1 = V / 20mA
= 10 ohms
R2 = V / 10mA
= 20 ohms
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See correct question below
A current of 30 mA is to be divided into branch currents of 20mA and 10mA by a network with an equivalent resistance equal to or greater than 10 ohms. Obtain the branch resistances.
match the algorithm with the problem that it primarily solves drag and drop options on the right-hand side and submit. for keyboard navigation...show more press space or enter to grab transitive closure warshall's algorithm transitive closure press space or enter to grab single source / single destination a* search algorithm single source / single destination press space or enter to grab single source / single destination bellman-ford algorithm single source / single destination press space or enter to grab all sources / all destinations floyd's algorithm all sources / all destinations
In a single switched network with seven switches separating, it from the target host, the source host addresses the frame to the destination host.
When defining a rule, you can specify the source and destination hosts for the traffic pattern you're trying to match. These hosts must be supplied as IP addresses, which can be done in a variety of formats such as lists or CIDR ranges, as was discussed above when discussing Snort and Suricata settings. You'll notice that in the example rule we're using, we decide to create IP addresses using the $HOME NET and $EXTERNAL NET variables. If the rule cannot be limited to a particular group of hosts, the word "any" may be used to match any hosts. In a single switched network with seven switches separating, it from the target host, the source host addresses the frame to the destination host.
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