A small agricultural watershed (straight row crops)

Answers

Answer 1

A small agricultural watershed refers to a specific area of land that collects and channels water runoff from agricultural activities such as growing straight row crops.

It is a drainage basin or catchment area that encompasses the land area where water flows into a common outlet, such as a stream, river, or lake.In the context of straight row crops, the agricultural watershed includes the fields where crops are planted in rows, allowing for efficient cultivation, irrigation, and harvesting practices. The water management within the watershed plays a crucial role in sustaining crop growth and productivity.The size and boundaries of a small agricultural watershed can vary depending on factors such as topography, land use patterns, and the specific needs of the farming operations. It may encompass multiple fields, irrigation systems, drainage channels, and water control structures.

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Related Questions

An oil well is producing 30°API oil was tested along three days at a rate of 214 STB/day and the stabilized wellbore flowing pressure is measured as 3712 psia. Since the well is recently opened to production, water cut is negligible. The average reservoir pressure is 4350 psia and the IPR exponent is 0.82. The current IPR may be written as 0.82 P Pwf %o=6231- PR Additional data is given below Wellhead flowing pressure 400 psia Tubing length 10,000 ft 3.5 in. Nominal Tubing size (2.75 in. internal) GOR (since no water 600 SCF/STB production GLR=GOR) Wellhead temperature 100°F Bottomhole temperature 240°F Gas specific gravity 0.68 Water specific gravity 1.05 Mol fr. N₂ 0.004 Mol fr. CO2 0.011 Bw 1.2 Bbl/STB Using Poettman and Carpenter method to find the tubing intake pressure at 10,000 ft and fill out the following table, plot IPR and TPR on the same graph and find the point of natural flow (q.) and corresponding flowing bottomhole pressure (Pwt). IPR P&C TPR qo Pwf 4350 4000 3500 3000 2500 2000 1500 1000 500 0 qo 50 100 200 300 400 500 600 Pintake

Answers

The given data is provided in the table below: Parameters Values Oil gravity, °API30 Stabilized flowing pressure, psia3712 Wellhead flowing pressure, psia400 Length of Tubing, ft10000 Nominal tubing size, in3.5 Inside diameter of tubing, in2.75 Gas specific gravity0.68 Water specific gravity1.05 Mol

Mol Fr. of CO2 in gas0.011 Bubble point pressure, psia2144 Solution gas ratio, scf/STB600 IPR exponent0.82 Bw, bbl/STB1.2 First, calculate the reservoir flow rate from the given production rate using the Vogel's equation:

The point of natural flow (q) and corresponding flowing bottom hole pressure (Pwf) can be determined from the intersection of IPR curve and TPR curve.

It can be observed that the intersection occurs at a flowing bottom hole pressure of around 4,130 psia and a liquid flow rate of around 156 STB/day. Therefore, the point of natural flow is at a flowing bottom hole pressure of 4,130 psia and a liquid flow rate of 156 STB/day.

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Which of the following statements is NOT true regarding the use of headlights?
Which of the following statements is NOT true regarding the use of headlights?
Low-beams are used in city driving and driving in traffic on roadways.
Low-beams are used when traveling in fog, rain, or snow.
High-beams are used for open country driving when there is no traffic in sight.
High-beams are used when traveling behind other vehicles

Answers

The statement that is NOT true regarding the use of headlights is "High-beams are used when traveling behind other vehicles."

Headlights are an essential component of every vehicle. They serve as safety equipment, allowing drivers to see the road and other vehicles while also alerting other drivers to their presence. When driving in low-light situations, using headlights becomes even more critical

. Headlights come in two types: low-beams and high-beams.

Low-beams are used in city driving and driving in traffic on roadways. They are also used in inclement weather, such as rain, fog, or snow. Low-beams are designed to light up the road in front of the vehicle while not blinding other drivers on the road.High-beams are used for open country driving when there is no traffic in sight

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Which technical practice incorporates build-time identification of security vulnerabilities in the code?

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Technical practice incorporates build-time identification of security vulnerabilities in the code is  Penetration testing.

What is Penetrating Testing?

A penetration test, sometimes referred to as a pen test or ethical hacking, is a legitimate simulated cyberattack on a computer system that is carried out to analyze the system's security. This is distinct from a vulnerability assessment.

In order to identify and illustrate the financial effects of a system's vulnerabilities, penetration testers employ the same tools, strategies, and procedures as attackers. Reconnaissance, scanning, vulnerability assessment, exploitation, and reporting are the five stages of a penetration test.

Penetration testing is a technical activity that includes build-time discovery of security vulnerabilities in the code.

Penetration tests are essential to an organization's security because they teach staff members how to respond to any kind of intrusion from a malicious party. Pen tests are a method of determining whether a company's security procedures are actually effective.

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Pls help!!! will give brainly!!!
Bridge collapses have hit the news recently with more frequency. Do some research online and state two possible reasons for these collapses. How might those employed in the Health, Safety, & Environmental Management pathway help prevent these collapses and keep us safe?

Answers

Answer:

The main reason for bridges collapses is: earthquakes (natural disasters) and construction incidents. Whenever a natural disaster occur, it makes the bridge collapse. An example is hurricanes. Hurricanes come with a great wind and that might lead to the bridge collapsing. Construction incidents means the bridge falls during construction. Those who are employed in health, safety and environmental management need to make sure that during the construction, they have examined the material and made sure it is strong. Working with economists, they should seek better understanding of the methods for minimizing the costs during the life of the bridge. In case for natural disasters, like flooding, they should make the bridge in a lever where the water won't reach the bridge. And they should have a limit for weight in the bridges because that is another reason it collapses, because the bridge does not support extra weight.

Explanation:

hope this helps

What do you mean by overflow and underflow error in array?.

Answers

Answer:

Overflow and underflow are both errors resulting from a shortage of space. On the most basic level, they manifest in data types like integers and floating points. Unlike the physical world, the number stored in a computer exists in a discrete number of digits.

Explanation:

Determine numerical values for each of the three mesh currents as labeled in
the circuit diagram of Fig. 4.58.

Determine numerical values for each of the three mesh currents as labeled inthe circuit diagram of Fig.

Answers

The numerical values for the mesh currents that we have in the question are given as:

1i = 0.9892 = 0.9892 amperei2 = 0.1501 amperei3 = 0.1570 ampere

How to solve for the values of the mesh current

We first have to write the KVL

2 - 1(i₁ - i₂) + 3 - 5(i₁ - i₃) = 0

We have to expand the equation that we have above

2 - i₁ + i₂ + 3 - 5i₁ + 5i₃ = 0

take like terms

-i₁ - 5i₁  i₂ + 5i₃ = 5

=  6i₁ - i₂ - 5i₃ = 5

-1(i₂ - i₁) - 6 i₂ - 9(i₃ - i2) = 0

after expanding we would have

i₁ - 16i₂ + 9i₃ = 0------- equation 2

-5 (i3 - i1) - 3 - 9(i3 - i2) - 7i3 = 0

5i1 + 9i2 - 2i3 = 3 ------ equation 3

From the equations that we have in 1, 2 and 3, we would solve the system of equations to get

1i = 0.9892 = 0.9892 ampere

i2 = 0.1501 ampere

i3 = 0.1570 ampere

These are the mesh current that are in the labeled diagram.

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Discuss how the chain branching affects a) degree of crystallinity, b) strength, and c) elongation of polyethylene

Answers

The way that chain branching affects a) degree of crystallinity, b) strength, and c) elongation of polyethylene is given below.

What is the chain branching  effect?

Polyethylene is a type of polymer that is made up of long chains of repeating units of ethylene. The properties of polyethylene can be influenced by the size and shape of these chains, as well as the way that the chains are organized within the polymer. One way to alter the properties of polyethylene is to introduce chain branching into the polymer.

a) Degree of crystallinity: Chain branching can have a significant effect on the degree of crystallinity of polyethylene. Crystallinity refers to the degree to which the polymer molecules are organized in a regular, repeating pattern. In general, the more crystalline a polymer is, the stronger and stiffer it will be. In unbranched polyethylene, the molecules are able to pack together tightly, which leads to a high degree of crystallinity.

b) Strength: The strength of a polymer is related to its degree of crystallinity. As a result, the strength of polyethylene will typically be lower when chain branching is present. This is because the chain branches disrupt the regular, repeating pattern of the polymer molecules, making it more difficult for the polymer to resist deformation.

c) Elongation: Elongation refers to the ability of a polymer to stretch or elongate before breaking. Polymers that are more crystalline tend to be less elongation, while polymers that are less crystalline tend to be more elongation. Therefore, when chain branching is present in polyethylene, the polymer will tend to be more elongation. This is because the chain branches disrupt the regular, repeating pattern of the polymer molecules, making it easier for the polymer to stretch.

Therefore, note that properties of Polyethylene can vary depending on the type of polyethylene and the way the polymerization process is carried out, thus the effects of chain branching on it's properties may be different depending on the context.

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A horizontal force P is applied to a 130 kN box resting on a 33 incline. The line of action of P passes through the center of gravity of the box. The box is 5m wide x 5m tall, and the coefficient of static friction between the box and the surface is u=0.15. Determine the smallest magnitude of the force P that will cause the box to slip or tip first. Specify what will happen first, slipping or tipping.

A horizontal force P is applied to a 130 kN box resting on a 33 incline. The line of action of P passes

Answers

Answer:

SECTION LEARNING OBJECTIVES

By the end of this section, you will be able to do the following:

Distinguish between static friction and kinetic friction

Solve problems involving inclined planes

Section Key Terms

kinetic friction static friction

Static Friction and Kinetic Friction

Recall from the previous chapter that friction is a force that opposes motion, and is around us all the time. Friction allows us to move, which you have discovered if you have ever tried to walk on ice.

There are different types of friction—kinetic and static. Kinetic friction acts on an object in motion, while static friction acts on an object or system at rest. The maximum static friction is usually greater than the kinetic friction between the objects.

Imagine, for example, trying to slide a heavy crate across a concrete floor. You may push harder and harder on the crate and not move it at all. This means that the static friction responds to what you do—it increases to be equal to and in the opposite direction of your push. But if you finally push hard enough, the crate seems to slip suddenly and starts to move. Once in motion, it is easier to keep it in motion than it was to get it started because the kinetic friction force is less than the static friction force. If you were to add mass to the crate, (for example, by placing a box on top of it) you would need to push even harder to get it started and also to keep it moving. If, on the other hand, you oiled the concrete you would find it easier to get the crate started and keep it going.

Figure 5.33 shows how friction occurs at the interface between two objects. Magnifying these surfaces shows that they are rough on the microscopic level. So when you push to get an object moving (in this case, a crate), you must raise the object until it can skip along with just the tips of the surface hitting, break off the points, or do both. The harder the surfaces are pushed together (such as if another box is placed on the crate), the more force is needed to move them.

Hey guys can anyone list chemical engineering advancement that has been discovered within the past 20 years

Answers

Top 10 Emerging Technologies in Chemistry
Nanopesticides. The world population keeps growing. ...
Enantio selective organocatalysis. ...
Solid-state batteries. ...
Flow Chemistry. ...
Porous material for Water Harvesting. ...
Directed evolution of selective enzymes. ...
From plastics to monomers. ...

Key to the success of grid computing is a(n) _____ that acts as a grid leader and traffic monitor.

Answers

Key to the success of grid computing is a(n) central server that acts as a grid leader and traffic monitor.

What is grid computing?Grid computing refers to the use of widely dispersed computer resources. A computer grid is analogous to a distributed system that contains multiple files and non-interactive tasks. Grid computers, as opposed to traditional high-performance computing systems such as cluster computing, have each node configured to run a distinct job or application. Furthermore, grid computers are typically more diverse and geographically distributed than cluster computers (and hence not physically connected). Although a single grid may be dedicated to a specific application, grids are frequently used for a variety of purposes. Grids are frequently built using software libraries for general-purpose grid middleware. Grid sizes are available in a variety of sizes.

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Leah's Toys makes rubber balls. The current process is capable of producing balls that weigh, on average, 2.5 ounces, with a standard deviation of 0.34 ounces. a. The upper and lower tolerance limits are 2.9 ounces and 2.1 ounces respectively. The process capability ratio is 392 . (Enter your response rounded to three decimal places.) Leah's capable of meeting the tolerance limits 99.7% of the time. b. In order to exactly meet the tolerance limits 99.7% of the time, Leah's Toys would need to reduce the standard deviation to olices. (Enter your response rounded to two decimal places.) c. Suppose Leah's ioys invests in process improvements that lower the standard deviation to just 0.13 ounces. This en gh for Leah's to achieve Six Sigma quality levels with regard to the weight of the balls, because a new process capat y ratio is (Enter your response rounded to three decimal places.)

Answers

Let's take this step by step.

a. The process capability ratio is given as Cp = 392. However, I believe there may be a misunderstanding or typo in the original question. Process capability ratio typically falls within the range 0-3. The formula for the process capability ratio (Cp) is:

Cp = (USL - LSL) / (6σ)

Where:

- USL is the upper specification limit (in this case, 2.9 ounces)

- LSL is the lower specification limit (in this case, 2.1 ounces)

- σ is the standard deviation (in this case, 0.34 ounces)

Let's recalculate the Cp given these inputs:

Cp = (2.9 - 2.1) / (6 * 0.34) = 0.800

This indicates that Leah's Toys' process is currently capable of producing balls within the tolerance limits about 80% of the time, assuming a normal distribution of weights. There may be a misunderstanding with the provided Cp of 392.

b. If Leah's Toys wants to meet the tolerance limits 99.7% of the time, then they would need to reduce the standard deviation such that the output falls within +/- 3σ (3 standard deviations from the mean). This is also known as achieving a "Six Sigma" level of quality.

We can rearrange the Cp equation to solve for σ:

σ = (USL - LSL) / (6 * Cp)

Assuming a Cp of 1.0 (which represents a process that meets tolerance limits 99.73% of the time under a normal distribution), we find:

σ = (2.9 - 2.1) / (6 * 1.0) = 0.13 ounces

This is the standard deviation Leah's Toys would need to achieve to meet the tolerance limits 99.7% of the time.

c. If Leah's Toys invests in process improvements and lowers the standard deviation to 0.13 ounces, then the new process capability ratio (Cp) would be:

Cp = (2.9 - 2.1) / (6 * 0.13) = 1.026

This means Leah's Toys could achieve Six Sigma quality levels (99.7% of products within specification limits) with this new standard deviation. Six Sigma is often represented by a Cp or Cpk (which takes into account mean shift) of 1.5 or more, but in a perfect process centered between the limits, a Cp of 1.0 represents 99.73% within limits, which aligns with your 99.7% target.

A cylindrical rod of copper (E = 110 GPa) having a yield strength of 240 MPa is to be subjected

to a load of 6660 N. If the length of the rod is 380 mm, what must be the diameter to allow an

elongation of 0.50 mm?

Answers

Answer:

"7.654 mm" is the correct solution.

Explanation:

According to the question,

\(E=110\times 10^3 \ N/mm^2\)\(\sigma_y = 240 \ mPa\)\(P = 6660 \ N\)\(L = 380 \ mm\)\(\delta = 0.5 \ mm\)

Now,

As we know,

The Elongation,

⇒ \(E=\frac{\sigma}{e}\)

       \(=\frac{\frac{P}{A} }{\frac{\delta}{L} }\)

or,

⇒ \(\delta=\frac{PL}{AE}\)

By substituting the values, we get

 \(0.5=\frac{6660\times 380}{(\frac{\pi}{4}D^2)(110\times 10^3)}\)

then,

⇒ \(D^2=58.587\)

     \(D=\sqrt{58.587}\)

         \(=7.654 \ mm\)

What is the hexadecimal (base 16) value of the decimal 25? A. 11001 B. 19 C. AS D. 20 ​

Answers

Answer:

19

Explanation:

i think this is the right answer

hope it helps :)

For the beam loaded as shown in Fig Q2a. perform the following task:
Calculate the support reactions at A and E;
(i)
Draw the shear force diagram for the beam showing all important
values;
>
(iii)
Draw the bending moment diagram for the beam showing all
important values.
6 kN
10 KN
2 kN/m
B
D
1 m
1 m
1 m
1 m

Answers

Answer:

a

Explanation:

aaaaaa

Why is logging done during drilling?

Answers

Answer:

Logging while drilling (LWD) is a technique of conveying well logging tools into the well borehole downhole as part of the bottom hole assembly (BHA). ... In these situations, the LWD measurement ensures that some measurement of the subsurface is captured in the event that wireline operations are not possible


TRUCK is to TRANSPORT as ...

Answers

TRUCK is to TRANSPORT as, GOAL is to REACH​.

What is transportation?

Transportation can be defined as a process that involves the movement of humans, products, and other things from one geographical area to another, especially through various means (forms) such as the following:

Water (Ship)Land (Truck)Air (Airplane)Rail (Train)

What is a goal?

A goal can be defined as an outcome statement and strategic objectives that defines what an individual or a group of people (team) hopes to successfully achieve (accomplish) or reach in the future i.e over a specific period of time.

In conclusion, we can reasonably infer and logically deduce that TRUCK is to TRANSPORT as, GOAL is to REACH​.

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Complete Question:

TRUCK is to TRANSPORT as ...

BASKET is to CART

CHORE is to CLEAN

WHEEL is to AXEL

BED is to REST

GOAL is to REACH​

19.2 In a certain manual operation, the first work unit required 7.83 min to complete and the learning rate is known to be 84% in the Wright model. Using this learning curve model, determines the average cumulative times to produce (a) the second unit, (b) the 10th unit, and (c) the 100th unit. (d) Find the total cumulative time for the 100 units and the unit time. for the 100th unit.

Answers

Using this learning curve model, the average cumulative times to produce (a) the second unit is 6.54 min  (b) the 10th unit is 4.39 min and (c) the 100th unit is 2.46 min (d) Find the total cumulative time for the 100 units and the unit time is 1.84 min.

What is learning curve model?

The learning curve theory has proposed that the efficiency of a learner in a task gets improved by the time. The more the learner performs the task, the better is the performance.

a) m =ln (0.84)/ln2 = -0.25154

T2 = 7.83 (2)^(-0.25154) = 7.84 x 0.84 = 6.54 min

b) T10 = 7.83 x (10)^(-0.25154) = 7.84 x 0.5604 = 4.39 min

c) T100 = 7.83 x (100)^(-0.25154) = 7.84 x 0.3140= 2.46 min

Thus, the average cumulative times to produce (a) the second unit is 6.54 min  (b) the 10th unit is 4.39 min and (c) the 100th unit is 2.46 min

The total cumulative time for 100th unit is

d) TT100 =7.873 x (100)^(1-0.25154) = 7.84 x 31.40= 245.86 min

TT99 = =7.873 x (99)^(1-0.25154) = 7.84 x 31.164= 244.02 min

T100 = 245.86 -244.02 = 1.84 min

Therefore,  the total cumulative time for the 100 units and unit time is  1.84 min

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Please help me solve the following problems, thank you
Describe TWO factors that need to be considered when selecting material for use as furnace linings.

Answers

When selecting materials for use as furnace linings, several factors need to be carefully considered. Two important factors are:

Temperature Resistance: Furnaces operate at high temperatures, and the chosen lining material must have excellent temperature resistance to withstand the extreme heat. Different furnaces may require different temperature capabilities, so it is crucial to select a lining material that can withstand the specific operating temperature range. Factors such as melting point, softening point, and thermal conductivity of the material should be evaluated to ensure it can handle the heat without deteriorating or deforming. High-temperature-resistant materials, such as refractory ceramics (e.g., alumina, silica, zirconia), refractory metals (e.g., molybdenum, tungsten), or specialized heat-resistant alloys, are commonly used for furnace linings.

Chemical Compatibility: Furnaces often involve various chemical processes and environments, such as oxidation, reduction, acidic or alkaline atmospheres, or exposure to corrosive gases. The selected lining material must be chemically compatible with these conditions to prevent degradation or chemical reactions that could compromise the integrity of the lining. It is important to consider factors such as resistance to chemical attack, stability in different atmospheres, and potential reactions with the process materials or by-products. Suitable lining materials may include refractory materials that are chemically inert or have specific chemical resistance properties, such as high-alumina refractories, silica-based refractories, or certain types of specialty coatings.

By carefully evaluating temperature resistance and chemical compatibility, the selection of a suitable lining material can ensure optimal performance, longevity, and safety of furnace operations.

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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

why do u have to have certain limits for questions

Answers

Answer:

ok

Explanation:

why are high compression ratios not used in spark-ignition engines?

Answers

Answer:they can cause detonation of the engine

Explanation:Answer and Explanation: High compression ratios are not used in spark-ignition engines as they can cause detonation of the engine. This detonation of an engine is commonly known as knocking. The engine knocking occurs especially when octane-rated fuel is utilized.

High compression ratios are not used in spark-ignition engines because they can cause irregular combustion, such as pre-ignition and knocking, which can reduce efficiency and damage the engine. Pre-ignition is when the fuel-air mixture ignites before the spark plug fires, and knocking is when the mixture detonates unevenly and creates pressure waves that can harm the engine components. These phenomena are more likely to occur when the compression ratio is high because the end-gas temperature and pressure are higher, which increases the reactivity of the mixture. To avoid pre-ignition and knocking, spark-ignition engines need to use high-octane fuels that have higher resistance to auto-ignition. However, high-octane fuels are more expensive and less available than low-octane fuels, which limits the use of high compression ratios in spark-ignition engines. Some possible ways to enable high compression ratios in spark-ignition engines are to use high-pressure gasoline direct injection, which can enhance the air-fuel mixing and flame speed, or to use fuels with high octane sensitivity, which can reduce the end-gas reactivity.

Steam at 75 kPa and 8 percent quality is contained in a spring-loaded piston–cylinder device, as shown in Figure, with an initial volume of 2 m3 . Steam is now heated until its volume is 5 m3 and its pressure is 225 kPa. Determine the heat transferred to and the work produced by the steam during this process.

Answers

The heat transferred to and the work produced by the steam during this process  is 13781.618 kJ/kg

​How to calcultae the heat?

The Net Change in Enthalpy will be:

= m ( h2 - h1 ) = 11.216 ( 1755.405 - 566.78 ) = 13331.618 kJ/kg

Work Done (Area Under PV curve) = 1/2 x (P1 + P2) x ( V1 - V2)

= 1/2 x ( 75 + 225) x (5 - 2)

W = 450 KJ

From the First Law of Thermodynamics, Q = U + W

So, Heat Transfer = Change in Internal Energy + Work Done

= 13331.618 + 450

Q = 13781.618 kJ/kg

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The bath tub vortex hown in gure(4) conit of a rotational region (rigid body motion)
up to a radiu of r = 0. 6 meter where the tangential velocity of uid under rotation varie
linearly with radiu and an irrotational region beyond r = 0. 6 meter where the ow velocity
i inverely proportional to radiu. The tangential velocity variation with radiu of vortex i
hown in upper part of gure(4) wherea the prole of free urface of water i hown in the
lower part. Determine the depth of the free urface at origin which i placed at the level of
free urface far from the origin. (10

Answers

The bath tub vortex shown in Figure 4 has a rotational zone that extends up to a radius of r = 0. 6 meters and has a variable tangential velocity of the fluid under rotation.

This page is about the line segment. A bone is a radius; see Bone . In other contexts, the radius of a circle or sphere is any line segment that, in classical geometry, connects the object's center to its perimeter; in more modern usage, it also refers to the length of such line segments. The Latin origin of the term "radius" gives it the meanings "ray" and "the spoke of a chariot wheel." The term radius can be pluralized using radii or the standard English radii. The most common abbreviations and names for the mathematical variable radius are R and r. By extension, the diameter D and the radius R are equal. The phrase could relate to an absence of a center.

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Please select the word from the list that best fits the definition I love horses and want to be a veterinarian

Answers

The answer is Intrinsic

Answer:

the right word is Intrinsic

how to find density ? because the answer 764.526kg/m^3

can someone check ?


Q2)
volume =2.5m^3
weight = 18.75 kN

•specific weight=weight/volume
=18.75/2.5
=7.5kN/m^3

density =
mass/volume
no mass , so use formula weight =mass x gravity

18.75kN=mass x
9.81ms^-2

mass = 18.75 kN/9.81
mass =1.911

density = mass/volume
=1.911kg/2.5m3
=0.7644 kg/m^3

how to find density ? because the answer 764.526kg/m^3can someone check ?Q2) volume =2.5m^3weight = 18.75

Answers

Answer:

The weight is 18.75 KN/m³ that means

weight = 18750 N/m³

and mass = 1911 kg

One day, Taylor walks up behind Mindy and hits her in the face, causing a black eye. Which of the following is true?
Group of answer choices

a) Taylor did not assault Mindy because Mindy did not see Taylor hit her.
b) Taylor is guilty of both assault and battery.
c) Taylor is guilty of battery.
d) Taylor is not guilty because Mindy’s black eye is a minor injury.

Answers

In this scenario, Taylor is guilty of battery is true. Battery refers to the intentional and unlawful physical contact with another person that causes harm or offensive contact. So, option c is the correct answer.

A person who commits battery will be found guilty of a misdemeanor. In some cases, battery can be elevated to a felony.

In this case, Taylor physically hit Mindy in the face, resulting in a black eye. Regardless of whether Mindy saw the act or the severity of the injury, the deliberate act of physically striking Mindy constitutes battery.

The presence of physical contact without consent and the resulting harm establishes Taylor's liability for the offense of battery. So, the correct answer is option c.

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Aiman is 80 inches tall. How tall is Aiman in centimeters? Show your work.

Answers

203.2 centimeters.
This is because 1 inch = 2.54 centimeters which means multiply 80 inches X 2.54 = 203.2 centimeters.

state the degree of the homogeneity (1)sin() (2) (x+y+1) ². (3)√x+y(4x+3y).

Answers

Answer:

(2) ( (x+y)⁴)³(3)+(3)x(4x+y)

Explanation:

correct me if I'm wrong^_^

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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Is reinforcement needed in a retaining wall

Answers

reinforcement means to rebuild. so yeah i guess you need to reinforce a walk
Yea, bc you’ll need help reestablishing it
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