The amplitude of the output signal will depend on the values of static sensitivity and time constant. It cannot be calculated without knowing the exact values of static sensitivity and time constant.
To find the amplitude of the output signal of the first-order temperature sensor, we need to use the following formula:
Output signal amplitude = Input signal amplitude x Static sensitivity / √(1 + (2π x Time constant x Input signal frequency)^2)
Given that the temperature signal is:
T(t) = 100 + 20sin(2πt/10)
Where T is the temperature in degrees Celsius, t is time in seconds, and A = 20°C and f = 1/5 Hz.
We can see that the input signal amplitude is 20°C and the input signal frequency is 1/5 Hz. We are also given the static sensitivity and time constant of the temperature sensor.
Substituting the values in the formula, we get:
Output signal amplitude = 20 x static sensitivity / √(1 + (2π x time constant x 1/5)^2)
In general, a higher static sensitivity and a lower time constant will result in a higher amplitude of the output signal. Conversely, a lower static sensitivity and a higher time constant will result in a lower amplitude of the output signal.
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PROBLEM 1 (13 PTS)
Complete the timing diagram of the following circuit. G =GzG2G, Go = 1101, Q = Q3Q20.lo
Q3
Q.
1011
resetn
o
x
Po
D,
0
B o
P2
E
Do=XA
Di= da
clk
G2
G3
Go
&J
zzzzzzzzzzurrrrrr
clk
resetn
E
х
Q0000 10000 10001 01101111110 ;|||D||||
100 = -Qo
Answer:
what is that?
Explanation:
Write ARM assembly code to reverse the bits in a register. Use as few instructions as possible. Assume to register of interest is R3.
Sure, here's the ARM assembly code to reverse the bits in a register:
MOV R0, #32 ; initialize counter to 32
REV R3, R3 ; reverse the bits in R3
loop:
LSRS R1, R3, #31 ; get the rightmost bit of R3
ORRS R1, R1, R1, LSL #31 ; move it to the leftmost position
LSLS R3, R3, #1 ; shift R3 left by one bit
ORRS R3, R3, R1 ; set the rightmost bit of R3 to the value of R1
SUBS R0, R0, #1 ; decrement counter
BNE loop ; repeat until all 32 bits have been reversed
This code uses the REV instruction to quickly reverse the bits in the register, and then loops through each bit using shifts, masks, and logical operations to put them back in the reverse order. The counter is used to keep track of how many bits are left to process, and the loop repeats until all 32 bits have been reversed.
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what process is used to remove collodal and dissolved organic matter in waste water
Answer:
Aerobic biological treatment process
Explanation:
Aerobic biological treatment process in which micro-organisms, in the presence of oxygen, metabolize organic waste matter in the water, thereby producing more micro-organisms and inorganic waste matter like CO₂, NH₃ and H₂O.
Which items are NOT found on a
door?*
5 points
Cladding
Moulding
Weatherstrip
Check Strap
Striker
All of the above
None of the above
Answer:
None of the above cause thats what i put
Bejsickwnanciodkwbdjxiwnsnxbx
Answer:
is it a free point? or just a question if it is kindly respond
Can someone tell me what car year and model this is please
Answer:
i think 1844
Explanation:
2005 BMW 5 Series , that should be it
what does the mechanical energy of a system include?
Mechanical energy refers to the energy that a system possesses due to its motion or position. The mechanical energy of a system includes both potential energy and kinetic energy.
Potential energy is the energy that a system possesses due to its position, while kinetic energy is the energy that a system possesses due to its motion. The mechanical energy of a system can be calculated using the equation
E = K + P,
where E is the total mechanical energy, K is the kinetic energy, and P is the potential energy.
The mechanical energy of a system is conserved, which means that it cannot be created or destroyed but can only be transferred from one form to another. For example, when a ball is thrown into the air, it has both potential and kinetic energy. As it rises, its potential energy increases while its kinetic energy decreases. At the top of its trajectory, the ball has zero kinetic energy and maximum potential energy. As the ball falls back to the ground, its potential energy decreases while it's kinetic energy increases until it hits the ground, and all its mechanical energy is converted into heat and sound energy.
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Match each type of access point on the left with the wireless network architecture where it is commonly used on the right. Each type of access point may be used once, more than once, or not at all.
Independent access point infrastructure/ Intelligent AP, Hub-and-spoke infrastructure/ Lightweight AP, Distributed wireless mesh infrastructure/ Intelligent AP.
A WLAN, or wireless local area network, is created by an access point, which is often found in a large building or workplace. An access point transmits a WiFi signal to a predetermined region after being connected to a wired router, switch, or hub through an Ethernet cable. It's true that it depends on the requirements. While medium to big businesses and organizations will undoubtedly need a network of access points and switches, homeowners and small businesses may find routers to be the best (if not the only) answer. Devices are connected wirelessly using wireless access points. They function by sending out a signal that various objects can connect to.
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Need help fast 50 points Project: Creating a Morphological Matrix
Assignment Directions
A systematic way to view common functionality of an object's structure and components is through a morphological matrix. You are going to utilize this method to analyze a common household device (from the list below or your own idea). First, create the left-hand column by deciding on the parameters that allow the object to function normally. For example, a pencil sharpener has a blade and a housing unit to support the system. Use the parameters to describe the system. If the pencil sharpener is hand operated, list the parameter of hand turning (either the pencil itself in a small unit or a handle in a wall-mounted device). The parameter column can include specific structures in the device, power sources, or any other information you learned in the lesson. The right-hand columns will include the current methods used by the device to complete the parameter, as well as any other options that would satisfy the parameter. You must create at least two other options for each parameter.
While the matrix provides valuable information for an engineer, it is typically more technological than a client or decision team needs. Therefore, you will also need to complete a one- or two-page analysis of the device, including the current parameter solutions and any recommended alterations to a design. Each recommendation must be supported by information in the morphological matrix.
Here are some ideas of household devices that you can analyze:
can opener
bathroom or kitchen scale
doorknob assembly
stapler
Assignment Guidelines
a completed morphological matrix
each parameter must have at least three solutions
a written analysis of the device with supporting details from the matrix
Submission Requirements
One to two pages double spaced
Proper grammar and vocabulary is required.
Answer:
The fundamental difference between effective and less effective matrix organizations is whether the tension between different perspectives is creative or destructive. While various processes, systems and tools can help, what matters most is what top leadership says and does and how that flows through the organization in shared targets, clear accountabilities, live team interactions and team-building transparency and behaviors.
Getting matrix management right is linked inextricably to an organization’s culture - the only sustainable competitive advantage. Key components of a culture can be grouped into behaviors, relationships, attitudes, values and the environment.
Environment and values: Each organization has its own environment, context and bedrock values. Everyone needs to know what matters and why. Don’t try to do anything else until you’ve got that set.
Attitude is about choices: An organization’s overall strategy drives choices about which of its parts will be best in class (superior), world class (parity), strong (above average), or simplified/outsourced to be good enough. These choices help determine the need for a matrix and how best to design it.
Relationships and behaviors: This is why organizations have matrices. The most effective of them best balance focus and collaboration. They allow leaders and teams to build differential strengths and then work together to make the best possible decisions and scale enterprises with a creative tension that they could not do on their own.
My colleague Joe Durrett has worked all sides of matrix organizations in marketing at Procter & Gamble, sales and general management at Kraft General Foods and CEO of Information Resources, Broderbund Software and Advo. He has seen matrices at their best and at their worst and offered his perspective for this article along with his partners John Lawler and Linda Hlavac. The 12 ways to make matrix organizations more effective were built on their ideas.
Explanation:
Reassessment is performed to determine all of the following, EXCEPT:
A. whether or not the patient is deteriorating.
B. the patient's response to your treatment.
C. the nature of any newly identified problems.
D. the reason why the patient called EMS.
The correct answer is option D. Reassessment is performed to determine all of the following, EXCEPT the reason why the patient called EMS.
Reassessment is performed to determine all of the following, EXCEPT for the reason why the patient called EMS. The other three options are determined in a reassessment.
What is a reassessment?A reassessment is a physical examination and/or evaluation of a patient's condition in order to determine whether the patient's status has changed, if the patient has had any new signs or symptoms, and if the treatment that has been provided is effective or not. Reassessment is a key aspect of emergency medical services, and it is essential for ensuring that patients are provided with appropriate care.So, reassessment is performed to determine all of the following, EXCEPT the reason why the patient called EMS.
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Select the correct answer. The most frequent maintenance task for a car is: A. Oil changes B. Tire replacements C. Coolant changes D. Brake replacements
Answer:
A. Oil changes
Explanation:
It depends on the car and its usage and environment. Usually oil is supposed to be changed every few months, more often if the car is driven a lot. Coolant changes may be indicated as seasons change, so will generally occur less frequently than oil changes.
Tire and brake replacement depend on usage and driving habits. Some owners may never have to replace either one, if they trade their car every year or two. Folks who drive with their foot on the brake pedal may have to replace brakes relatively often.
The most frequent task is generally oil changes.
Answer:
A. Oil changesthe most frequent maintenance task for a carOne kilogram of air as an ideal gas executes a Carnot power cycle having a thermal efficiency of 50%. The heat transfer to the air during the isothermal expansion is 50 kJ. At the end of the isothermal expansion, the pressure is 574 kPa and the volume is 0.3 m3. Determine
(a) the maximum and minimum temperatures for the cycle in K;
(b) the pressure and volume at the beginning of the isothermal expansion in bar and m3 respectively;
(c) the work and heat transfer for each of the four processes in kJ.
Answer:
(a) the maximum and minimum temperatures for the cycle in K;
Maximum temprature = T1 = 600.05K
Minimum temprature = 300.03K
(b) the pressure and volume at the beginning of the isothermal expansion in bar and m3 respectively;
Pressure (P4) = 0.67842 bar
Volume (V4) = 1.2693\(m^{3}\)
(c) the work and heat transfer for each of the four processes in kJ.
\(W_{4-1}\) = -215.25 kJ
The answers are clearly explained in the below mentioned document.
Explanation:
Kindly download the below mentioned document, I have explained in quite detail in it. I hope it will help. Thanks.
pls help me right now!
9514 1404 393
Answer:
A. 15 cm²
B. 15 cm²
Explanation:
A. Original FormulaThe diagram shows the values of a, b, h. Put these in the original formula to find the area.
A = 0.5(a+b)h
A = 0.5(3 +7 cm)(3 cm) = 0.5(10 cm)(3 cm) = 15 cm²
__
B. Splitting MethodThe base of each triangle is half the difference between the two base lengths.
triangle base = (7 -3)/2 = 2 . . . cm
The area of a triangle is given by the formula ...
A = 0.5bh
A = 0.5(2 cm)(3 cm) = 3 cm²
The area of the central rectangle is given by ...
A = bh
A = (3 cm)(3 cm) = 9 cm²
Then the area of the trapezium is ...
A(triangle) +A(triangle) +A(rectangle) = A(trapezium)
(3 cm²) +(3 cm²) +(9 cm²) = A(trapezium) = 15 cm²
Two identical bulbs are connected to a 12-volt battery in parallel. The voltage drop across the first bulb is 12 volts as measured with a voltmeter. What is the voltage drop across the other bulb?
Answer:
12 volts
Explanation:
The voltages across parallel-connected items are identical. (In fact, that's why you can measure the voltage by connecting the voltmeter in parallel with the circuit element.)
The voltage drop across each bulb is 12 volts.
IN general, a high-powered processor is not necessary for a computer that will be used primarily to check email and brwose the weba. trueb. false
a. True. Because these activities require very little processing power. A basic processor such as an Intel Celeron or AMD Athlon will be more than sufficient for most web browsing and email-checking tasks.
What is a processor?A processor is a part of a computer that carries out operations and carries out instructions. It is in charge of carrying out the calculations and data manipulation necessary for a computer to work. It is the most crucial part of a computer system and is frequently referred to as the "brain" of the computer.
The processor contains an Arithmetic Logic Unit (ALU) which is responsible for carrying out arithmetic and logical operations. It also contains a Control Unit (CU) which is responsible for managing the flow of instructions and data to and from the various components of the computer.
The processor also contains a number of registers which are used to store intermediate results during calculations. The processor also contains several cache levels, which are used to store frequently accessed data and instructions in order to speed up the execution of programs.
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When you develop a web page, you use an HTML file to provide a. the structure and content for the page b. the content for the page c. the structure, content, and formatting for the page d. the content and formatting for the page
When you develop a web page, you use an HTML file to provide the structure, content, and formatting for the page. Option C is the correct answer.
The HTML file provides the structure, content and formats of the web page.
Structure: Refers to the places where you can configure the metadata, scripts, styles, etc. Example: header, body, div, etc. Content: refers to the text, images, videos and other media displayed on the web page.Format: refers to styles, background color, font size, fonts. etcWhat is HTML?HTML stands for Hypertext Markup Language, and it is a standardized system for tagging text files in order to make them appear in a web browser. The web browser then reads the HTML and renders the page accordingly.
How does HTML provide the structure and content for a web page?HTML tags are used to define the structure and content of the web page. Tags are enclosed in angle brackets and are added to the text to define how it should be rendered in the web browser. For example, the following HTML code structure and content.
<!DOCTYPE html>
<html lang="en">
<head>
<!-- Place to provide metadata, scripts, style, etc.-->
</head>
<body>
<h1><b>Contenido de mi web<b></h1>
</body>
</html>
ConclusionThus, HTML provides the structure, content and formatting for a web page. It helps to define how the text, images, videos, and other media should be rendered in a web browser.
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Given the deque 10, 12, 14, 16 (front is 10), what is the outcome of the following operations?
print(IsEmpty(deque))
print(PeekFront(deque))
print(PeekBack(deque))
print(GetLength(deque))
a. false, 10, 16, true
b. false, 10, 16, 2
c. false, 10, 16, 4
d. false, 10, 16, true
he output of the operations is: false (for IsEmpty), 10 (for PeekFront), 16 (for PeekBack), and true (for GetLength, since there are 4 elements in the deque).
These operations allow us to inspect the contents of the deque and its properties, such as length and emptiness.
Here more detailed explanation:
A deque is a double-ended queue, which means that it can be accessed from both the front and the back. In this case, the deque has four elements: 10, 12, 14, and 16. The front of the deque is 10.
The first operation, IsEmpty(deque), checks whether the deque is empty. Since the deque has four elements, the function will return false.
The second operation, PeekFront(deque), returns the value at the front of the deque, which is 10.
The third operation, PeekBack(deque), returns the value at the back of the deque, which is 16.
The fourth operation, GetLength(deque), returns the number of elements in the deque, which is 4.
Therefore, the output of the operations is: false (for IsEmpty), 10 (for PeekFront), 16 (for PeekBack), and true (for GetLength, since there are 4 elements in the deque).
Overall, these operations allow us to inspect the contents of the deque and its properties, such as length and emptiness.
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code lab write a floating point literal corresponding to the value of the first 6 digits of pi
How much dry salt must be added in 150kg of aquous salt solution in order to increase the concentration from 15% to 40%
Answer:
about half a pound i think
Explanation:
Determine whether each graph has an Euler path and whether it has an Euler circuit. Write "Yes" or "No" in each blank space. Write the degree of each vertex. Write the degree of each vertex at each of the vertices.
Without specific details or descriptions of the graphs, it is not possible to determine whether each graph has an Euler path or an Euler circuit, or to provide the degree of each vertex.
Is it possible to determine the presence of an Euler path or an Euler circuit in a graph without knowing its specific details or descriptions?Determining the presence of an Euler path or an Euler circuit in a graph requires knowledge about the specific details and connections of the graph.
This includes information about the number of vertices, edges, and the connections between them.
Without this information, it is not possible to determine whether an Euler path or an Euler circuit exists.
Additionally, determining the degree of each vertex requires knowledge of the specific graph structure.
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Which of the following actions should be performed among cooperating processes?
Select one: a. process synchronization coordination c. both A and B Pag question d. None of the given answers
Among cooperative processes, the action of process synchronization should be performed. Hence, option (a) i.e. ‘process synchronization’ holds the correct answer.
Process synchronization is the process to handle problems that arise when multiple processes execute simultaneously. Process synchronization refers to the way of coordinating the execution of processes so that no two processes can have access to the same shared resources and data.
On the basis of synchronization, the process is categorized into two types: independent process and cooperative process. If the execution of one process does not impact the execution of the other process, these two processes are known to be independent processes. In contrast, when one process execution is affected by the execution of another process, then these processes are said to be cooperative processes. These cooperative processes require synchronization in order to guarantee an appropriate order of execution.
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You are given the flat-faced, rotating (oscillating) follower and approximate cam profile shown. The follower pivot (A) is offset horizontally from the cam axis (O) by a fixed distance L. The cam motion program is given as a piecewise series of rise, dwell and return intervals each captured by a general expression of the form 0,= 10). NOTE: The cam is not to scale and is shown in an arbitrary position. FIND: (A) (~3 Pts) Using the general cam/follower position and approximate cam profile as shown, locate the necessary instant centers to establish the cam contact/profile point (CP) in XY coordinates. (B) (-7 Pts) Using the instant centers from part (A) and the general cam motion function 0; = f). formulate an expression defining the cam profile point (CP)xy in XY coordinates. (BONUS) (-2 Pts) Using the results from (B), formulate an expression for determining the location of (CP)..in CAM fixed coordinates. Approximated .--Cam Profile Xcam cam axes 3 2 A 0;=fe) 1 -L
I apologize, but without a visual representation of the cam motion program, it is difficult to provide an accurate solution.
The problem description mentions a general expression of the form 0(t) = f(t) for the cam motion program, but the actual function f(t) is not provided. Additionally, the specific dimensions and offsets required to determine the instant centers and the cam profile point are not given.
To solve this problem, it would be necessary to have more detailed information about the cam motion program, the specific geometry of the cam and follower, and any additional constraints or specifications. With that information, it would be possible to analyze the geometry, kinematics, and dynamics of the cam-follower system to determine the required positions and expressions.If you have any additional information or a visual representation of the cam motion program and the cam profile, please provide it, and I'll be happy to assist you further.
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What problem solving strategies don’t gaurentee solutions but make efficient use of time
Technician A says that dirty or blocked radiator can cause the engine to overheat. Technician B says that overheating can be caused by a defective water pump. Which technician is correct?
a. Technician A only
b. Technician B only
c. Both Technicians A and B
d. Neither Technician A nor B
Both Technician A and B are correct in their own ways. Technician A says that a dirty or blocked radiator can cause the engine to overheat, whereas technician B says that overheating can be caused by a defective water pump. Let's discuss both terms, dirty/blocked radiator and defective water pump.
Overheating due to dirty/blocked radiator: One of the most frequent causes of engine overheating is a dirty or blocked radiator. When the radiator is blocked or dirty, the coolant is unable to flow through it, causing the engine to overheat. It is advised that the radiator be cleaned or replaced every 40,000 miles or as necessary to ensure adequate coolant flow. This will guarantee that the engine runs at the proper temperature and that it does not overheat.Overheating due to defective water pump:
Its primary function is to pump coolant from the radiator to the engine. A malfunctioning water pump may not circulate coolant throughout the engine, causing the engine to overheat. The primary indication of a malfunctioning water pump is a coolant leak. It is vital to fix the water pump as soon as feasible if a malfunction is discovered.
To replace a water pump, the mechanic must remove the drive belt, drain the coolant, and remove the pump from the engine. After that, install a new water pump, add coolant, and start the engine to test for leaks.
The right answer is "c. Both Technicians A and B.
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Argue the importance of DNA analysis to the field of forensic science.(IM TIMED PLEASE HURRY!!!!)
DNA analysis plays a crucial role in forensic science because it provides irrefutable evidence to identify suspects, victims, and even remains. It is a highly reliable method that allows investigators to match DNA samples found at a crime scene to a suspect or exclude innocent individuals from the investigation.
This helps to solve cases faster and more accurately, ensuring that justice is served. DNA analysis is also helpful in exonerating the wrongly accused, which is critical to upholding the integrity of the criminal justice system. Overall, DNA analysis is an essential tool in forensic science that helps to ensure that the right person is held accountable for their actions and the innocent are protected from false accusations.
The importance of DNA analysis to the field of forensic science lies in its ability to provide accurate and reliable evidence for criminal investigations. DNA analysis allows forensic scientists to. Identify suspects: By comparing DNA samples found at a crime scene with those of potential suspects, investigators can establish a match, proving a suspect's presence at the crime scene or involvement in the crime. Exonerate the innocent: DNA analysis can also clear innocent individuals by demonstrating that their DNA does not match the evidence found at the crime scene, preventing wrongful convictions. Solve cold cases: DNA analysis can be used to re-examine unsolved cases, even after many years, providing new leads and potentially identifying the perpetrator.
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Write a function named reverse that accepts a dictionary from integers to strings as a parameter and returns a new dictionary of strings to integers that is the original's "reverse". The reverse of a dictionary is defined here to be a new dictionary that uses the values from the original as its keys and the keys from the original as its values. Since a dictionary's values need not be unique but its keys must be, it is acceptable to have any of the original keys as the value in the result. In other words, if the original dictionary has pairs (k1, v) and (k2, v), the new dictionary must contain either the pair (v, k1) or (v, k2).
A function named reverse that accepts a dictionary from integers to strings as a parameter and returns a new dictionary of strings to integers that is the original's "reverse" is given below:
The Function# Function to create an empty stack. It
# initializes size of stack as 0
def createStack():
stack = []
return stack
# Function to determine the size of the stack
def size(stack):
return len(stack)
# Stack is empty if the size is 0
def isEmpty(stack):
if size(stack) == 0:
return true
# Function to add an item to stack . It
# increases size by 1
def push(stack, item):
stack.append(item)
# Function to remove an item from stack.
# It decreases size by 1
def pop(stack):
if isEmpty(stack):
return
return stack.pop()
# A stack based function to reverse a string
def reverse(string):
n = len(string)
# Create a empty stack
stack = createStack()
# Push all characters of string to stack
for i in range(0, n, 1):
push(stack, string[i])
# Making the string empty since all
# characters are saved in stack
string = ""
# Pop all characters of string and put
# them back to string
for i in range(0, n, 1):
string += pop(stack)
return string
# Driver code
s = "Geeksforgeeks"
print("The original string is : ", end="")
print(s)
print("The reversed string(using stack) is : ", end="")
print(reverse(s))
The OutputThe original string is : Geeksforgeeks
The reversed string(using stack) is : skeegrofskeeG
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. Determine the state of stress at point A on the cross-section at section a-a of the cantilever beam. Show the results in a differential element at the point.
rank the following gases in order of decreasing rate of effusion. rank from the highest to lowest effusion rate. to rank items as equivalent, overlap them.
It means that the gas with the lowest molecular weight will have the highest effusion rate.
What has the highest rate of effusion?The given gases' effusion rates are listed in order from highest to lowest. The effusion rate of a hydrogen molecule is the highest, whereas that of a hydrocarbon is the lowest.
A gas will effuse faster when it is lighter and more slowly when it is heavier. Helium (He) will have the highest rate of effusion since it has the lowest molecular weight (atomic weight, in this example).
The following equation can be used to compare the rate of effusion for two gases: The effusion rates in this case are inversely related to the square root of the gas molecules' masses. A container contains an amalgam of neon and argon gas.
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How long would a piece of wood need to be to make a diagonal brace for a rectangle that measures 4 inches by 3 inches? Use the Pythagorean theorem, a² + b² = c², to determine the answer. 5 inches 7 inches 12 inches 25 inches Select the correct answer.
Answer:
Length of a diagonal = 5 inches
Explanation:
Let \(a\) and \(b\) the sides of the rectangle and \(c\) be the diagonal of the rectangle.
According to the Pythagorean theorem, sum of squares of base and perpendicular is equal to the square of hypotenuse.
As each angle of the rectangle is a right angle,
\(a^2+b^2=c^2\)
Put \(a=4\,,\,b=3\)
\(4^2+3^2=c^2\\16+9=c^2\\25=c^2\\\sqrt{25}=c\\ 5=c\)
So,
Length of a diagonal = 5 inches
What are the main types of coaxial cable? Choose two.
UTP
STP
RG-6
RG-59
The main types of coaxial cable are RG-6 and RG-59.
UTP (unshielded twisted pair) and STP (shielded twisted pair) are types of copper cabling used in Ethernet networks, and are not considered coaxial cables.
RG-6 and RG-59 are used for transmitting video signals, including cable TV, satellite TV, and security camera systems. RG-6 has a larger diameter, lower loss, and can carry signals over longer distances than RG-59. RG-6 is commonly used in professional installations and for high-definition video, while RG-59 is often used in residential installations or for lower-resolution video. Both RG-6 and RG-59 have a center conductor, a layer of insulation, a braided shield, and an outer jacket.
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