The following table shows the core map of a virtual memory system at time t, which has a page size of 1000 bytes. In this table, column "Counter" indicates the number of references on the corresponding page till time t [small value indicates the least recently accessed page). Process ID Page # Frame # Counter 1 1 10 1 1 2 1 14 2 2 12 В 3 1 3 2 1 3 4 4 15 2 1 15 10 2 0 16 16 3 2 17 7 To which physical address does virtual address 1017 of process 2 map? O a. does not map O b. 5017 O c. 2017 O d. 4017 O e. 3017

Answers

Answer 1

The physical address corresponding to the virtual address 1017 of process 2 is 3017. The correct answer is option (e) 3017.

We know that each process has its own page table. A virtual address needs to be translated into a physical address by using the page table. Here, the virtual address is 1017 of Process 2. We need to find the corresponding physical address. Consider the following steps to obtain the physical address:

Firstly, find the page number using the following formula:

page number = 1017 / 1000 = 1

Secondly, obtain the frame number using the page table of the process

2. Page number 1 is mapped to frame number 14. Therefore, the physical address is obtained as follows:

physical address = (frame number * page size) + offset

= (14 * 1000) + 17= 14,017

Therefore, option (e) is the correct answer.

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Answer 2

Given that the page size is 1000 bytes. And we need to find the physical address to which the virtual address 1017 of process 2 map.The Frame number for the page number 4 of process 2 is 15.

As the page size is 1000 bytes. The virtual address 1017 will be in the same page. So the page offset is 1017 mod 1000 = 17.So the physical address is Frame number * page size + page offset= 15 * 1000 + 17= 15017Hence the correct option is b) 5017.

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Related Questions

Calculate the compression resistance of a compound column consisting of UC-305x305x198 with one cover plate
of 350mm x 20mm on each flange and having a length of 5m. assume that bottom of column is fixed and top is
pinned in both x & y axis?

Answers

Answer:

350×305π{^ not sure my answer please follow me

If a circuit produces a phase shift of 45 degrees between the voltage and current curves and the apparent power is 100 VA, what is the TRUE power in the circuit?


50 W


70.7 VA


70.7 W


100 A

Answers

The true power is obtained as 70.7 VA.

What is the true power?

We define the power a the rate of doing work, we know that the power in a circuit is the product of the current and the voltage. In this case, we want to find the true power thus we have to involve the use of the phase shift in degrees.

Thus;

True power = PcosΦ

P =  100 VA

Φ = 45 degrees

True power =  100 VA * cos 45 degrees

True power = 70.7 VA

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What is desktop publishing software

Answers

Desktop publishing (DTP) is the use of personal computers to design books and booklets that are intended to be printed by ink jet or laser printers. The software that supports desktop publishing has a WYSIWYG graphical user interface (GUI) to make the set-up for publishing as easy as possible.

A compressible fluid flows through a compressor that increases the density from 1 kg/m3 to 5 kg/m3. The cross-sectional area of the inlet pipe is 3 m2 and that of the discharge pipe is 1 m2. The relation between the discharge volume flow rate and the inlet volume flow rate is

Answers

Answer:

The relation between the discharge volume flow rate and the inlet volume flow rate is \(\frac{1}{5}\).

Explanation:

No matter if fluid is compressible or not, mass throughout compressor, a device that works at steady state, must be conserved according to Principle of Mass Conservation:

\(\dot m_{in}-\dot m_{out} = 0\) (Eq. 1)

Where \(\dot m_{in}\) and \(\dot m_{out}\) are mass flows at inlet and outlet, measured in kilograms per second.

After applying Dimensional analysis, we expand the equation above as follows:

\(\rho_{in}\cdot \dot V_{in} - \rho_{out}\cdot \dot V_{out} = 0\) (Eq. 2)

Where:

\(\rho_{in}\), \(\rho_{out}\) - Fluid densities at inlet and outlet, measured in kilograms per cubic meter.

\(\dot V_{in}\), \(\dot V_{out}\) - Volume flow rates at inlet and outlet, measured in cubic meters per second.

After some algebraic handling, we find the following relationship:

\(\rho_{out}\cdot \dot V_{out} = \rho_{in}\cdot \dot V_{in}\)

\(\frac{\dot V_{out}}{V_{in}} = \frac{\rho_{in}}{\rho_{out}}\) (Eq. 3)

If we know that \(\rho_{in} = 1\,\frac{kg}{m^{3}}\) and \(\rho_{out} = 5\,\frac{kg}{m^{3}}\), then the relation between the discharge volume flow rate and the inlet volume flow rate is:

\(\frac{\dot V_{out}}{\dot V_{in}} = \frac{1\,\frac{kg}{m^{2}} }{5\,\frac{kg}{m^{3}} }\)

\(\frac{\dot V_{out}}{\dot V_{in}} = \frac{1}{5}\)

The relation between the discharge volume flow rate and the inlet volume flow rate is \(\frac{1}{5}\).

You are designing a hydraulic power takeoff for a garden tractor. The hydraulic pump will be directly connected to the motor and supply hydraulic fluid at 250 psi for use by accessories. In order for the tractor to maintain normal operation, the maximum power the hydraulic system can use is limited to 11 hp. For what maximum hydraulic flow rate in gallons per minute (gpm) should you design

Answers

Answer:

required flow rate is 75.44 gal/min  

Explanation:

Given the data in the question;

Power developed = 250 psi = 1.724 × 10⁶ Pa

hydraulic power W = 11 hp = 11 × 746 = 8206 Watt

now, Applying the formula for pump power

W = pgQμ

where p is density of fluid, Q is flow rate, μ is heat and W is power developed;

W = pgQμ

W = pgμ × Q  

W = P × Q -------- let this be equ 1

so we substitute in our values;

8.2027 kW = 1.724 × 10⁶ Pa × Q

Q = 8206 / 1.724 × 10⁶

Q = 4.75986 × 10⁻³ m³/sec

We know that, 1 cubic meter per seconds = 15850.3 US liquid gallon per minute, so

Q = 4.75986 × 10⁻³  × 15850.3 gallon/min

Q = 75.44 gal/min    

Therefore, required flow rate is 75.44 gal/min    

By now, you most likely already noticed there are many similarities between the technological design process and the scientific method. Using your own words, explain 3 ways in which these processes are similar. (This will be graded).

Answers

Answer:

The key to bieng a good engineer

1. Define Your Goals

2. Commit Yourself To Continuous Professional Development

3. Work On Improving Soft Skills

4. Understand Business

5. Embrace Change

6. Work Hard

7. Be Optimistic

8. Identify Role Models And Mentors

9. Stay Flexible

10. Focus On The Long-Term

Look at this website for more info.

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Which gas is released in the SMAW process causing a
shielding affect on the molten weld pool?

•nitrogen

•carbon dioxide

•argon

•hydrogen

Answers

Argon ( I’m not sure )

Pls answer and I will give a like!

Pls answer and I will give a like!

Answers

Answer:

a

Explanation:

b) 23.5 years + 2.6 light years​

Answers

26.1 I think I don't know if I'm right sorry if ik wrong<3

What type of hazard is electrical equipment?

Answers

Electrical equipment can pose several types of hazards, including electrical shock, burns, fires, and explosions.

Electrical shock can occur if a person comes into contact with an electrical current. Even low voltage currents can be dangerous and potentially fatal. Burns can also occur if a person comes into contact with a hot surface, such as a light bulb or a heating element.

Electrical equipment can also start fires if it overheats or if electrical wiring becomes damaged. This can lead to a risk of property damage, injury, or even death.

Explosions can occur if there is a buildup of electrical energy in a confined space, such as a transformer, capacitor, or battery. This can lead to a sudden release of energy that can cause an explosion, resulting in injury or property damage.

To minimize these hazards, it is important to properly install and maintain electrical equipment, follow safety procedures, and provide adequate training for those who use the equipment. Regular inspections, maintenance, and upgrades can help ensure that electrical equipment is in good working order and that potential hazards are identified and addressed.

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most construction drawings today are hand-drawn by drafters true or false

Answers

Answer:

False. Most construction drawings today are created using computer-aided design and drafting (CADD) systems . While manual drafting is still used in some cases, it is becoming increasingly rare. CADD systems offer many advantages over manual drafting , including increased efficiency, accuracy, and the ability to make changes quickly and easily. However, some drafters still use a combination of manual and computer-aided drafting techniques, depending on the nature of the project and their own personal preferences.

Explanation:

Hard steering can be caused by

Answers

Answer:

Lack of fluid oil – lack of fluid oil in your vehicle, or a fluid leakage, can lead to heavy steering. If there is a lack of fluid oil, or a leak, this can reduce the pressure in the system, meaning the steering wheel does not receive enough supply of fluid to perform freely.

The most common cause of a stiff steering wheel is the lack of enough power steering fluid in the system. This condition can arise if there's fluid leakage from the pressurized hose area. Refilling the liquid in the power steering tank will fix the problem for the time being, but the leak must be taken care of.

Can someone tell me what car year and model this is please

Can someone tell me what car year and model this is please

Answers

Answer:

i think 1844

Explanation:

2005 BMW 5 Series , that should be it

When creating a double flare on tubing, how far above the top of the tubing clamp should the tube extend?

Answers

Answer:

When creating a double flare on tubing, it is recommended that the tube extend approximately 1/8 to 1/4 inch above the top of the tubing clamp. This allows for a sufficient amount of material to be flared without creating excess excess material that could potentially cause issues during the flaring process. It is important to properly measure and mark the tubing before beginning the flaring process to ensure that the final result meets the desired specifications.

The solute hcl is diffusing through a thin film of water 2 mm thick at 283k. The conc. Of hcl at point 1 is 12wt%hcl (density is 1060kg/m3) and at point 2 is 6 wt%( density= 1030). The diffusivity is 2.45*10^-9 m2/sec.Calculate flux of hcl.

Answers

2.372 x 10 = 23.72 kgmol/sm

You arrive onsite to resolve an issue for a client. His computer is receiving random Blue Screens of Death (BSOD) on his Windows machines, but he can't pinpoint the cause. Which of the following would be the BEST first course of action?
Run a memory test to rule out RAM issues
Check that all the power cables are firmly inserted in the HDD and graphics card
Check the voltage on the power supply
Ensure that the monitor cable is firmly inserted

Answers

The BEST first course of action that should be taken is A: 'Run a memory test to rule out RAM issues'

The BSOD or Blue Screens of Death is a warning you see when your Windows-based computer interrupts operations and displays this warning on a blue screen. Officially, it is referred to as a 'stop error.' This warning informs you of a critical issue that forces Windows to reboot.

In the case where you attempt to solve an issue faced by a client in which their computer randomly receives a Blue Screen of Death (BSOD) on his Windows computer device, he is unable to determine the cause. Thus the best first step to be taken is to run a memory test in order to find out issues pertaining to RAM.

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What is the impulse responseh(n)for a causal system which has the following transfer functionH(z). 1.H(z)=2​1​+2​1​z−12.H(z)=1−z−11​3.H(z)=(1−0.25z−1)(1−0.5z−1)1​4.H(z)=(1−z−1)(1−0.5z−1)1+z−1​

Answers

Impulse response is a fundamental concept in signal processing. It refers to the output of a system when it is stimulated with a short pulse or impulse.

This response can be used to determine the characteristics of the system and how it will react to other signals in the future. In other words, impulse response is a way of describing how a system processes information.A transfer function is a mathematical representation of a system that describes the relationship between the input and output signals. It is a way of characterizing how the system will react to different input signals. In other words, it is a function that maps the input signal to the output signal.A causal system is a system in which the output depends only on the present and past values of the input. This means that the output of the system does not depend on future values of the input signal.What is the impulse response h(n) for a causal system which has the following transfer function H(z)?Let us consider each transfer function given:1. H(z)=2​1​+2​1​z−1For this transfer function, the impulse response is given byh(n) = (2^(n-1))u(n)2. H(z)=1−z−11​For this transfer function, the impulse response is given byh(n) = (1^n)u(n) - (-1^n)u(n)3. H(z)=(1−0.25z−1)(1−0.5z−1)1​For this transfer function, the impulse response is given byh(n) = (0.5^n - 0.25^n)u(n)4. H(z)=(1−z−1)(1−0.5z−1)1+z−1​For this transfer function, the impulse response is given byh(n) = (1^n - 0.5^n + (-1)^n)u(n)What is u(n)?u(n) is the unit step function, which is defined as follows:u(n) = 1 for n >= 0u(n) = 0 for n < 0

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generally, there are three strategies to reduce the size of digital media files. they are: (choose all that apply

Answers

Name three general strategies to reduce the size of a digital media file. Reduce sampling rate, reduce bit depth, and apply file compression.

What is digital media files?

Digital media can be created, viewed, shared, modified and saved on digital electronic devices. When you save a digital file, it is encoded so that computer programs or apps can read and work with it. But because there is no standardization, there is further variation in devices.

The most commonly used containers for media on the web are probably MPEG-4 (MP4), QuickTime Movie (MOV), and the Wavefile Audio File Format (WAV). However, you may also encounter MP3, Ogg, WebM, AVI, and other formats.

A media file is a video, audio, still-image, or graphics file on your Mac or storage device that contains footage transferred from a camcorder or recording device or created on a computer. Media files can contain multiple video and audio components.

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What are the legal consequences of engineering solutions? Discuss with one real life examples. Please state the Code of Ethics and Engineers professional obligations in this case

Answers

Engineers play a crucial role in developing and implementing technological innovations to cater to the needs of society. However, if the engineering solutions do not comply with established codes of ethics and professional standards, the legal implications can be significant.

Engineers are expected to follow ethical standards to ensure that their engineering solutions meet safety, quality, and environmental criteria. The Code of Ethics of Engineers outlines the ethical principles, values, and practices that engineers should follow in their professional duties.

A violation of the Code of Ethics or a failure to comply with professional standards can lead to legal consequences. If an engineer's solution is not compliant with safety standards, the individual or company responsible for implementing that solution may face fines, penalties, or legal action. One real-life example of legal consequences resulting from engineering solutions is the Deepwater Horizon oil spill. In 2010, an explosion on the Deepwater Horizon oil rig caused a massive oil spill in the Gulf of Mexico, resulting in significant environmental and economic damage.

Investigations revealed that several engineering solutions that were implemented on the rig were not in compliance with safety standards. Engineers had also failed to follow established procedures for ensuring safety and environmental protection. As a result, BP, the company responsible for the rig, faced significant legal consequences, including fines, penalties, and legal action by affected parties. Engineers involved in the project also faced legal consequences, including loss of license and potential criminal charges.

Engineers have a professional obligation to ensure that their solutions meet safety, quality, and environmental criteria. This means that they should adhere to established codes of ethics, follow established procedures for ensuring safety, and ensure that their solutions are in compliance with relevant laws and regulations. They also have a responsibility to report any violations or issues that could impact the safety or environmental impact of their solutions. Failure to meet these obligations can lead to legal consequences and impact public trust in the engineering profession.

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Multiple Choice
Which of the following analogies best describes the relationship between urban planning and zoning?


Zoning is like a hammer because it is used as a tool for urban planning.

Zoning is like a butterfly because it is the final form of urban planning.

Zoning is like a stop sign because it is an obstacle to urban planning.

Zoning is like an egg because it is the process from which urban planning emerges.

Answers

Answer:

Zoning is like a hammer because it is used as a tool for urban planning.

If the probability of a bit error is p, what is the probability of a single, double, and triple error in a 10-bit word? Express it in terms of p.

Answers

Answer:

single bit error: 10pdouble bit error: 45p²triple bit error: 120p³

Explanation:

The probability of n bits being in error is 10Cn × p^n, where ...

  10Cn = 10!/(n!(10-n!))

  10C1 = 10

  10C2 = 45

  10C3 = 120

This is the product of the probability that n bits can be in error and the number of ways that n bits can be chosen from the 10 in the word.

  n = 1: 10p

  n = 2: 45p²

  n = 3: 120p³

It is okay to lift one end of the vehicle:
A) As long as two swing arms are being used
B) As long as the wheels have been chocked
C) As long as the swing arm restraints are engaged
D) None of the above

Answers

It is okay to lift one end of the vehicle B) As long as the wheels have been chocked.

What is a Safety Procedure?

This refers to the processes that are undertaken in order to undertake a task safely, both for the person executing the task and others around.

Hence, we can see that It is okay to lift one end of the vehicle B) As long as the wheels have been chocked

This is because it would enable the vehicle to be safely positioned so the wheels would not roll off and cause an accident.

This safety procedure allows a person to raise one end of a vehicle, if the wheels have been chocked, to keep them in place.

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“Snow Cover Area change Analysis for Kabul Basin”

Summarize how GIS & Remote Sensing is incorporated in this study.

Answers

GIS

The full for GIS is : Geographic Information System.

The GIS is a system of mapping that is used to create, analyze, manage and map all the types of data.

It is a method capturing, checking as well as displaying all the data that is related to the position of the surface of earth.

Remote Sensing

Remote sensing is defined as a process where the various physical characteristics of an area are constantly monitored and detected by a process of measuring the reflection of the emitted radiations at ta distance.

The snow covered areas of the Kabul basin can be monitored and analyzed by using the process of GIS and remote sensing.

They provide a continuous source of information and data about snow covered peaks, the amount of snow to the authorities.

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Two ways of sawing logs are?​

Answers

Answer:

Plain Sawn. At least 95 percent of all hardwood lumber commercially produced in the U.S. is flat or plain sawn. ...

Quarter Sawn. In this method, the log actually is cut into quarters, then sawn quarter by quarter. ...

Explanation:

The accompanying specific gravity values describe various wood types used in construction. 0.320.350.360.360.370.380.400.400.40 0.410.410.420.420.420.420.420.430.44 0.450.460.460.470.480.480.490.510.54 0.540.550.580.630.660.660.670.680.78 Construct a stem-and-leaf display using repeated stems. (Enter numbers from smallest to largest separated by spaces. Enter NONE for stems with no values.)

Answers

Answer:

\(\begin{array}{ccc}{Steam} & {\vert} & {Leaf} \ \\ \\ {0.3} & {\vert} & {2\ 5\ 6\ 6\ 7\ 8} \ \\ \\{0.4} & {\vert} & {0\ 0\ 0\ 1\ 1\ 2\ 2\ 2\ 2\ 2\ 3\ 4\ 5\ 6\ 6\ 7\ 8\ 8\ 9} \ \\ \ \\ {0.5} & {\vert} & {1\ 4\ 4\ 5\ 8} \ \\ \ \\ {0.6} & {\vert} & {3\ 6\ 6\ 7\ 8} \ \\ \ \\ {0.7} & {\vert} & {8} \ \ \end{array}\)

Explanation:

Given

\(0.32,\ 0.35,\ 0.36,\ 0.36,\ 0.37,\ 0.38,\ 0.40,\ 0.40,\ 0.40,\ 0.41,\)

\(0.41,\ 0.42,\ 0.42,\ 0.42,\ 0.42,\ 0.42,\ 0.43,\ 0.44,\ 0.45,\ 0.46,\)

\(0.46,\ 0.47,\ 0.48,\ 0.48,\ 0.49,\ 0.51,\ 0.54,\ 0.54,\ 0.55,\)

\(0.58,\ 0.63,\ 0.66,\ 0.66,\ 0.67,\ 0.68,\ 0.78.\)

Required

Plot a steam and leaf display for the given data

Start by categorizing the data by their tenth values:

\(0.32,\ 0.35,\ 0.36,\ 0.36,\ 0.37,\ 0.38.\)

\(0.40,\ 0.40,\ 0.40,\ 0.41,\ 0.41,\ 0.42,\ 0.42,\ 0.42,\ 0.42,\ 0.42,\)

\(0.43,\ 0.44,\ 0.45,\ 0.46,\ 0.46,\ 0.47,\ 0.48,\ 0.48,\ 0.49.\)

\(0.51,\ 0.54,\ 0.54,\ 0.55,\ 0.58.\)

\(0.63,\ 0.66,\ 0.66,\ 0.67,\ 0.68.\)

\(0.78.\)

The 0.3's is will be plotted as thus:

\(\begin{array}{ccc}{Steam} & {\vert} & {Leaf} \ \\ {0.3} & {\vert} & {2\ 5\ 6\ 6\ 7\ 8} \ \ \end{array}\)

The 0.4's is as follows:

\(\begin{array}{ccc}{Steam} & {\vert} & {Leaf} \ \\ {0.4} & {\vert} & {0\ 0\ 0\ 1\ 1\ 2\ 2\ 2\ 2\ 2\ 3\ 4\ 5\ 6\ 6\ 7\ 8\ 8\ 9} \ \ \end{array}\)

The 0.5's is as follows:

\(\begin{array}{ccc}{Steam} & {\vert} & {Leaf} \ \\ {0.5} & {\vert} & {1\ 4\ 4\ 5\ 8} \ \ \end{array}\)

The 0.6's is as thus:

\(\begin{array}{ccc}{Steam} & {\vert} & {Leaf} \ \\ {0.6} & {\vert} & {3\ 6\ 6\ 7\ 8} \ \ \end{array}\)

Lastly, the 0.7's is as thus:

\(\begin{array}{ccc}{Steam} & {\vert} & {Leaf} \ \\ {0.7} & {\vert} & {8} \ \ \end{array}\)

The combined steam and leaf plot is:

\(\begin{array}{ccc}{Steam} & {\vert} & {Leaf} \ \\ \\ {0.3} & {\vert} & {2\ 5\ 6\ 6\ 7\ 8} \ \\ \\{0.4} & {\vert} & {0\ 0\ 0\ 1\ 1\ 2\ 2\ 2\ 2\ 2\ 3\ 4\ 5\ 6\ 6\ 7\ 8\ 8\ 9} \ \\ \ \\ {0.5} & {\vert} & {1\ 4\ 4\ 5\ 8} \ \\ \ \\ {0.6} & {\vert} & {3\ 6\ 6\ 7\ 8} \ \\ \ \\ {0.7} & {\vert} & {8} \ \ \end{array}\)

The part of a circuit that carries the flow of electrons is referred to as the?
Conductor
Electrostatic Field
Dieletric
Insulator

Answers

Answer:

  Conductor

Explanation:

Current is carried by a conductor.

__

The purpose of a dielectric and/or insulator is to prevent current flow. An electrostatic field may set up the conditions for current flow, but it carries no current itself.

Cavitation usually occurs because:
A) the liquid has a low vapor pressure.
B) the liquid accelerated to high velocities.
C) the liquid flow at a low pressure region,
D) A local drop of static pressure.
E) all of the options.

Answers

Answer:

B) the liquid accelerated to high velocities.

I hope this helps

the conductor size, fuse or circuit breaker size, and overload size are generally determined using the ____.

Answers

The conductor size, fuse, or circuit breaker size, and overload size are generally determined using the National Electrical Code (NEC).

National Electrical Code is a guidebook, which is a national standard published by the National Fire Protection Association (NFPA), that provides guidelines for the safe installation of electrical wiring and equipment in homes, buildings, and other facilities.

The NEC provides guidelines for wire ampacity, overcurrent protection, and maximum circuit length, among other things. The conductor size is determined by the load current, the maximum circuit length, and the conductor temperature rating.

The maximum circuit length is determined by the voltage drop, the load current, and the conductor size.Fuse and circuit breaker sizes are determined based on the current-carrying capacity of the conductor. They must be properly sized to protect the conductor from overcurrent, but not so small that they trip unnecessarily.The overload size is determined based on the load current.

Overload protection is a type of overcurrent protection that protects equipment from overheating and burning out due to excessive current. It is usually provided by thermal overload relays or electronic overload relays, which detect excessive current and disconnect the power source to the equipment.

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what does the use of the bracket set and the stepped truss system do in eastern architecture? multiple choice question. it distributes the weight of the roof evenly across a series of columns. it is limited to designs with roofs of only one degree of pitch. it allows for the spanning of vast open spaces. it requires large columns that are able to bear considerable direct weight.

Answers

It is important to carefully read all of the answer choices before selecting the correct one. In this case, the correct answer is "It allows for the spanning of vast open spaces.

"The use of the bracket set and the stepped truss system in Eastern architecture has a specific function. It allows for the spanning of vast open spaces. By distributing the weight of the roof evenly across a series of columns, the bracket set and stepped truss system provide a strong support system that allows for large areas to be covered without the need for additional columns or supports.In addition to its functional purpose, the bracket set and stepped truss system are also important elements of Eastern architecture from an aesthetic perspective. The intricate patterns and designs that are often used in the construction of these systems reflect the rich cultural heritage of the region and the skill of the artisans who create them. Overall, the use of the bracket set and stepped truss system is an important component of Eastern architecture that serves both a functional and an aesthetic purpose.

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A company that produces footballs uses a proprietary mixture of ideal gases to inflate their footballs. If the temperature of 230 grams [g] of gas mixture in a 15-liter [L] tank is maintained at 465 degrees Rankine [°R] and the tank is pressurized to 135 pound-force per square inch [psi], what is the molecular weight of the gas mixture in units of grams per mole

Answers

Answer:

The molecular weight of the gas mixture is 35.38 g/mol.

Explanation:

The molecular weight of the gas can be found using the following equation:

\( M = \frac{m}{n} \)

Where:

m: is the mass = 230 g

n: is the number of moles

First, we need to find the number of moles using Ideal Gas Law:

\( PV = nRT \)

Where:

P: is the pressure = 135 psi

V: is the volume = 15 L

R: is the gas constant = 0.082 L*atm/(K*mol)

T: is the temperature = 465 °R (K = R*5/9)

\(n = \frac{PV}{RT} = \frac{135 psi*\frac{1 atm}{14.6959 psi}*15 L}{0.082 L*atm/(K*mol)*465*(5/9) K} = 6.50 moles\)                

Finally, the molecular weight of the gas is:

\( M = \frac{m}{n} = \frac{230 g}{6.50 moles} = 35.38 g/mol \)

Therefore, the molecular weight of the gas mixture is 35.38 g/mol.

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