explain why stainless steel is more corrosion resistant in many environments than plain carbon steel.

Answers

Answer 1

Because of the addition of chromium, stainless steel is more corrosion resistant than carbon steel. Chromium has a stronger affinity for oxygen than iron. When chromium bonded to oxygen, it shapes a chromium oxide layer that protects the residual material from degradation and corrosion.

Define Stainless steel?

Because of the addition of chromium, stainless steel is more corrosion resistant than carbon steel.  In fact, the construction industry's actual recovery rate is close to 100%. Stainless steel is also environmentally neutral and inert, and its longevity ensures that it meets the requirements of sustainable building. Furthermore, it does not leach compounds that could alter its composition when exposed to elements such as water.

In addition to these environmental advantages, stainless steel is aesthetically pleasing, extremely hygienic, simple to maintain, long-lasting, and versatile. As a result, stainless steel can be found in a wide range of everyday items. Also it plays an important role in a variety of industries, such as energy, transportation, constructing, research, pharmaceutics, food and logistics.

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Related Questions

branch-circuit conductors shall have an ampacity ? the maximum load they are intended to serve.

Answers

Branch-circuit conductors shall have an ampacity that is sufficient to safely carry the maximum load they are intended to serve. The ampacity of branch-circuit conductors is determined based on the anticipated current demands of the connected loads.

The National Electrical Code (NEC) provides guidelines and ampacity tables that help determine the minimum required ampacity for branch-circuit conductors based on the type of conductor, insulation rating, and the maximum allowable temperature rise.

It is important to correctly size the branch-circuit conductors to ensure they can handle the expected load without exceeding their ampacity. Undersized conductors can result in overheating, voltage drop, and potential hazards. Oversized conductors may not be cost-effective and can take up unnecessary space.

To determine the appropriate ampacity for branch-circuit conductors, factors such as the type and number of connected devices, continuous loads, and future expansion should be considered. It is recommended to consult the NEC or a qualified electrical professional to ensure compliance with the specific requirements and calculations for ampacity determination.

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Sara is asked to create a controller for light sensors. When the light falls on the sensor, it needs to indicate when a particular object is moved from its original position. For this, she needs a credit card-sized motherboard with a microcontroller on it. Which option should she select?
a.
SoC
b.
Raspberry Pi
c.
Arduino
d.
FPGA

Answers

Arduino. It's as easy to use Arduino to blink an LED to control an AC light or appliance.

What is Arduino used for?To put it briefly, an Arduino is an open hardware development board that makers, hobbyists, and tinkerers may use to create and construct objects that interact with the physical environment.Arduino is a firm that creates and produces single-board microcontrollers and microcontroller kits for creating digital devices. It is an open-source hardware and software initiative.The circuit board of an Arduino contains a variety of parts that interface with one another. The layout has evolved through time, and some iterations now include additional components. The Arduino IDE is free software that is written in Java and may be used with Windows, Mac, and Linux computers. The IDE gives you the ability to create code in a unique environment with syntax highlighting and other features that make coding simpler, and then you can quickly load your code onto the device with just a few clicks.

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key components of wait line simulations include all of the following except

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Key components of wait line simulations include: Arrival Process, Service Process, Queue Discipline, System Capacity, Performance Measures.

Arrival Process: The process that determines how customers arrive at the system.

Service Process: The process that determines how customers are served or processed.

Queue Discipline: The rules that govern the order in which customers are served.

System Capacity: The maximum number of customers the system can accommodate at a given time.

Performance Measures: The metrics used to evaluate the performance of the system, such as average waiting time, utilization, or throughput.

Based on the options provided, the key components of wait line simulations include all of the above. Therefore, none of the options should be excluded.

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consider the ""zero sum"" voltage loop rule and the current junction rule for this simple circuit. state a prediction about voltage or current in this circuit that relates to one of those rules. (note: you will be testing both voltage and current for this circuit

Answers

The prediction related to the "zero sum" voltage loop rule in this circuit is that the sum of the voltages around a closed loop will be zero.

In simple terms, the "zero sum" voltage loop rule states that the total voltage gained or lost around a closed loop in a circuit is equal to zero. This means that the sum of all the voltage sources (such as batteries) and voltage drops (such as resistors) in the loop must add up to zero.

By applying this rule to the circuit in question, we can predict that if we add up all the voltage sources and voltage drops around any closed loop in the circuit, the result will be zero. This prediction allows us to check the accuracy of our circuit calculations and ensure that the laws of conservation of energy are being upheld.

Overall, the "zero sum" voltage loop rule helps us analyze circuits and make predictions about the voltage distribution within them. It is a fundamental principle in circuit analysis and plays a crucial role in understanding and troubleshooting electrical circuits.

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the tensile strength of a unified fastener is measured in

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The tensile strength of a unified fastener is typically measured in pounds per square inch (psi) or in newtons per square millimeter (N/mm²).

Tensile strength is a critical mechanical property that determines the maximum amount of pulling force a fastener can withstand before breaking or permanently deforming. It is an essential consideration in engineering and construction applications where high strength and resistance to pulling forces are required.

To measure tensile strength, fastener samples are subjected to a controlled tensile load until they fracture. The resulting force at the point of failure is then divided by the cross-sectional area of the fastener to determine its tensile strength, which is usually expressed in psi or N/mm².

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2-design a set of simple test programs to determine the type compatibility rules of a c compiler to which you have access. Write a report of your findings

Answers

When designing a set of simple test programs to determine the type compatibility rules of a C compiler to which you have access, it is important to consider the different data types that are used in C programming. An example of a set of test programs that can be used to determine the type compatibility rules of a C compiler:

Integer Test the compatibility of the C compiler with integer data types. It declares two variables of type int, initializes them with values, and then adds them together. The result is printed to the screen. If the program compiles and runs without any errors, then the C compiler is compatible with integer data types.

Floating-Point Test  the compatibility of the C compiler with floating-point data types. It declares two variables of type float, initializes them with values, and then adds them together. The result is printed to the screen. If the program compiles and runs without any errors, then the C compiler is compatible with floating-point data types.

By running the set of simple test programs described above, you can determine the type compatibility rules of a C compiler to which you have access. If any of the programs do not compile or run without errors, then you can determine which data types are not compatible with the C compiler and adjust your code accordingly.

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An evacuated tank is filled with gas from a constant pressure line. Develop an expression relating the temperature of the gas in the tank to the temperature of the gas in the line. Assume the gas is ideal with constant heat capacities, and ignore heat transfer between the gas and the tank.

Answers

The temperature of the gas in the tank is the ratio of heat capacities times the temperature of gas in the constant pressure line.

What is temperature?

It should be noted that temperature simply means the measure of hotness and coldness in a body

From the given information, H is the enthalpy of gas on the constant pressure line, m is the mass flow rate and U is the internal energy of gas.

Here, the temperature of the gas in the tank is the ratio of heat capacities times the temperature of gas in the constant pressure line.

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An aluminum block weighing 28 kg initially at 140°C is brought into contact with a block of iron weighing 36 kg at 60°C in an insulated enclosure. Determine the final equilibrium temperature and the total entropy change for this process. The specific heat of aluminum at 400 K is cp = 0.949 kJ/kg·K. The specific heat of iron at room temperature is cp = 0.45 kJ/kg·K.

Answers

Answer:

The equilibrium temperature is 109.7°C

The total entropy change for the process is 0.23 kJ/K

Explanation:

The parameters given are;

The initial temperature of aluminium, T₁ₐ = 140°C = 413.15 K

Mass, m₁, of aluminium block = 28 kg

The specific heat of aluminium, c₁, at 400 K = 0.949 kJ/(kg·K)

The initial temperature of iron, T₁ₙ = 60°C = 333.15 K

Mass, m₂, of iron block = 36 kg

The specific heat of iron, c₂, at room temperature = 0.45 kJ/(kg·K)

The heat lost by the aluminium = Heat gained by the iron

The heat lost by the aluminium = m₁ × c₁ × (T₁ₐ - Tₓ)

The heat lost by the aluminium = 28 × 0.949 × (413.15 - Tₓ)

The heat gained by the iron =  m₂ × c₂ × (Tₓ - T₁ₙ)

The heat gained by the iron =  36 × 0.45 × (Tₓ - 333.15)

Hence;

28 × 0.949 × (413.15 - Tₓ) = 36 × 0.45 × (Tₓ - 333.15)

26.572 × (413.15 - Tₓ) = 16.2 × (Tₓ - 333.15)

∴ (26.572 + 16.2) × Tₓ = 26.572 × 413.15 + 16.2 × 333.15

42.772·Tₓ = 16375.2518

Tₓ = 382.85 K = 109.7°C

The total entropy change of the process is given by the following relation;

\(\Delta S = \Delta S_{Fe} + \Delta S_{Al}\)

\(=m_{1}c_{1}ln\dfrac{T_{x}}{T_{1n}}+m_{2}c_{2}ln\dfrac{T_{x}}{T_{1a}}\)

\(=28 \times 0.949 \times ln\dfrac{382.85}{413.15}+36 \times 0.45 \times ln\dfrac{382.85}{333.15} = 0.23 \, \dfrac{kJ}{K}\)

what benefit is a reduced time lost in Osha

Answers

It is to be noted that in OSHA, reducing time lost due to injuries and accidents can lead to increased productivity and efficiency, improved financial performance, and better employee morale and retention.

What is OSHA?

The Occupational Safety and Health Act of 1970 established the Occupational Safety and Health Administration (OSHA) to safeguard employees' safety and health by creating and enforcing standards and providing training, outreach, information, and support.

Reducing time lost due to injuries and accidents can have a number of advantages for a business. By reducing injuries and accidents, a firm may save time and money on absenteeism, medical care, and workers' compensation claims. This can lead to enhanced production and efficiency, which can contribute to better financial performance.

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what is time dependent​

Answers

Answer:

Adjective. time-dependent (not comparable) (mathematics, physics) Determined by the value of a variable representing time.

Explanation:

Plz mark brainliest thanks

Answer: Adjective. time-dependent (not comparable) (mathematics, physics) Determined by the value of a variable representing time

design a randomized variant of binary search where in each iteration we compare the target with multiple middle elements chosen at random

Answers

Iterative implementation of Randomized Binary Search in Python based program.

# Python program to implement recursive

# randomized algorithm.

# To generate random number

# between x and y ie.. [x, y]

from random import randint

def getRandom(x, y):

   return randint(x,y)

# A iterative randomized binary search function.

# It returns location of x in

# given array arr[l..r] if present, otherwise -1

def randomizedBinarySearch(arr, l, r, x):

   while (l <= r):

       # Here we have defined middle as

       # random index between l and r ie.. [l, r]

       m = getRandom(l, r)

       # Check if x is present at mid

       if (arr[m] == x):

           return m

       # If x greater, ignore left half

       if (arr[m] < x):

           l = m + 1

       # If x is smaller, ignore right half

       else:

           r = m - 1

   # if we reach here, then element was

   # not present

   return -1

# Driver code

arr = [2, 3, 4, 10, 40]

n = len(arr)

x = 10

result = randomizedBinarySearch(arr, 0, n-1, x)

if result == 1:

   print("Element is not present in array")

else:

   print("Element is present at index", result)

Output:

Element is present at index 3

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oscilloscopes have parallel metal plates inside them to deflect the electron beam. these plates are called the deflecting plates. typically, they are squares 3.0 cm on a side and separated by 5.0 mm, with very thin air in between.

Answers

These plates are typically squares that measure 3.0 cm on each side and are separated by a distance of 5.0 mm. The reason for this separation is to allow for a very thin layer of air between the plates.


When a voltage is applied to the deflecting plates, they create an electric field between them, which in turn affects the path of the electron beam. The magnitude and direction of the voltage applied to the plates determines the amount and direction of deflection that the electron beam undergoes. This allows the oscilloscope to display a graphical representation of the electrical signals it is measuring.

Overall, the deflecting plates are a crucial component of the oscilloscope, as they allow for precise and accurate measurements of electrical signals.

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Water flows without friction through a horizontal pipe and enters a section where the cross sectional area is smaller. The velocity profile is uniform at sections 1 and 2.
Water flows without friction through a horizontal
The correct statement about the static pressure p2 relative to p1 and the velocity V2 relative to V1 along the streamline down the center of the pipe is?
(A) p2 < p1 and V2 < V1
(B) p2 < p1 and V2 > V1
(C) p2 > p1 and V2 < V1
(D) p2 > p1 and V2 > V1
(E) The relation between p2 and p1 is indeterminate

Answers

Option C. The correct statement about the static pressure p₂ relative to p₁ and the velocity V₂ relative to V₁ along the streamline down the center of the pipe is p₂ > p₁ and V₂ < V₁.

When fluid flows without friction through a horizontal pipe and enters a section where the cross-sectional area is smaller, the static pressure at the smaller area decreases relative to the static pressure at the larger area, whereas the velocity increases. Therefore, the correct statement about the static pressure p₂ relative to p₁ and the velocity V₂ relative to V₁ along the streamline down the center of the pipe is p₂ > p₁ and V₂ < V₁.

This is because the mass flow rate is conserved across any cross-section of the pipe, and this leads to an increase in fluid speed as the cross-sectional area decreases (and vice versa). As a result, the fluid experiences an increase in velocity head and a decrease in pressure head as it moves from the larger area to the smaller area.

Therefore the correct option is C.

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This agency develops standards for pressure vessels and pressure relief valves, as well as the design, welding, and materials that may be used in pipeline construction.
Select one:
a. American Petroleum Institute
b. American Society of Mechanical Engineers
c. American Gas Association
d. National Fire Protection Association

Answers

Answer:

b. American Society of Mechanical Engineers

Explanation:

The "American Society of Mechanical Engineers" (ASME) is an organization that ensures the development of engineering fields. It is an accreditation organization that ensures parties will comply to the ASME Boiler and Pressure Vessel Code or BPVC.

The BPVC is a standard being followed by ASME in order to regulate the different pressure vessels and valves. Such standard prevents boiler explosion incidents.

following angles between the magnetic field and the current. (a) 60.0

What is the equation for the force acting on a current-carrying wire? N (b) 90.0

N (c) 120

N

Answers

These equations provide the force acting on a current-carrying wire at different angles with the magnetic field.

(a) The equation for the force acting on a current-carrying wire when the angle between the magnetic field and the current is 60.0° can be determined using the formula:

Force (N) = Current (A) × Length of Wire (m) × Magnetic Field Strength (T) × Sin(θ)

where θ is the angle between the magnetic field and the current. In this case, θ = 60.0°. Therefore, the equation for the force acting on the wire would be:

Force = Current × Length × Magnetic Field Strength × Sin(60.0°)

(b) When the angle between the magnetic field and the current is 90.0°, the force acting on the current-carrying wire can be calculated using the same equation as mentioned above. However, since the Sin(90.0°) is equal to 1, the equation simplifies to:

Force = Current × Length × Magnetic Field Strength

(c) Similarly, when the angle between the magnetic field and the current is 120°, the force equation remains the same. The Sin(120°) is equal to √3/2, resulting in the equation:

Force = Current × Length × Magnetic Field Strength × (√3/2)

These equations provide the force acting on a current-carrying wire at different angles with the magnetic field.

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The cost to rent a scooter is $15.50 per hour and the cost to rent a watercraft is $22.80 per hour use the expression 15.5 S +22.8 W you The cost to rent a scooter is $15.50 per hour and the cost to rent a water craft is $22.80 per hour use the expression 15.5 S +22.8 W you you

Answers

Complete Question:

The cost to rent a scooter is $15.50 per hour and the cost to rent a watercraft

is $22.80 per hour. Use the expression 15.5s + 22.8w to determine how much it would cost to rent a scooter for 3 hours and a watercraft for 1 hours.

Answer:

$69.39

Explanation:

Given

15.5s + 22.8w

Required

Evaluate, when w = 1 and s = 3

To do this, we simply substitute 3 for a and 1 for w in the given expression.

15.5s + 22.8w becomes..

15.5 * 3 + 22.8 * 1

46.5 + 22.8

69.3

Hence, the cost is $69.30

A pin B and D are each of 8mm diameter and act as single shape pin C is 6mm diameter and act as double shape for the laoding shaw determine averege shear stress in each​

Answers

Answer:

what's the question?...........

Per ASME Boiler and Pressure Code, what is the ruling regarding the requirement of a water column on all boilers?

Answers

According to ASME Boiler and Pressure Code, water columns are required on all steam boilers.

The purpose of a water column is to provide a visual indication of the water level in the boiler. This is important because if the water level in the boiler gets too low, it can cause damage to the boiler and be a safety hazard.

The ASME Boiler and Pressure Code sets safety standards for boilers and pressure vessels, and it requires water columns to be installed on all steam boilers. The water column typically consists of a vertical pipe with a valve at the bottom and a glass sight gauge at the top, which allows the operator to visually check the water level.

Additionally, some states and municipalities may have their own regulations regarding water columns and boiler safety, so it's important to be familiar with the relevant codes and standards in your area.

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consider an automobile dealership with three locations. Data fields exist for stock number, vehicle identification number, make, model, year, color, and invoice cost. Identify the possible candidate keys, the likely primary key, a probable foreign key, and potential secondary keys.



Answers

Possible candidate keys for this automobile dealership include the stock number and the vehicle identification number (VIN), as they are unique identifiers for each vehicle in the dealership's inventory.

The likely primary key would be the stock number or VIN, as they are both unique and can be used to easily search and retrieve information about a specific vehicle.A probable foreign key could be the invoice number, as it may be used to link vehicle information with the dealership's accounting system. For example, a sales transaction for a specific vehicle may reference the invoice number, which can be used to retrieve the invoice cost and other financial information.Potential secondary keys could include the make, model, year, and color of the vehicle. These fields can be used to search and filter the inventory based on specific criteria, such as finding all vehicles of a certain make or year.

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the instrument used to measure middle ear function is a(n)

Answers

The instrument used to measure middle ear function is a tympanometer.

What is the tympanometer?

A tympanometer is a medical device used to evaluate the functionality of the middle ear. It tests the function of the eardrum (tympanic membrane) and the conduction bones (ossicles) in the middle ear by adjusting pressure and measuring the movement of the eardrum in response.

The purpose of a tympanometer is to detect fluid accumulation in the middle ear, a ruptured eardrum, or a problem with the ossicles' conduction. It can also provide information on hearing loss and the effectiveness of medical treatment.

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The instrument used to measure middle ear function is a Tympanometer.Tympanometer is the medical device used for measuring middle ear function. It's a non-invasive tool that evaluates the functionality of the middle ear by measuring the movement of the eardrum (tympanic membrane).

The tympanometer is used to measure the compliance and mobility of the tympanic membrane and the ossicular chain. The procedure is painless and straightforward; a small probe is placed in the ear canal to deliver a brief pulse of air pressure, creating a change in the air pressure in the ear canal. The tympanometer then measures the amount of energy that is reflected back from the eardrum. The result is a graph that indicates the degree of mobility and compliance of the tympanic membraneIt can help the audiologist identify potential hearing problems, make recommendations for further diagnostic testing or treatment, and monitor the effectiveness of medical or surgical interventions.

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our aqueduct systems and engineered waterways have always taken into account the natural system of water movement in california to make the best possible use of our water in this state. group of answer choices true false

Answers

Our aqueduct systems as well as engineered waterways always have taken into account California's natural system of water movement in order to make the best use of our water in this state.

How aqueduct and engineered waterways helping in california?

The California Aqueduct transports water from the Sacramento-San Joaquin Delta to the San Joaquin Valley as well as Southern California as part of the State Water Project.

The 444-mile long California Aqueduct (officially known as that of the Edmund G. Brown California Aqueduct) starts at the Harvey O. Banks Pumping Plant or rather parallels Interstate 5 south towards the Tehachapi Mountains. It was built as part of a $1.75 billion bond approved by voters in 1960.A massive amount of water is lifted 2,000 feet just at A. D. Edmonston Pumping Plant to cross the Tehachapis in to the Southern California – more water is pumped higher than any other place in the world.

Thus, Our aqueduct systems as well as engineered waterways always have taken into account California's natural system of water movement in order to make the best use of our water in this state.

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Engineers study the properties of fluids, including viscosity and compressibility, to test the efficiency of systems under given conditions. True or False?

Answers

Answer:

True.

Explanation:

The compressibility of a fluid can be defined as a measure of the change in volume (density) with respect to the amount of pressure applied to the fluid. Thus, as the pressure of a compressible fluid increases, both its viscosity and density increases.

Some examples of compressible fluids are vapors, gases, air etc.

Additionally, the compressibility of fluids plays a significant role in the field of science such as in aerodynamics, fluid mechanics, thermodynamics etc.

Viscosity can be defined as a quantity expressing the magnitude of internal friction that restricts the ease of flow between parallel layers at some distance apart having unit speed relative to each other.

These properties of fluids, including viscosity and compressibility are usually being studied by engineers such as civil engineers, in order to test the efficiency of systems under given conditions.

Answer:

true

Explanation:

edge

Traffic fatalities are _____________ at night compared to daytime.

Answers

Traffic fatalities are higher at night compared to daytime.

During nighttime, visibility is reduced, and it becomes more challenging for drivers to see clearly, judge distances accurately, and react to unexpected situations. The lack of adequate lighting on roads also contributes to increased risks. Additionally, factors such as fatigue, impaired driving due to alcohol or drugs, and increased prevalence of reckless driving behaviors during nighttime can further contribute to the higher rate of traffic fatalities.

Therefore, the statement implies that the number of traffic fatalities is greater during nighttime compared to daytime. This is supported by statistical data and studies that consistently show an increased risk of accidents and fatalities during nighttime hours.

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What are the potential hazards relating to materials handling injuries?
Select the 4 answer options that apply.
un
Being crushed by machines, falling materials, or improper materials
Being electrocuted
Being struck by materials or caught in pinch points
Improper manual lifting or carrying loads that are too heavy
Incorrectly cutting ties or securing devices

Answers

Answer:

it's says potential that something not moving.

incorrectly cutting ties or securing devices because

this is so dangerous thing I know because being electrocuted is here this for me.

'Material Handling Injuries' are characterized as the 'injuries caused at work due to the carrying or holding of heavy loads.'

The probable hazards associated with 'materials' in terms of material handling injuries include:

A). Being crushed by machines, falling materials, or improper materials.

C). Being struck by materials or caught in pinch points

D). Improper manual lifting or carrying loads that are too heavy.

E). Incorrectly cutting ties or securing devices.

The probable injury threats to the workers while handling materials include all the above-mentioned situations.

In the case of lifting heavy materials at a worksite, the workers might get quashed through heavy machines and lead to strain in the muscles or bones of the workers.Carrying inadequate materials like toxic or combustible materials may cause serious harm to them. Lifting of heavyweights can cause sprain to the tissues of the workers and while there is also a chance that the heavy materials can cause them to be hit by them or get caught in choking points leading to suffocation or fainting.The improper usage of binding ties might lead the load to fall abruptly on the workers' body and damage his body. The other hazards are not associated with material handling rather using electrical equipment(shock or electrocution).

Thus, options A, C, D, and E are the correct answers.

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What are the potential hazards relating to materials handling injuries?Select the 4 answer options that

43) According to kinetic-molecular theory, if the temperature of a gas is raised from 100°C to 200°C, the average kinetic energy of the gas will
A) double

B) increase by a factor of 1.27

C) increase by a factor of 100

D) decrease by half

E) decrease by a factor of 100

Answers

A) double

According to the kinetic-molecular theory, the temperature of a gas is a measure of the average kinetic energy of the gas molecules. The kinetic energy of a molecule is the energy it possesses due to its motion. As the temperature of a gas increases, the average kinetic energy of the molecules increases.

If the temperature of a gas is raised from 100°C to 200°C, the average kinetic energy of the molecules will double. This is because the temperature increase is a 100% increase, and the average kinetic energy of the molecules will also increase by 100%.

It is important to note that this is only true if the volume and number of molecules in the gas are held constant. If the volume or number of molecules changes, the relationship between temperature and average kinetic energy may be different.

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Define extensive and intensive properties of thermodynamic system.

Answers

Answer:

An intense property is a physical attribute of a system that is independent of the size of the system or the quantity of material it contains. An extensive property of a system, on the other hand, is dependent on the size of the system or the amount of material in it.

Explanation:

Thermodynamic properties can be divided into two general classes, intensive and extensive properties. An intensive property is independent of the amount of mass. The value of an extensive property varies directly with the mass. Thus, if a quantity of matter in a given state is divided into two equal parts, each part will have the same value of intensive property as the original and half the value of the extensive property. Temperature, pressure, specific volume,and density are examples of intensive properties. Mass and total volume are examples of extensive properties.

Estimate the maximum expected thermal conductivity for a Cermet that contains 58 vol% titanium carbide (TiC) particles in a cobalt matrix. Assume thermal conductivities of 27 and 69 W/m-K for TiC and Co respectively.

Answers

Answer:

The right answer is "36.32 W/mk".

Explanation:

According to the question,

TiC = 76%

or,

      = 0.76

CO = 24%

or,

     = 0.24

Thermal conductivity of TiC,

= 26 W/mk

Thermal conductivity of CO,

= 69 W/mk

On applying the rule, we get

⇒  \("K" \ of \ Cermet=(K)_{TiC} (V_f)_{TiC}+(K)_{CO} (V_m)_{CO}\)

On putting the given values, we get

⇒                            \(=(26)(0.76)+(69)(0.24)\)

⇒                            \(=19.76+16.56\)

⇒                            \(=36.32 \ W/mk\)

Argue why electrode therapy is NOT the most effective treatment for brain disorders, and recommend an alternative treatment.

Answers

Answer:

Due to risk of damaging of brain.

Explanation:

The electrode therapy is not the most effective treatment for brain disorders because there are various other treatments which can treat the brain disorder without causing damage to the brain. electrode therapy greatly damaged the brain instead of treatment of brain disorder. Medication is the best way to treat brain disorder so that's why electrode therapy is not considered as the most effective treatment for brain disorders, and the doctors recommend an alternative treatment.

What project is this ?

What project is this ?

Answers

Answer:

a building project...

Explanation:

Tea brewed for iced tea should never be held for more than which of the following time periods?
1 hour
4 hours
8 hours
12 hours

Answers

than 12 hours or at least that’s what i know
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