the standard abs control strategy uses a three step cycle. these are . group of answer choices

Answers

Answer 1

The standard ABS control strategy uses a three step cycle. These are pressure hold, pressure deceases and pressure increases.

What is ABS?

ABS stands for anti-lock braking system. It is defined as a safety anti-skid braking system that is applied to buses, lorries, cars, and motorbikes as well as to aircraft. Its goal is to protect the driver by ensuring that the wheels don't lock up when you apply the brakes.

ABS works by keeping the wheels from locking up when braking, maintaining tractive contact with the road, and giving the driver more control over the vehicle.

Thus, the standard ABS control strategy uses a three step cycle. These are pressure hold, pressure deceases and pressure increases.

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Your question is incomplete, but probably your complete question was

The standard abs control strategy uses a three step cycle. these are . group of answer choices'

Pressure hold,

Pressure deceases

Pressure increases

Pressure doesnot change.


Related Questions

gasoline has a comparatively high btu per galloon rating around?

Answers

Answer:

116,090 Btus

Explanation:

what could happen if the engine was uncowled during the starting and operating procedures

Answers

If an engine fails during rollout or just before takeoff, immediately shut both throttles and land the aircraft safely. Before reaching a safe single engine speed right away after takeoff, drop your nose to increase velocity.

What is the engine starting procedure?

Closing the throttle, turning off the fuel pump, setting the mixture control to idle cutoff, and simply cranking the engine is the most reliable hot start method I've found.

What is the procedure for engine failure?

If an engine fails during rollout or just before takeoff, immediately shut both throttles and land the aircraft safely. Before reaching a safe single engine speed right away after takeoff, drop your nose to increase velocity. If you are unable to climb, close both throttles and land straight ahead.

What happens if engine fails during take off?

The typical practice for the majority of aircraft would be to abandon takeoff if an engine failed during takeoff. In small aircraft, the pilot should turn the throttles down to idle, activate the speed brakes (if provided), and apply the brakes as needed if the engine fails before VR (Rotation Speed).

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NEED HELPASAP what is the moisture content of a board if a test sample that originally weighed 11. 5 oz was found to weigh 10 oz after oven drying?

Answers

Answer:

11.5-10/10= 0.15x100 =15%

Explanation:

The moisture content of the board is 13.04% as per the given data.

What is moisture content?

Simply said, a product's moisture content is its water content. It affects a substance's weight, density, viscosity, conductivity, and other physical characteristics.

The original weight of the test sample was 11.5 oz, and the weight of the sample after oven-drying was 10 oz.

The amount of moisture lost during the oven-drying process is equal to the original weight of the sample minus the weight of the sample after drying, or:

11.5 oz - 10 oz = 1.5 oz

To calculate the moisture content, you then divide the amount of moisture lost by the original weight of the sample and multiply by 100 to express the result as a percentage:

(1.5 oz / 11.5 oz) x 100% = 13.04%

Thus, the moisture content of the board is 13.04%.

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placing a load on the secondary of a transformer will not affect current flow in the primary. T/F

Answers

True. The current flow in the primary of a transformer is determined by the voltage applied to it and the impedance of the primary winding.

The load on the secondary winding does not affect the current flow in the primary winding because the transformer operates based on the principle of electromagnetic induction.

When voltage is applied to the primary winding, it creates a magnetic field that induces a voltage in the secondary winding. The amount of voltage induced in the secondary winding depends on the number of turns in the secondary winding relative to the primary winding. The load on the secondary winding determines the current flow in the secondary circuit, but it does not affect the current flow in the primary circuit.

The transformer's primary and secondary windings are electrically isolated from each other, so there is no direct electrical connection between them. Therefore, any load on the secondary winding does not affect the current flow in the primary winding.

In summary, placing a load on the secondary of a transformer does not affect current flow in the primary because the transformer operates based on electromagnetic induction, and the primary and secondary windings are electrically isolated from each other.

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What major financial flop led to the end of the Sega Dreamcast and ultimately caused Sega to stop making game consoles altogether?

1: The founder and CEO of Sega was found to be secretly skimming money off of the top of profits, leading to widespread distrust by the public and a sharp decline in sales until they ultimately had to shut down due to making no profit.

2: A small group of employees found a way to drain all of the Sega Corporation funding accounts and flee the country with all of the money, never to be heard from again.

3: A game called Shenmue, that cost more than $70 million to make, meant that everyone who owned a Dreamcast needed to buy two copies of the game just for Sega to make back the money they had spent to develop it-which didn't happen.

4: A game called Katamari Damacy that carried a virus that would infect any console that it was played on forced Sega to spend millions of dollars in refunds and bankrupted the company.​

Answers

Answer:

The major financial flop that led to the end of the Sega Dreamcast and ultimately caused Sega to stop making game consoles altogether is:

3: A game called Shenmue, that cost more than $70 million to make, meant that everyone who owned a Dreamcast needed to buy two copies of the game just for Sega to make back the money they had spent to develop it-which didn't happen.

Explanation:

Shenmue, released on December 29, 1999, was created for Dreamcast by Suzuki.  It was widely described as the most expensive video game ever produced.  It had an estimated production and marketing cost of between US$47 and $70 million, according to the latest available data.

FILL IN THE BLANK insulating materials will have a wide band gap between the filled valence band and __________

Answers

the empty conduction band.Insulating materials, also known as insulators, are materials that have a high resistance to the flow of electric current.

This high resistance is due to the presence of a wide band gap between the filled valence band and the empty conduction band.In a solid material, electrons occupy different energy levels or bands. The valence band is the band closest to the nucleus and is typically filled with electrons. On the other hand, the conduction band is the next higher energy band, and for insulators, it is separated from the valence band by a wide energy gap called the band gap.

In insulating materials, the band gap is large enough that electrons in the valence band do not have enough energy to move into the conduction band. As a result, insulators do not conduct electricity easily and exhibit minimal electrical conductivity.The presence of a wide band gap in insulating materials is crucial for their insulating properties as it prevents the free movement of electrons and restricts the flow of current.

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I need to simulate this in Proteus, and what components should be connected to where?

I need to simulate this in Proteus, and what components should be connected to where?

Answers

Proteus simulation is  a software tool. It is used for the   designing and testing  of electronic circuits. So thetool will be conneted to the LCD as well as the cips on the left.

How does this work ?

This tool is popular among engineers and students as it allows them to test their designs virtually with  ease, eliminating the need to physically build and test the circuit.

Through robust circuitry simulations under different conditions, designers can identify faults in functionality promptly and make necessary changes before building the physical prototype.

The utilization of Proteus simulation equips individuals with the ability to devise and assess electronic circuits in a highly efficient and economical manner, specifically targeting those found in mobile phones.

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-Why is it said that using faulty PPE could be just as dangerous as using no PPE at all?

Answers

Answer:

Explanation:

"Safety helmet" redirects here. It is not to be confused with hard hat.

Drug Enforcement Administration (DEA) agents wearing Level B hazmat suits

Personal protective equipment (PPE) is protective clothing, helmets, goggles, or other garments or equipment designed to protect the wearer's body from injury or infection. The hazards addressed by protective equipment include physical, electrical, heat, chemicals, biohazards, and airborne particulate matter. Protective equipment may be worn for job-related occupational safety and health purposes, as well as for sports and other recreational activities. "Protective clothing" is applied to traditional categories of clothing, and "protective gear" applies to items such as pads, guards, shields, or masks, and others. PPE suits can be similar in appearance to a cleanroom suit.

The purpose of personal protective equipment is to reduce employee exposure to hazards when engineering controls and administrative controls are not feasible or effective to reduce these risks to acceptable levels. PPE is needed when there are hazards present. PPE has the serious limitation that it does not eliminate the hazard at the source and may result in employees being exposed to the hazard if the equipment fails.[1]

Any item of PPE imposes a barrier between the wearer/user and the working environment. This can create additional strains on the wearer; impair their ability to carry out their work and create significant levels of discomfort. Any of these can discourage wearers from using PPE correctly, therefore placing them at risk of injury, ill-health or, under extreme circumstances, death. Good ergonomic design can help to minimise these barriers and can therefore help to ensure safe and healthy working conditions through the correct use of PPE.

Practices of occupational safety and health can use hazard controls and interventions to mitigate workplace hazards, which pose a threat to the safety and quality of life of workers. The hierarchy of hazard controls provides a policy framework which ranks the types of hazard controls in terms of absolute risk reduction. At the top of the hierarchy are elimination and substitution, which remove the hazard entirely or replace the hazard with a safer alternative. If elimination or substitution measures cannot apply, engineering controls and administrative controls, which seek to design safer mechanisms and coach safer human behavior, are implemented. Personal protective equipment ranks last on the hierarchy of controls, as the workers are regularly exposed to the hazard, with a barrier of protection. The hierarchy of controls is important in acknowledging that, while personal protective equipment has tremendous utility, it is not the desired mechanism of control in terms of worker safety.rly PPE such as body armor, boots and gloves focused on protecting the wearer's body from physical injury. The plague doctors of sixteenth-century Europe also wore protective uniforms consisting of a full-length gown, helmet, glass eye coverings, gloves and boots (see Plague doctor costume) to prevent contagion when dealing with plague victims. These were made of thick material which was then covered in wax to make it water-resistant. A mask with a beak-like structure which was filled with pleasant-smelling flowers, herbs and spices to prevent the spread of miasma, the prescientific belief of bad smells which spread disease through the air.[2] In more recent years, scientific personal protective equipment is generally believed to have begun with the cloth facemasks promoted by Wu Lien-teh in the 1910–11 Manchurian pneumonic plague outbreak, although many Western medics doubted the efficacy of facemasks in preventing the spread of disease.[3]

Types

Personal protective equipment can be categorized by the area of the body protected, by the types of hazard, and by the type of garment or accessory. A single item, for example boots, may provide multiple forms of protection: a steel toe cap and steel insoles for protection of the feet from crushing or puncture injuries, impervious rubber and lining for protection from water and chemicals, high reflectivity and heat resistance for protection from radiant heat, and high electrical resistivity for protection from electric shock. The protective attributes of each piece of equipment must be compared with the hazards expected to be found in the workplace. More breathable types of personal protective equipment may not lead to more contamination but do result in greater user satisfaction.[4]

The use of a faulty PPE could be just as dangerous as not using any PPE at all because the user is still exposed to potential hazards and harm.

What is PPE?

PPE is an acronym for personal protective equipment and it can be defined as a terminology that is used to denote any piece of equipment which offer protection to different parts of the body while working in a potentially hazardous environment.

Some examples of personal protective equipment (PPE) used to protect the different parts of the body are:

RespiratorsFace maskFace shieldGlovesBootsHelmet

According to OSHA, the use of a faulty PPE could be just as dangerous as not using any PPE at all because the user is offered little or no protection at all.

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A 5 MHz clock that generates a 0 to 5V pulse train with a 30% duty cycle is connected to input X of a two input OR gate that has a 20nS propagation delay. The clock also goes to an inverter with a 10ns propagation delay. The output of the inverter goes to the Y input of the OR gate.

a. Draw the circuit
b. Plot the output of the clock for two cycles. Show times and voltages.
c. Plot the output of the inverter in the same plot. Show times and voltages.
d. Plot the output of the OR gate in the same plot. Show times and voltages.

Answers

Answer:

Timing Diagrams 15 pts. A 10 MHz clock that generates a 0 to 5V pulse train with a 30% duty cycle is connected to input X of a two input OR gate that has a 20nS propagation delay. The clock also goes to an inverter with a 10 ns propagation delay. The output of the inverter goes to the Y input of the OR gate. a) Draw the circuit. 2 pts. b) Plot the output of the clock for two cycles. Show times and voltages. 5 pts. c) On the same page as part (b) plot the output of the inverter. Show times and voltages. 3 pts. d) On the same page as parts (b & c) plot the output of the OR gate. Show times and voltages. 5 pts.

some buildings have a revolving door. this is an example of two intersecting planes. when two planes intersect, what is their intersection?

Answers

The intersection of planes is a common occurrence in architecture and engineering, and understanding the properties of these intersections is essential for creating efficient and functional structures.

When two planes intersect, their intersection is a line. This line is called the line of intersection, and it is the set of points where the two planes meet. In the case of a revolving door, the two intersecting planes are the vertical plane of the building and the horizontal plane of the ground. The line of intersection between these two planes is the axis of rotation for the revolving door. As the door rotates around this axis, it maintains its position within the two intersecting planes, allowing for easy access into the building while also helping to maintain the temperature and air pressure within the building. Overall, the intersection of planes is a common occurrence in architecture and engineering, and understanding the properties of these intersections is essential for creating efficient and functional structures.

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Do some research and find out whether the Pascaline calculator is a computer according to the Turing model.

Answers

No, it isn't. It can only perform basic mathematical calculations. A computer must be programmable in order to be Turing-complete.

What is Pascaline calculator?

In 1642, Blaise Pascal invented the Pascal's calculator, a mechanical calculator. The laborious arithmetic calculations required by his father's work as the supervisor of taxes in Rouen inspired Pascal to create a calculator.

It must have some kind of programming language in which you can write instructions that can be followed automatically or by a human operator to perform any type of data processing.

Thus, it can be concluded that Pascaline calculator is not actually a computer according to the Turing model.

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The main target of the diplexer is to enable the antenna to work at different frequencies. *
True
False​

Answers

True is the answer.....

A certain printer requires that all of the following conditions be satisfied before it will send a HIGH to la microprocessor acknowledging that it is ready to print: 1. The printer's electronic circuits must be energized. 2. Paper must be loaded and ready to advance. 3. The printer must be "on line" with the microprocessor. As each of the above conditions is satisfied, a HIGH is generated and applied to a 3-input logic gate. When all three conditions are met, the logic gate produces a HIGH output indicating readiness to print. The basic logic gate used in this circuit would be an): A) NOR gate. B) NOT gate. C) OR gate. D) AND gate.

Answers

Answer:

D) AND gate.

Explanation:

Given that:

A certain printer requires that all of the following conditions be satisfied before it will send a HIGH to la microprocessor acknowledging that it is ready to print

These conditions are:

1. The printer's electronic circuits must be energized.

2. Paper must be loaded and ready to advance.

3. The printer must be "on line" with the microprocessor.

Now; if these conditions are met  the logic gate produces a HIGH output indicating readiness to print.

The objective here is to determine the basic logic gate used in this circuit.

Now;

For NOR gate;

NOR gate gives HIGH only when all the inputs are low. but the question states it that "a HIGH is generated and applied to a 3-input logic gate". This already falsify NOR gate to be the right answer.

For NOT gate.

NOT gate operates with only one input and one output device but here; we are dealing with 3-input logic gate.

Similarly, OR gate gives output as a high if any one of the input signals is high but we need "a HIGH that is generated and applied to a 3-input logic gate".

Finally, AND gate output is HIGH only when all the input signal is HIGH and vice versa, i.e AND gate output is LOW only when all the input signal is LOW. So AND gate satisfies the given criteria that; all the three conditions must be true for the final signal to be HIGH.

A TV USE 75 WATTS WHILE IN USED ASSMING THAT ITIS USED 4 HOURS EVERY DAY HOW MUCH ENERGY IN 4 IN KWH WOULD THE TV CONSUME ANNUALLY?.

Answers

Answer:

Explanation:

The wattage listed is the maximum power drawn by the ... If John uses a window fan (200 watts) 4 hours a day for 120 ... TV, 120V, 75W.

                                                  or

75 w 4 hrs 30 days. So your total consumption is 75*4*30= 9000watt hr.

1 unit = 1000 watt hr.

9000 watt hr = 9 unit.

Total cost 9*2.5= RS 22.5

pls mark me as brainliest and this is a usefull answer pls dont delete

A 150-lbm astronaut took his bathroom scale (a
spring scale) and a beam scale (compares masses) to the
moon where the local gravity is g ! 5.48 ft/s2
. Determine
how much he will weigh (a) on the spring scale and (b) on
the beam scale.

Answers

The weight of this astronaut on the spring scale is equal to 25.5 lbf.The weight of this astronaut on the beam scale is equal to 150-lbf.

Given the following data:

Mass of astronaut = 150-lbm.

Acceleration due to gravity on Moon = 5.48 ft/s².

What is weight?

Weight can be defined as the force acting on an object or a physical body due to the effect of gravity. Also, the weight of a physical object (body) is typically measured in Newton or ounces.

How to calculate the weight of this astronaut?

Mathematically, the weight force on a physical body can be calculated by using this formula:

W = mg

Where:

W represents the weight.m represents the mass.g represents the acceleration due to gravity.

Substituting the given parameters into the formula, we have;

Weight = 150 × 1/32.2 × 5.48

Weight = 25.5 lbf.

For the weight on beam scale.

A beam scale is a measuring instrument that is designed and developed to compare the masses of a physical body and as such, it's not affected by the variations in acceleration due to gravity. Therefore, the beam scale would read 150-lbf as it read on earth.

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when assembling various shaped pieces together without marring the workpiece, use a A. chain clamp
B. chain wrench
C. spanner wrench
D. strap wrench

Answers

Answer:

Strap wrench (I think)

Explanation:

The strap doesnt have any rough edges so it shouldn't mark the workpiece (assuming that is what you meant when you said 'marring'). I would recommend to wait for some other answers though since i haven't studied this yet :)

Which of the following wouldn't be pictured on a fan motor's ladder logic diagram? A. Auxiliary contacts B. two Push-button control C. Boiler D. Mixing chamber

Answers

Answer:

c

Explanation:

:)

A JFrame is a descendant of each of the following classes except the ___________ class. a. Component b. Jar
c. Container
d. Window

Answers

A JFrame is a descendant of each of the following classes except the Jar class.

It is a descendant of Component, Container, and Window classes.

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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.

The expression (x >= 0 && x <= 100) evaluates to false if either x<0 or x >= 100. O True O False

Answers

The expression (x >= 0 && x <= 100) is a logical AND operator, meaning that it will only evaluate to true if both conditions are true. Hence, It is true.

Why the given expression (x >= 0 && x <= 100) evaluates to true?

The first condition is that x is greater than or equal to 0, and the second condition is that x is less than or equal to 100.

If either of these conditions is false, then the entire expression will evaluate to false. For example, if x is less than 0, then the first condition is false and the entire expression will evaluate to false. Similarly, if x is greater than or equal to 100, then the second condition is false and the entire expression will evaluate to false.

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What are the differences between bulk deformation processes and sheet metal processes?.

Answers

Bulk deformation processes are applied to achieve large deformation of metal materials, resulting in a change in their overall shape. On the other hand, sheet metal processes primarily affect the surface layers of metal sheets to achieve a specific shape, size, and finish.

This fundamental difference results in several other notable differences between these two processes, which are discussed below.Bulk deformation processes:This process is used to transform the overall shape of metal materials. The material is placed in a die and subjected to high stress and pressure to achieve the desired deformation. This process often involves heating the metal to high temperatures to enhance its ductility. This process is also referred to as "forging" or "forming" processes.

Some of the common bulk deformation processes include:

Forging: This process is applied to metal materials at high temperatures to change their overall shape.

Rolling: This process involves reducing the thickness of a metal material by compressing it between two rollers.

Extrusion: This process is used to produce uniform cross-section shapes and is applied to create pipes, tubes, and other structures.

Sheet metal processes:This process primarily affects the surface of metal sheets, resulting in a specific shape, size, and finish. Sheet metal is thinner than bulk metals, making it easy to shape and deform without heating it. Sheet metal is used in many applications, such as building facades, ductwork, automotive bodies, and machine casings.

Some of the common sheet metal processes include:

Cutting: This process is used to cut a piece of sheet metal to the desired shape and size.

Bending: This process is applied to a sheet metal workpiece to achieve a specific shape.

Rolling: This process is used to reduce the thickness of sheet metal while maintaining its shape and size.

Drawing: This process is applied to sheet metal to create specific shapes, such as cups or cans.

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Suppose you have two arrays: Arr1 and Arr2. Arr1 will be sorted values. For each element v in Arr2, you need to write a pseudo code that will print the number of elements in Arr1 that is less than or equal to v. For example: suppose you are given two arrays of size 5 and 3 respectively. 5 3 [size of the arrays] Arr1 = 1 3 5 7 9 Arr2 = 6 4 8 The output should be 3 2 4 Explanation: Firstly, you should search how many numbers are there in Arr1 which are less than 6. There are 1, 3, 5 which are less than 6 (total 3 numbers). Therefore, the answer for 6 will be 3. After that, you will do the same thing for 4 and 8 and output the corresponding answers which are 2 and 4. Your searching method should not take more than O (log n) time. Sample Input Sample Output 5 5 1 1 2 2 5 3 1 4 1 5 4 2 4 2 5

Answers

Answer:

The algorithm is as follows:

1. Declare Arr1 and Arr2

2. Get Input for Arr1 and Arr2

3. Initialize count to 0

4. For i in Arr2

4.1 For j in Arr1:

4.1.1 If i > j Then

4.1.1.1 count = count + 1

4.2 End j loop

4.3 Print count

4.4 count = 0

4.5 End i loop

5. End

Explanation:

This declares both arrays

1. Declare Arr1 and Arr2

This gets input for both arrays

2. Get Input for Arr1 and Arr2

This initializes count to 0

3. Initialize count to 0

This iterates through Arr2

4. For i in Arr2

This iterates through Arr1 (An inner loop)

4.1 For j in Arr1:

This checks if current element is greater than current element in Arr1

4.1.1 If i > j Then

If yes, count is incremented by 1

4.1.1.1 count = count + 1

This ends the inner loop

4.2 End j loop

Print count and set count to 0

4.3 Print count

4.4 count = 0

End the outer loop

4.5 End i loop

End the algorithm

5. End

The transformer that converts a high voltage from the power company down to 240/120 V for homes and businesses is called a(n) _____ transformer.

Answers

The transformer that converts a high voltage from the power company down to 240/120 V for homes and businesses is called a step-down transformer.

The Transformer is a deep learning model architecture designed for natural language processing tasks, introduced in the paper "Attention is All You Need" by Vaswani et al. in 2017. The Transformer model is based solely on self-attention mechanisms and does not use recurrent neural networks or convolutional neural networks commonly used in previous NLP models.

The transformer that converts a high voltage from the power company down to 240/120 V for homes and businesses is called a step-down transformer. This is because it steps down the voltage from a higher level to a lower level, and allows safe and efficient distribution of electricity to homes and businesses.

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Block A has mass of mA = 58kg and rests on a flat surface. The coefficient of static friction between the block and the surface is 0.300. The coefficient of static friction between the rop and the fixed peg B is 0.310. The width of the block is d = 0.290m. Find the greatest mass, mC, that weight C can have such that block A does not move.​

Block A has mass of mA = 58kg and rests on a flat surface. The coefficient of static friction between

Answers

Answer:

The greatest mass, that the weight C can have such that block A does not move is approximately 23.259 kg

Explanation:

The given parameters are;

The mass of the block A= 58 kg

The coefficient of static friction between the block and the surface, \(\mu _s\) = 0.300

The coefficient of static friction between the rope and the fixed peg, B \(\mu _B\) = 0.310

Let T represent the tension in the rope

Therefore, when the rope is static, T = The normal reaction at the peg, B, \(N_B\)

The angle of inclination of the rope holding the block A = arctan(3/4) ≈ 36.87°

The length of the rope = √(0.4² + 0.3²) = 0.5

∴ sin(θ) = 3/5 = 0.6

cos(θ) = 4/5 = 0.8

The vertical component of the tension in the rope = T × sin(θ) = 0.6·T

The horizontal component of the tension in the rope = T × cos(θ) = 0.8·T

The friction force = μ×(W - 0.6·T) = 0.300×(58×9.8 - 0.6·T) = 170.52 - 0.18·T

The block will start to move when we have;

The horizontal component of the tension in the rope = The friction force

∴ 0.8·T = 170.52 - 0.18·T

0.8·T + 0.18·T = 170.52

0.98·T = 170.52

T = 170.52/0.98 = 174

Therefore, the tension in the rope = T = 174 N = The normal reaction at the peg, B \(N_B\)

The frictional force at the peg, \(F_B\) = \(\mu _B\) × \(N_B\) = 0.310 × 174 N = 53.94 N

The weight of the mass, \(m_c\), \(W_c\) = The frictional force at the peg, \(F_B\)  + The tension in the rope

∴ The weight of the mass, \(m_c\), \(W_c\) = 53.94 N + 174 N = 227.94 N

Weight, W = Mass, m × The acceleration due to gravity, g, from which we have;

m = W/g

Where;

g = 9.8 m/s²

∴ \(m_c\) = \(W_c\)/g = 227.94 N/(9.8 m/s²) ≈ 23.259 kg.

The greatest mass, that the weight C can have such that block A does not move = \(m_c\) ≈ 23.259 kg.

Q3
a. A binary search tree may be balanced or unbalanced based on the arrangement
of the nodes of the tree. With you knowledge in Binary search tree:
i. Explain the best and worst case scenarios of the time and space complexity of
both type of binary trees above. (AP)15 marks
b. A program accepts natural numbers N and M as inputs into an integer array A[ ]
and B[ ], each consisting of N and M of elements respectively. Sort the arrays A[ ]
and b[ ] in descending order of magnitude. Use the sorted array to generate a merged
array C[ ]. Array C[ ] should be generated in descending order. Assume the input
arrays comprise a maximum of 20 elements each, with no duplicates. Common
elements should be included in the merged array only once.
Using C++ implement the program above to achieve its stated requirements
above

Answers

The best case scenarios of the time and space complexity of binary search is simply the time complexity of the binary search algorithm which is O(log n).

However, this balanced scenarios complexity would be O(1) when the central index would directly match the desired value.

On the other end, for an unbalanced scenarios of binary search tree, the running time of a binary search would be O(n). which will represent a linked list

What is binary search tree?

The binary search tree simply refers to an advanced algorithm used for analyzing the node, its left and right branches, which are eventually modeled in a tree structure and returning the value.

So therefore, the best case scenarios of the time and space complexity of binary search is simply the time complexity of the binary search algorithm which is O(log n).

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*WELDING*


What size arc gap is suggested with a 5/32" (4.0mm) diameter electrode?

Answers

Solution :

The correct size of the arc of a welding process depends upon the application and the electrode. As a rule, the arc length should not be more than a diameter of the core of the electrode.

As for the electrode of diameter size of 5/32" or 4 mm, the arc length should be more than its core diameter. Also for 5/32 " diameter electrode, the welding time for the one electrode must be one minute as well as the length of the weld be the same as the length of the electrode consumed.  

6. Used ____________ must be hot drained for 12 hours or crushed before disposal. A) Wet mops B) Sponges C) Oil filters D) Oily towels

Answers

Answer:

C - oil filters.

Explanation:

You must crush or drain oil filters for a minimum of 12 hours for recycling because used motor oil is hazardous waste and can affect the environment if disposed of properly so the government has created strict rules for proper disposal.

A recent online start-up just invested millions of dollars into new technology for their firm. Which of the following goals were they MOST likely trying to achieve?

A
specialization
B
economic growth
C
price stability
D
price stability

Answers

Answer:

i think D

Explanation:

Write a program that read two integers and display their MOD,VID and their floating-point division in both settings x/y and y/x
e.g 5/3 and 3/5

Answers

Answer:

#!/usr/bin/env python                                                          

                                                                             

                                                                             

def calculate(x, y):                                                          

   return {                                                                  

       "MOD": x % y,                                                          

       "DIV": x/y,  # you mean div instead of “VID”, right?                  

       "floating-point division": float(x)/y,                                

   }                                                                          

                                                                             

                                                                             

def calculateInBothSettings(x, y):                                            

   return {                                                                  

       "x/y": calculate(x, y),                                                

       "y/x": calculate(y, x),                                                

   }                                                                          

                                                                             

                                                                             

if __name__ == "__main__":                                                    

   x = int(input("x: "))                                                      

   y = int(input("y: "))                                                      

   print(calculateInBothSettings(x, y))

Explanation:

I wrote a python script. Example output:

x: 2

y: 3

{'x/y': {'MOD': 2, 'DIV': 0.6666666666666666, 'floating-point division': 0.6666666666666666}, 'y/x': {'MOD': 1, 'DIV': 1.5, 'floating-point division': 1.5}}

Deliverables 1. List the PDU at layers 2, 3, and 4 that were used to transmit your HTTP GET packet. 1. Locate your HTTP GET packet in the Packet List and click on it. 2. Look in the Packet Detail window to get the PDU information. 2. How many different HTTP GET packets were sent by your browser? Not all the HTTP packets are GET packets, so you'll have to look through them to answer this question. 3. List at least five other protocols that Wireshark displayed in the Packet List window. You will need to clear the filter by clicking on the "Clear" icon that is on the right of the Filter toolbar

Answers

Answer:

Explanation:

1. The PDU (Protocol Data Unit) at layers 2, 3, and 4 used to transmit an HTTP GET packet are as follows:

- Layer 2: Ethernet II frame (Ethernet PDU)

- Layer 3: Internet Protocol (IP) packet (IP PDU)

- Layer 4: Transmission Control Protocol (TCP) segment (TCP PDU)

To locate the specific PDUs for an HTTP GET packet in Wireshark:

1. Open Wireshark and load the captured packet trace.

2. Find the HTTP GET packet in the Packet List.

3. Click on the HTTP GET packet to select it.

4. In the Packet Detail window, navigate to the "Frame" section to view the Ethernet II frame details (Layer 2).

5. Scroll down to the "Internet Protocol" section to see the IP packet information (Layer 3).

6. Further down, in the "Transmission Control Protocol" section, you will find details about the TCP segment (Layer 4).

2. To determine the number of different HTTP GET packets sent by a browser, inspect the captured packets. Look for packets with the "GET" method in the "Info" column of the Packet List. Counting the unique occurrences of such packets will give you the number of different HTTP GET packets sent by the browser.

3. Five other protocols that Wireshark may display in the Packet List window, after clearing the filter, include:

- DNS (Domain Name System)

- ICMP (Internet Control Message Protocol)

- ARP (Address Resolution Protocol)

- TLS (Transport Layer Security)

- DHCP(Dynamic Host Configuration Protocol)

By reviewing the Packet List window, you can identify and list at least these five additional protocols displayed alongside HTTP.

Learn more about analyzing network packets using Wireshark here:

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