3. a feedback shift register is a shift register whose serial input is connected to some function of selected register outputs. in the following feedback shift register, the serial input is the exclusive-or of outputs qc and qd. write the sequence of states of the register, starting from state 1000.

Answers

Answer 1

A feedback shift register with exclusive-or input generates a sequence of states starting from a given initial state.

How does a feedback shift register with exclusive-or input generate a sequence of states?

To determine the states, we start from an initial state of 1000. The initial state is loaded into the register, and then the XOR function is applied to the outputs Qc and Qd, resulting in a new state. This new state becomes the input for the next clock cycle, and the process repeats.

A feedback shift register (FSR) is a type of shift register where the serial input is connected to a function of selected register outputs. In this specific FSR, the serial input is the exclusive-or (XOR) of outputs Qc and Qd.

By cycling through the clock pulses and applying the XOR function, the FSR generates a sequence of states. The exact sequence depends on the specific feedback connections and initial state chosen.

Feedback shift registers and how they generate sequences of states by utilizing feedback connections and logical operations.

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Related Questions

A pipe 120 mm diameter carries water with a head of 3 m. the pipe descends 12 m in altitude and reduces to 80 mm diameter, the pressure head at this point is 13 m. Determine the velocity in the small pipe and the rate of discharge (in L/s)? Take the density is 1000 kg/m³.​

Answers

To solve this problem, we can apply the principles of fluid mechanics and Bernoulli's equation.

Given:
- Diameter of the first pipe (D1): 120 mm = 0.12 m
- Diameter of the second pipe (D2): 80 mm = 0.08 m
- Head at the first pipe (H1): 3 m
- Altitude change (Δh): 12 m
- Head at the second pipe (H2): 13 m
- Density of water (ρ): 1000 kg/m³

Step 1: Calculate the velocities in the pipes using Bernoulli's equation.
Applying Bernoulli's equation between the two points in each pipe:
For the first pipe:
P1/ρ + V1²/2g + H1 = constant (1)

For the second pipe:
P2/ρ + V2²/2g + H2 = constant (2)

Since the pipes are open to the atmosphere, we can assume P1 = P2 = atmospheric pressure (approximately).

Simplifying equation (1):
V1²/2g + H1 = constant (3)

Simplifying equation (2):
V2²/2g + H2 = constant (4)

Step 2: Solve for the velocities V1 and V2.
Using equation (3) for the first pipe:
V1²/2g + 3 = constant (5)

Using equation (4) for the second pipe:
V2²/2g + 13 = constant (6)

Step 3: Solve for the velocities V1 and V2.
Since the constants in equations (5) and (6) are the same (as it is a continuous flow), we can equate the two equations:

V1²/2g + 3 = V2²/2g + 13

V1²/2g - V2²/2g = 10

(V1² - V2²)/(2g) = 10

V1² - V2² = 20g

V1² = V2² + 20g (equation 7)

Step 4: Convert the diameter to radius for each pipe.
r1 = D1/2 = 0.12/2 = 0.06 m
r2 = D2/2 = 0.08/2 = 0.04 m

Step 5: Calculate the rate of discharge (Q) using the continuity equation.
The continuity equation states that the product of the cross-sectional area (A) and the velocity (V) is constant in a flowing fluid.

Q1 = Q2 (since it is a continuous flow)

A1V1 = A2V2

πr1²V1 = πr2²V2

(r1²V1)/(r2²) = V2

Step 6: Calculate the velocity in the smaller pipe (V2).
Substitute the values in equation (7):

V1² = V2² + 20g

(V1²r2²)/(r1²) = V2²

(0.06²V2²)/(0.04²) = V2²

V2² = (0.06²V1²)/(0.04²) [Substitute V1² = 2g(3) from equation (5)]

V2² = (0.06² × 2g × 3)/(0.04²)

V2² = 0.27g

V2 = √(0.27g)

Step 7: Calculate the rate of discharge (Q) in L/s.

What time ----–- the train arrve? ​​

Answers

I think it’s TIME FOR U TO GET A WATCH !!! lol I’m jk jk I believe it arrives at 12:33

by purchasing software that gathers data and predicts trends in the most popular genres without any extra programming, the library can purchase the books that people will read

Answers

By utilizing software that collects data and forecasts trends in popular genres, the library can make informed decisions on which books to purchase. This ensures that the library's collection stays up-to-date and aligns with the reading interests of the community, ultimately leading to increased patron satisfaction and engagement.

By purchasing software that gathers data and predicts trends in the most popular genres, the library can make informed purchasing decisions on the books that people are likely to read. This eliminates the need for extra programming and ensures that the library's collection stays relevant and in-demand. The software can analyze data such as user preferences, browsing history, and book ratings to generate accurate predictions on which books will be popular in the future. This ultimately saves the library time and money by avoiding the purchase of books that may not be well-received by their audience. Overall, investing in such software can greatly benefit the library's collection development strategy and help them better serve their community's reading needs.
By utilizing software that collects data and forecasts trends in popular genres, the library can make informed decisions on which books to purchase. This ensures that the library's collection stays up-to-date and aligns with the reading interests of the community, ultimately leading to increased patron satisfaction and engagement.

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By purchasing software that gathers data and predicts trends in the most popular genres, the library can make informed decisions when acquiring new books.

This approach ensures that the library's collection remains up-to-date and relevant to the interests of its patrons, ultimately increasing the likelihood that people will read the selected books. Furthermore, this software eliminates the need for extra programming, saving time and resources.Such data-driven decisions also allow the library to maximize its budget, as it can focus on purchasing titles that are more likely to be borrowed and enjoyed by the community. Additionally, understanding trends in popular genres can assist the library in creating targeted promotions and events, further engaging patrons and fostering a love for reading.In summary, utilizing software that gathers data and predicts trends in popular genres is an efficient and cost-effective way for a library to maintain a relevant and engaging collection. This approach benefits both the library and its patrons by ensuring a diverse and appealing selection of books that cater to the community's interests.

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for this slow cooling process, is the corresponding steel h ypoeutectoid or h ypereutectoid 4 points] what is the proeutectoid phase? 3 points]

Answers

Proeutectoid signifies is a phase that forms (on cooling) before the eutectoid austenite decomposes. It has a parallel with primary solids in that it is the first phase to solidify out of the austenite phase. Thus, hypoeutectoid is the correct answer.

What is hypoeutectoid steel?

Hypoeutectoid steels are those that contain less than 0.80 weight percent carbon (strictly 0.77 weight percent C, but a less stringent definition is used in commercial practice). Proeutectoid ferrite and austenite, each with a different carbon content, can coexist as two distinct phases in hypoeutectoid steels after initial cooling from the austenite single phase field. The remaining austenite undergoes the eutectoid reaction, converting to ferrite plus cementite (i.e., pearlite), and as a result, the microstructure of these steels typically contains proeutectoid ferrite grains and pearlite islands.

Eutectoid steels have a carbon content of 0.76 weight percent (in reality, steels with a carbon content of 0.75 to 0.85 weight percent are frequently categorized as eutectoid steels). All carbon is dissolved in the austenite, which forms as a solid solution in these steels at any temperature in the austenitic range.

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features of a dry leclanche cell​

Answers

Answer:

Primary cell with a nominal open circuit voltage of 1.5 Volts produced in very high volumes. Chemistry based on a zinc anode and a cathode/depolariser of manganese dioxide which absorbs the liberated hydrogen bubbles which would otherwise insulate the electrode from the electrolyte.

Answer:

Explanation:

(1) The electrolyte is a paste of ammonium chloride.

(2) The positive terminal (anode) is a carbon rod surrounded bymangAnese Dioxide as a depolarised .

(3) The negative terminal is zinc container.

determine whether the sequence converges or diverges. if it converges, find the limit. (if an answer does not exist, enter dne.) an = ln(n 6) − ln(n) lim n→[infinity] an =

Answers

The sequence converges, and its limit as n approaches infinity is 0.

Using the terms provided in the prompt, the question asks us to determine whether the sequence {an} converges or diverges. If it converges, we are to find the limit. The sequence is defined as follows:

an = ln(n + 6) − ln(n)

We are asked to evaluate the limit of this sequence as n approaches infinity.

To determine whether the sequence converges or diverges, we can begin by examining the behavior of its terms as n increases without bound. To do this, we can take the limit of the sequence as n approaches infinity.

Using the properties of logarithms, we can simplify the expression for the nth term of the sequence:

an = ln(n + 6) − ln(n)

an = ln[(n + 6)/n]

Now we can take the limit of this expression as n approaches infinity:

lim n→∞ (n + 6)/n = 1

ln(1) = 0

Therefore, the limit of the sequence {an} as n approaches infinity is 0.

Since the limit exists and is finite, we can conclude that the sequence converges. The limit of the sequence as n approaches infinity is 0.

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Plumbing


The should indicate the materials, fixtures, and faucets to be
used.
A. specifications
B. plumbing code
C. mechanical code
D. plumbing instructor

PlumbingThe should indicate the materials, fixtures, and faucets to beused.A. specificationsB. plumbing

Answers

Answer:

B....................

a c-section specimen is designed to tolerate a stress-concentration factor for 1.75. calculate the allowable normal strength in the c-section if the material used to make the section has a yield strength of 84 kpsi.

Answers

The allowable normal strength in the c-section is 48000 pounds per square inch.

The allowable stress depends on both the factor of safety imposed on the object and the yield strength or stress at which an object will be permanently damaged. To calculate the allowable normal strength we can divide the yield strength by the factor of safety.

To determine the allowable normal strength output we can use this equation below:

The allowable normal strength = The number yield strength : A stress-concentration factor

The number yield strength is 84 kpsi.

Then convert kpsi to psi : 84 kpsi = 84000 psi

A stress-concentration factor is 1.75

The formula to find allowable normal strength output is:

84000 psi : 1.75 = 48000

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How does the Center of Gravity of a Robot Relate to the Translational, Rotational, or Oscillatory Motion Associated with it?

Answers

The center of gravity, also known as the balance point or point of rotation when an object is permitted to freely rotate, is the average location of an object's weight.

Explain about the Gravity?

All objects with mass are attracted to one another by the gravitational attraction, which has a magnitude that is directly proportional to the masses of the two objects and inversely proportional to the square of their distance from one another.

By means of gravity, a planet or other body pulls items toward its core. All the planets are maintained in their orbits around the sun by the force of gravity.

Any particle of matter in the universe will gravitate toward any other with a force that varies directly as the product of the masses and inversely as the square of the distance between them, according to Newton's law of gravity.

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Issues where international governments seek to elevate environmental awareness are often referred to as green issues.

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Issues where international governments seek to elevate environmental awareness are often referred to as **green issues**. Green issues encompass a wide range of topics related to environmental conservation, sustainability, and the mitigation of climate change. These issues can include discussions and actions on reducing carbon emissions, promoting renewable energy sources, protecting biodiversity, addressing deforestation, implementing waste management strategies, and fostering sustainable practices in various industries.

By focusing on green issues, governments aim to raise awareness, collaborate on international environmental agreements, develop policies and regulations, allocate resources for research and development, and encourage public participation. The goal is to promote a global understanding of the importance of environmental stewardship and encourage collective efforts to address pressing environmental challenges.

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What does hydraulic force provide in a braking system?
Power
Heat dissipation
Contact surface
Pressure

Answers

Answer:

4 or D pressure

Explanation:

A hydraulic braking system transmits brake-pedal force to the wheel brakes through pressurized fluid, converting the fluid pressure into useful work of braking at the wheels.

Answer:

pressure is the correct answer...

Explanation:

mark me brainliest

What signal propagation phenomena causes the diffusion, or the reflection in multiple different directions, of a signal?

Answers

In the radio communication system, multipath is the propagation phenomenon that causes diffusion or reflection in multiple different directions of a signal.

Multipath is a propagation mechanism that impacts the propagation of signals in radio communication. Multipath results in the transmission of data to the receiving antenna by two or more paths. Diffusion and reflection are the causes that create multiple paths for the signal to be delivered.

Diffraction occurs when a signal bends around sharp corners; while reflection occurs when a signal impinges on a smooth object. When a signal is received through more than one path because of the diffraction or reflection, it creates phase shifting and interference of the signal.

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1. The hull of the space shuttle consists of ceramic tiles bonded to an aluminum skin. Discuss the design requirements of the shuttle hull that led to the use of this combination of materials. What problems in producing the hull might the designers and manufacturers have faced

Answers

Answer:

Follows are the solution to the given question:

Explanation:

In the environment of the piles of earth, its spacecraft faces extreme temperatures:

Therefore, to prevent satellite build sustainability, a temperature control system must be used.

Its skin must be rather permeable in physiological terms.

Its shuttle's surface should have adhered to both the material well.

Whether it gets broken, it ought to be easy to repair.

All tile mostly on the cutter is composed of silicon dioxide particles, that are bonded and create a tile of very low density.

Its heat transfer is so small that even a person may hold a burning hot side on one side of the tile.

Skin that uses a rubber resin to ensure that perhaps the powers may not release the cutting that heat-treated will then the internal body.

The design requirements that led to the combination of ceramic tiles and aluminium materials for the hull of shuttle space are; discussed below.

The space shuttle experiences extreme temperatures during re-entry into the earths atmosphere. Thus, as a result, a thermal protection system must be provided to help prevent damage of the shuttle structure.

Therefore, the skin must be made up of material that has an exceptionally low thermal conductivity and also the material must be able to be firmly attached to the skin and also be able to be easily repaired in case of any damage.

Secondly, the tiles used on the space shuttle will have to be composed of silica fibers that are bonded together to generate a ceramic of low density. The thermal conductivity of the ceramic would have to be low such that if you touch one end while the other is very hot, you will not feel the hotness.

Now, the tiles will be attached to the shuttle skin with the aid of a rubbery polymer which ensures that the forces don't break the tile loose which will then expose the underlying skin to high temperatures.

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7
What does the study of engineering enable an agriscientist to do?
O A communicate clearly with peers
OB, manage crops in the field
Ос, work with equipment, buildings, and processes
OD. understand how animals may affect the food chain
Reset
Next

Answers

Answer:

I believe it is B

Explanation:I say this because agriculture means the science or practice of farming, including cultivation of the soil for the growing of crops and the rearing of animals to provide food, wool, and other products so I am sure that an agri scientist is the same thing.

The correct answer is B. I say this because an Agricultural Science Teacher is responsible for the education of agriculture, food science, and natural resources for students. Using these topics, agricultural science teachers can give students vital skills that are important in the ag industry.

Many of the problems applied scientists address are multidisciplinary issues and therefore require the collaboration of scientists with a variety of skills and knowledge. Explain which types of scientists might be involved in studying global warming.

Answers

Scientists have studied global warming for more than 100 years. Thousands of experts have tested hypotheses, gathered evidence, constructed models, debated results, and reviewed one another’s work. Thousands of papers are written every year, produced from nearly every leading university and research institution on Earth—from Harvard to NASA and the US Department of Defense.

The consensus couldn’t be clearer. Climate change is happening. It’s caused primarily by the burning of oil, gas, and coal. If we do nothing, the world will become significantly less habitable.

We’ve lost precious time, but if we act now—decisively and dramatically—we still have a chance at avoiding climate change’s most catastrophic impacts

The steel shaft has a diameter of 40 mm and is fixed at its ends A and B . If it is subjected to the couple determine the maximum shear stress in regions AC and CB of the shaft. G st = 75 GPa.
Q6/

Answers

Answer:

See explanation.

Explanation:

Since no figure was given I solved a problem that was similar to the one you described that I worked in my mechanics of materials class. The method should be very similar for your figure. See attached image for my work.

The steel shaft has a diameter of 40 mm and is fixed at its ends A and B . If it is subjected to the

If it is subjected to the couple determine the maximum shear stress in regions AC and CB of the shaft. G st = 75 GPa. Than the answer will be 52Mpa.

What we need to perform?

We need to perform a two step process to obtain the maximum shear stress on the shaft. For the solid shaft,

P=2×pi×N×T/60 or T=60×p/2×pi×N

Where P=power transmitted by the shaft=50×10³W

N=rotation speed of the shaft in rpm=730rpm

Pi=3.142

T is the twisting moment

By substituting the values for pi, N and P, we get

T=654Nm or 654×10³Nmm

Also, T=pi×rho×d³/16 or rho=16×T/pi×d³

Where rho=maximum shear stress

T = twisting moment=654×10³Nmm

d= diameter of shaft= 40mm

By substituting T, pi and d

Rho=52Mpa

b. For a hollow shaft, the value for rho is unknown

T=pi×rho(do⁴-di⁴/do)/16

Rho=T×16×do/pi×(do⁴-di⁴)

Where

T= twisting moment=654×10³Nmm gotten above

do=outside shaft diawter=40mm

di= inside shaft diameter =30mm

Pi=3.142

Substituting values for pi, do, di and T.

Rho=76Mpa

Therefore, If it is subjected to the couple determine the maximum shear stress in regions AC and CB of the shaft. G st = 75 GPa. Than the answer will be 52Mpa.

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What is Cloud computing​

Answers

Answer:

the practice of using a network of remote servers hosted on the internet to store, manage, and process data, rather than a local server or a personal computer.

Explanation:

there u go

An engine starting system must crank or spin the engine until fuel _______ forces the pistons down and the engine begins to operate on its own power.

Answers

An engine starting system must crank or spin the engine until fuel ignites forces the pistons down and the engine begins to operate on its own power.

What is Engine?

Engine is a machine that converts energy into mechanical work. It is a device that takes an energy source, such as electricity, fuel, or solar power, and converts it into a form of energy that can be used to drive a machine, such as a car, truck, boat, or generator. Engines are used in almost all forms of transportation, from cars and trucks to boats and planes. They are also used in many industrial and commercial applications, such as manufacturing, power generation, and construction. Engines are composed of a number of components, including cylinders, pistons, valves, and a crankshaft. The pistons in the cylinders move up and down, creating energy that is then converted into movement that drives the crankshaft and ultimately powers the machine. Engines are usually powered by gasoline, diesel, or other fuels, although some can use electricity or solar power. They come in many different sizes and configurations, and are found in a variety of vehicles, from cars and motorcycles to boats and plane.

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An engine starting system must crank or spin the engine until fuel Combustion forces the pistons down and the engine begins to operate on its own power.

What is Combustion?

Combustion is a chemical reaction in which a substance reacts quickly with oxygen and produces heat. The original substance is referred to as the fuel, and the source of oxygen is referred to as the oxidizer. The fuel can be solid, liquid, or gas, but it is usually a liquid for aeroplane propulsion. Similarly, the oxidizer could be a solid, liquid, or gas, but for aeroplanes, it is usually a gas (air). A solid fuel and oxidizer are used in model rockets.

New chemical substances are formed during combustion from the fuel and the oxidizer. These substances are referred to as exhaust. The majority of the exhaust is caused by chemical reactions between the fuel and oxygen.

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Where should the beam ABC be loaded with a 300-lb/ft uniform distributed live load so it causes (a) the 6 largest live moment at point A and (b) the largest live shear at D? Calculate the values of the moment and shear. Assume the support at A is fixed, B is pinned and C is a roller.

Answers

The 300-lb/ft load can be placed anywhere on the beam to produce the greatest live shear at point D, and the shear force at point D is 2400 lb.

How to calculate moment and shear?

To determine the position of the 300-lb/ft load to cause the 6 largest live moment at point A, we need to calculate the bending moments at A for different positions of the load.

Let x be the distance from point A to the left end of the load. The total distributed load on the beam is w = 300 lb/ft, and the length of the beam is L = 20 ft. The reactions at A and B are:

RA = RB = wL/2 = 300 lb/ft × 20 ft / 2 = 3000 lb

The shear force and bending moment at any point x along the beam can be calculated as follows:

V(x) = RA - wx = 3000 - 300x (shear force equation)

M(x) = RA x - w/2 x² (bending moment equation)

To find the position of the load that causes the 6 largest live moments at point A, we need to calculate M(x) at A for different values of x. We can do this using calculus by taking the derivative of M(x) with respect to x and setting it equal to zero to find the maximum value of M(x).

dM/dx = RA - wx (derivative of M(x) with respect to x)

Setting dM/dx = 0:

RA - wx = 0

x = RA/w = 10 ft

Therefore, the 300-lb/ft load should be placed 10 ft to the left of point A to cause the 6 largest live moment at point A.

To calculate the value of the moment at A, we substitute x = 0 into the bending moment equation:

M(A) = RA × 0 - w/2 × 0² = 0

So the moment at A is zero.

To determine the position of the 300-lb/ft load to cause the largest live shear at point D, calculate the shear force at D for different positions of the load.

Let x be the distance from point D to the left end of the load. The reactions at D and C are:

RD = wL - RA = 300 lb/ft × 20 ft - 3000 lb = 3000 lb

RC = RA - RD = 0

The shear force at any point x along the beam can be calculated as follows:

V(x) = RD - wx (shear force equation)

To find the position of the load that causes the largest live shear at point D, calculate V(x) at D for different values of x. Do this using calculus by taking the derivative of V(x) with respect to x and setting it equal to zero to find the maximum value of V(x).

dV/dx = -w (derivative of V(x) with respect to x)

Setting dV/dx = 0:

-w = 0

w = 0

This means that the shear force is the same at all points along the beam, regardless of the position of the load.

Therefore, the 300-lb/ft load can be placed anywhere on the beam to cause the largest live shear at point D, and the value of the shear force at D is:

V(D) = RD - wL = 3000 lb - 300 lb/ft × 20 ft = 2400 lb.

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Gauges do not respond with a prove-out sequence when ignition is switched on. What could be the possible cause?

Answers

The possible causes the gauges do not respond are Electrical power failure, Blown fuse, Faulty gauge cluster, Loose connections or wiring, Faulty ignition switch, and Faulty sensor.

If gauges do not respond with a prove-out sequence when the ignition is switched on, it could be due to one or more of the following possible causes: Electrical power failure: The gauges require electrical power to function properly. If there is an electrical power failure, the gauges may not receive the required power to respond with a prove-out sequence. Blown fuse: A blown fuse in the electrical system can also cause the gauges to fail to respond with a prove-out sequence. This can be caused by an electrical fault or a power surge. Faulty gauge cluster: If the gauge cluster itself is faulty, it may not be able to receive or process the signals required to initiate the prove-out sequence. Loose connections or wiring: Loose connections or wiring in the electrical system can cause the signals to the gauges to be disrupted, preventing them from responding with a prove-out sequence. Faulty ignition switch: A faulty ignition switch can also prevent the gauges from responding with a prove-out sequence. This can occur if the switch is not making proper contact, or if it has become worn or damaged. Faulty sensor: A faulty sensor that provides input to the gauge cluster can also prevent the gauges from responding with a prove-out sequence. For example, a faulty engine coolant temperature sensor can prevent the temperature gauge from responding during the prove-out sequence. If gauges are not responding with a prove-out sequence, a diagnostic procedure should be performed to determine the underlying cause.

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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.

companies focusing on innovation relating to value engineering, process and value migration are all associated with what innovation zone?

Answers

The companies focusing on innovation relating to value engineering, process and value migration are all associated with the incremental innovation zone.

Innovation refers to a creative idea, practice, or product that is developed through research and testing. Innovation is often used in the context of business to describe new and improved products, processes, and services that increase efficiency, productivity, and profitability.

Companies that focus on innovation related to value engineering, process, and value migration are associated with the incremental innovation zone.

The incremental innovation zone refers to the process of developing existing products, processes, and services by making small, incremental improvements over time.

Incremental innovation is a type of innovation that involves making small improvements to existing products or services.

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what should always be done before beginning any diagnosis?

A. Test drive
B. Change the oil filters
C.Fill out a diagnostic worksheet
D.Verify the customer concern​

Answers

Answer:

c

Explanation:

if someone is wrong that they can help with

How many different welding processes are in use?

Answers

There are basically five types of welding namely:

a)Gas Metal Arc Welding (GMAW/MIG)

b)Friction welding,

c)ELECTRON BEAM WELDING

d) LASER BEAM WELDING

e) RESISTANCE WELDING

What is welding?

Welding is a fabrication process in which two or more parts are joined together using of heat, pressure, or both to form a joint as the parts cool. materials to be welded include metals, thermoplastics, and wood.

Types of welding processes

a)Gas Metal Arc Welding (GMAW/MIG)

Used mainly for joining metals like stainless steel, nickel, copper alloys, aluminum, titanium, and cobalt.

b)Friction welding

This is a  technique used to join materials using mechanical friction. this can be used to join wood, steel, and aluminum.

c)ELECTRON BEAM WELDING

This process uses a mean of high-velocity electrons to combine materials this can be used to join thick sections in the aerospace, automotive, rail, and nuclear power industry.

d)LASER BEAM WELDING

this is used to combine pieces of metal or thermoplastics.

e) RESISTANCE WELDING

This is a process that joins metals by applying pressure and passing a current through them for a period of time.

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Write an if-else statement for the following: If user_tickets is equal to 7, execute award_points = 1. Else, execute award_points = user_tickets.

Answers

Answer:

if user_tickets == 7:

  award_points = 1

else:

  award_points = user_tickets

Explanation:

Not sure what language you are using. But this can be used for python. Also don't know if you are required to ask the user for any input

In addition to having a first aid kit, osha recommends that shop owners also have an automated external defibrillator (aed) nearby to be used in case of an emergency.

Answers

It is true that in addition to having a first aid kit, osha recommends that shop owners also have an automated external defibrillator (AED) nearby to be used in case of an emergency.

What is OSHA?

The Occupational Safety and Health Administration (OSHA) is a sizable compliance agency of the United States Department of Labor with federal visitorial powers to inspect and examine workplaces.

OSHA recommends that shop owners have an automated external defibrillator (AED) nearby in case of an emergency, in addition to a first aid kit.

Thus, the given statement is true.

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in conventional sheet metalworking operations, (a) what is the name of the tooling and (b) what is the name of the machine tool used in the operations?

Answers

(a) The tooling is called a punch-and-die. (b) The machine tool is called a stamping press.

Manufacturing ferrous or nonferrous metal goods, structural metal products, metal forgings, and metal stampings are all included in metalworking processes. They also involve a variety of other metal and wire goods, including silverware, watches, clocks, scientific measuring and regulating devices, and jewelry.

Punch and dies are a type of cutting tool equipment utilized in the high-heat metal forming process known as forging and punching. The cutting workpiece needs a "punch" to act as a pusher, and the punch pushes in the die as a secondary item.

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A compound drop consists of an oil droplet (1 mm diameter) inside a water droplet (3 mm diameter). What is the pressure inside the oil drop if the interfacial tension between water and oil is 25 mN/m

Answers

The pressure inside the oil droplet is 0.1 N/m².

A compound drop consists of an oil droplet inside a water droplet.

To calculate the pressure inside the oil droplet if the interfacial tension between water and oil is 25 mN/m, we will use the Laplace pressure equation.Laplace's law relates the pressure difference across the interface of two immiscible fluids to the surface tension and the curvature of that interface. For a droplet, it is given by:P = 2γ/R,

where P is the Laplace pressure, γ is the surface tension, and R is the radius of curvature of the interface.For a compound drop, there are two radii of curvature to consider: the curvature of the oil-water interface, and the curvature of the water-air interface. We can calculate the pressure inside the oil droplet using the radii of curvature of the oil-water interface as follows:We know that the diameter of the oil droplet is 1 mm, so the radius of curvature (R) of the oil-water interface is 0.5 mm.

The diameter of the water droplet is 3 mm, so the radius of curvature (r) of the water-air interface is 1.5 mm.

Using the Laplace pressure equation, the pressure inside the oil droplet can be calculated as:

P = 2γ/R=2x25x10^-3/0.5x10^-3=100 mN/m²=0.1 N/m²

Therefore, the pressure inside the oil droplet is 0.1 N/m².

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What phase best describes the function of a thermostat?

Answers

Answer:

a formula containing arguments

Explanation:

Hopefully that's correct

A liquid with a specific gravity of 2. 6 and a viscosity of 2. 0 cP flows through a smooth pipe of unknown diameter, resulting in a pressure drop of 0. 183 lb/in? for 1. 73 mi. What is a pipe diameter in inches if the mass rate of flow is 7000 lb/h?

Answers

Let us list the parameters given to solve for the diameter of the pipe based on the information. The pipe diameter will be 3.48 inch.

The specific gravity of the liquid (SG) = 2.6

The density of the liquid = (S.G × density of water) = 2.6 × 1000 kg/m³

= 2600 kg/m³


Using the standard conversion rates:
The viscosity = 2.0 c P = 0.002 kg/m. s

The pressure drop ΔP = 0.183 l b f/in²

Since 1 l b f/in² = 6894.76 N/m²


The pressure drop ΔP = 0.183  I b f/in² = 1261.74 N/m²

The length of the pipe = 1.73 mi = 2784.165 m

Mass flow rate = 7000 l b/h =  0.882 kg/s


Let us begin by calculating the volumetric flow rate of the liquid in the pipe using the information provided.

The volumetric flow rate(Q)=mass flow rate/density of the liquid

Q=0.882 kg/s/2600 kg/m3

Q=0.00034 m3/S

Using the pressure drop formula to estimate the pipe diameter in a cylindrical flow pipe, we have:

Δp/p g=8fLQ2/π^2gd^5....(1)

where (f) can be computed as;
f=64/p v d/u
f=64/p Q d/Au
replacing the values from the above-listed parameters, we have:
f=64/2600x0.00034xd/π/4(d)2x0.002

f=64/2600x0.00034xdXπ/4(d)2x0.002/1

F=0.1137d

From equation (1), Recall that
Δp/p g=8fLQ2/π^2gd^5
Δp/p =8fLQ2/π^2d^5


Replacing the values, we have;
1261.74/2600=8x0.1173(d)x(2784)x(0.00034)^2/π^2(d)^5
0.48528=2.966X10^-5/(d)^4

D^4=2.966x(10)^-5/0.48528
D^4=6.11193538x10^-5
d=4√6.11193538x10^-5
d=0.0884m
since 1 mm = 0.0393701 inch

88.4 mm will be = 3.48 inches

Therefore, we can conclude that the diameter of the pipe = 3.48 inches.

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