How do engineers deal with liquefaction when building a very tall building?

Answers

Answer 1

Answer:

Engineers can use a variety of techniques to prevent or mitigate the effects of liquefaction when building a very tall building. Liquefaction is a phenomenon that occurs when soil loses its strength and stiffness due to increased pore water pressure. This can cause the ground to become unstable, potentially leading to significant damage to buildings and other structures. To prevent liquefaction, engineers may use a combination of techniques, including:

Deep foundations: By building the foundations of a building deep into the ground, engineers can reduce the effects of liquefaction by increasing the weight and stiffness of the soil. This can help to keep the building stable even if the ground around it becomes unstable.
Vibration monitoring: Engineers can use sensors and other monitoring equipment to detect and measure vibrations in the ground. This can help them to identify areas where liquefaction is likely to occur, allowing them to take corrective action before it becomes a problem.
Soil improvement: In some cases, engineers may be able to improve the soil by adding chemicals or other materials that increase its strength and stiffness. This can help to prevent liquefaction and make the ground more stable for building.
Flexible design: By designing buildings with a certain amount of flexibility, engineers can reduce the effects of liquefaction on the structure. For example, they may use flexible connections between the foundation and the building itself, or incorporate materials that can withstand movements caused by liquefaction.


Related Questions

Which of the following types of cables might be used to run from cubicles into a drop ceiling and then routed across to an IDF?

a. SCADA
b. plenum
c. backbone
d. EMI

Answers

Answer:

69420

Explanation:

A student is asked to build a model of an atom with 6 protons and 6 electrons. The student is then asked to make an identical model of the same arom but make it an ion. Ro be successful in this project, the student will:

Answers

In the above chemistry prompt, where a student is asked to build a model of an atom with 6 protons and 6 electrons. The student is then asked to make an identical model of the same atom but make it an ion. To be successful in this project, the student will: " Place the electrons in the center of the model and distribute them around the protons."

Why are models important in chemistry?

Models may be thought of as thinking tools that aid in the formation of explanations. They are also helpful simplifications to improve comprehension.

In the chemistry classroom, physical modeling may help students visualize concepts such as molecular systems, structure and bonding, atomic structure, and collision theory.

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Air-break switches are also known as
A soft-limit Switches
B SPST Switches
C knife Switches
D gap Switches ​

Answers

I think it d I’m really not sure

Sarah took the advertising department from her company on a round trip to meet with a potential client. Including Sarah a total of 10 people took the trip. She was able to purchase coach tickets for ​$130 and first class tickets for ​$1140. She used her total budget for airfare for the​ trip, which was ​$7360. How many first class tickets did she​ buy? How many coach tickets did she​ buy?

Answers

The number of class tickets she did buy is 3. The number of coach tickets she did buy is 8.

What are tickets?

Tickets are a piece of paper that contains all the information for someone to enter somewhere or travel.

x= number of coach tickets and y = number of first-class tickets.

$210x + $1200y = $10,230 (cost of a coach ticket plus the cost of first-class tickets is the total budget)

The second equation for y to get y = 11 - x, then plug that into the first equation and solve for x:

$210x + $1200(11 - x) = $10,230

$210x + $13,200 - $1200x = $10,230

-$990x + $13,200 = $10,230

-$990x = $2,970

x = 3

Sarah bought x = 3 coach tickets. The seconds equation and solves for y:

3 + y = 11

y = 8

Thus, the class tickets she did buy are 3 and the coach tickets are 8.

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describe 3 examples of biases in design

Answers

As we mature, we come to understand that not everything should be perceived and thought of in the same manner. The design term for this is “bias.” increasing awareness and preventing ourselves or our organizations from being victims of such bias.

What are the biases in design?

Confirmation bias, sampling bias, and brilliance prejudice are three examples of biases that might affect our ability to objectively assess information.

To help us better grasp how cognitive biases affect our daily life, Jono Hey of Sketchplanations talks us through some examples.

Therefore, Designers must concentrate on connecting with users without letting their connection be influenced by their own or other people's opinions.

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This is for a history assignment, but it is an engineering question: How long is the length, width, and height of an average power plant?

Answers

The  length, width, and height of an average power plant varies.  The size of a power plant can vary greatly depending on the type of technology it uses and the amount of power it generates.

Some power plants, such as hydroelectric dams, can be very large and span several kilometers in length. Other types of power plants, such as natural gas or coal-fired plants, are typically smaller and may only be a few hundred meters in length.

What is the power plant  size about?

The  size of a power plant may also depend on the location in which it is built. For example, a power plant built in a dense urban area may be smaller in size due to space constraints, while a power plant built in a more rural area may be larger to take advantage of available land.

In terms of the height of a power plant, again this can vary greatly depending on the type of technology being used. Some power plants, such as nuclear or coal-fired plants, may have tall smokestacks that are several hundred meters tall.

Therefore,  Other types of power plants, such as solar or wind farms, may have much shorter structures, as they do not require the same type of large equipment.

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definition of environment in design and technology​

Answers

Answer:

Environment means our surroundings. Our surroundings consist of naturally occurring things like the air, rivers and trees and it consists of things that are built by humans. We call these two environments: "the natural environment" and the. "built environment".

Explanation:

Carolina wants to determine which services are running on the Linux servers in a certain subnet. Which of the following tools would best perform this task?

a. nmap
b. ifconfig
c. telnet
d. ping

Answers

Answer: nmap

Explanation:


The best tool to use for determining which services are running on Linux servers in a certain subnet is nmap. Nmap (short for "Network Mapper") is a network scanning and security tool that can be used to discover and map networks, as well as to identify the services that are running on specific servers or devices.

Nmap can be used to scan a subnet and identify the hosts and devices that are connected to it, as well as to determine the services that are running on those devices. This can be useful for identifying potential vulnerabilities or security risks, as well as for understanding the network and its capabilities.

In contrast, the other options listed (ifconfig, telnet, and ping) are not as well-suited to the task of determining which services are running on Linux servers in a subnet. Ifconfig is a command-line utility that is used to configure network interfaces, but it does not provide information about services running on servers. Telnet is a protocol for connecting to remote servers, but it does not provide information about the services that are running on those servers. Finally, ping is a tool for testing network connectivity, but it does not provide information about services running on servers.

Primary power is the electrical supply from the power company.
False
True

Answers

Primary power is the electrical supply from the power company. The given statement is True.

How do main and secondary powers differ?

Primary distribution lines, often known as primaries, are those located on the high voltage side of the distribution transformer. Secondary distribution lines, or secondaries, are those found on the low-voltage side of the distribution transformer. Primary energy (PE) is a type of energy that can be found in nature that hasn't undergone any artificially designed conversion procedures. It is the energy that is present in unprocessed fuels and other energy sources, such as trash, that are introduced into a system.

Renewable or nonrenewable sources can be used for primary energy. Primary energy sources come in a variety of shapes and sizes, and they can be either nuclear, fossil (such as coal, oil, and natural gas), or renewable (such as wind, solar, geothermal, and hydropower).

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