If the total length of the climb on a fixed ladder equals or exceeds 24 feet, fixed ladders must be equipped with

Answers

Answer 1

Fall protection must be provided for employees who climb or work on fixed ladders greater than 24 feet.

About fixed ladders

This type of stair/ladder varies in construction depending on the design and application. The position of this ladder can only be installed by welding or connecting with bolts and nuts according to the conditions of the facility, so it is called a fixed ladder or a fixed ladder.

This ladder is typically used in facilities that require continuous monitoring

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Related Questions

What type of resources is solar and wind energy?.

Answers

Sustainable sources?? Maybe
Natural resources I think

How much latency can you hear?.

Answers

The consequences of lag often don't become audible until they are 15 to 30 milliseconds (ms)

We are aware of this because recording studios monitor latency, and the permissible range is 10–12 ms. Higher latencies frequently cause musicians to lose focus during performances.

According to research, it needs a delay of 20 to 30 ms for our brains to distinguish one sound from another. Thus, latency up to 10ms is typically acceptable; we won't notice it. But if it goes beyond that, the artist will start to lose the musical sensibility, which will have an impact on his performance.

The device ecosystem has significantly improved as a result of these steps and a renewed focus on audio delay from device manufacturers.

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How are the pressure difference created in nature?

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Pressure differences in nature can be created by a variety of mechanisms. the mechanisms are Temperature differences,.Altitude differences, Density differences.

Temperature differences: Warm air is less dense than cool air, which creates a pressure difference between the two. This can lead to the formation of atmospheric circulations such as winds and storms.

Altitude differences: At higher elevations, the air is less dense than at lower elevations, which creates a pressure difference. This is why the air pressure decreases as you go up in altitude.

Density differences: When a fluid is flowing, areas of higher density will have a higher pressure than areas of lower density. This can lead to the formation of currents and eddies in water and air.

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Answer:

The pressure difference is created in nature by the heat of the sun.

Explanation:

When it falls on the earth's surface, the surface of the earth gets heated and the air above it also gets warm and becomes lightweight, and moves upward. Thus, the pressure difference is created.

help me please!! in a stankey diagram, what does the thickness of the lines represent?

Answers

Answer: The thickness of the vertical flow lines indicates the relative quantity.

The thickness of the vertical flow lines indicates the relative quantity.

What is vertical flow?A vertical flow constructed wetland is a planted filter bed that is drained at the bottom. Wastewater is poured or dosed onto the surface from above using a mechanical dosing system. The water flows vertically down through the filter matrix to the bottom of the basin where it is collected in a drainage pipe.Vertical flow immunoassays rely on the same basic principles as the more common lateral flow immunoassay format with some modifications. The most apparent difference between the two methods being the vertical and lateral flow of fluid. However, vertical flow technology has several advantages over traditional lateral flow assays with the most significant being the reduced assay time (<5 minutes), table I.

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the mean of a dataset is 10 and the standard deviation is 2. what is the z-score of the data value 4

Answers

The z-score of the data value 4 is -3.

To calculate the z-score of a data value,

we use the formula z = (x - μ) / σ,

where

x is the data value,

μ is the mean of the dataset, and

σ is the standard deviation of the dataset.

In this case, the mean of the dataset is 10 and the standard deviation is 2. Therefore, when finding the z-score of the data value 4, we calculate (4 - 10) / 2 = -3.

Therefore, the z-score of the data value 4 is -3.

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How does lower latency benefit the users connected to a network Mcq?.

Answers

Less latency benefits users connected to a network "by lowering the delay while sending and receiving data between devices." The right response is C.

The time it takes for data to be transferred and received between devices on a network is referred to as lower latency. When latency is minimal, there is less time between when a user initiates a request and when they receive a response, which makes the user experience more responsive and seamless. Fast reaction times are essential in applications like online gaming, video conferencing, and real-time control systems, therefore this is very significant. Faster data transport leads in a better user experience thanks to a low-latency network.

There should be several options for this question's response, including:

(A) by increasing the signal transmission range of the network.

(B) allowing several devices to connect to the network at once.

(C) by shortening the lag time between devices when sending and receiving data.

(E) by only allowing users with higher security credentials access to the network.

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Why is a roller coaster a good example of potential and kinetic energy?.

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A roller coaster is a good example of potential and kinetic energy because the roller coaster gains potential energy as it is pulled to the top of the hill. And as the roller coaster descends downward the potential energy is converted to kinetic energy.

Kinetic energy is the type of energy that is possessed by an object when it is in motion. While potential energy is the type of energy that is possessed by an object because of its state or position.

A roller coaster is an example that involves both kinetic and potential energy.  When the roller coaster goes upward to the hill, it gains potential energy because of its changing state. And when the roller coaster is released from the chain and begins coming down the hill,  kinetic energy is gained as a result of its motion toward the bottom.

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Where does the roller coaster have the most potential energy and least kinetic energy?.

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At the top of the hill, the roller coaster has the most potential energy and least kinetic energy.

The roller coaster has a maximum amount of potential energy and no kinetic energy at the top. As the roller coaster begins moving down to the bottom, its potential energy starts decreasing whereas the kinetic energy starts increasing. And at the bottom, kinetic energy is highest while there is no potential energy.

In other words, the maximum potential energy generated is when the roller coaster is at the top of the hill. When it begins to go down, the potential energy converts to kinetic energy. So when the roller coaster reaches the top of the hill, it attains the most potential energy and least kinetic energy.

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A car travels 20 km west and then 20 km south. What is the magnitude of its net displacement from its starting point?.

Answers

The magnitude of the net displacement from the starting point is 28.28 km.

What is magnitude?

Magnitude refers to the size or scale of something. It is usually used to describe the intensity or strength of an event, object, or phenomenon in terms of its power, size, or extent. Magnitude is often expressed numerically, with a higher number indicating a greater magnitude. For instance, earthquakes are typically measured on the Richter scale, which is a numerical scale used to measure the magnitude of seismic activity. Magnitude can also be used to indicate the importance or significance of something.

The magnitude of the net displacement from the starting point is 28.28 km. This is because the net displacement is the hypotenuse of a right triangle whose legs are the 20 km displacement in the east-west direction and the 20 km displacement in the north-south direction. Using the Pythagorean Theorem, the magnitude of the net displacement can be found by calculating the square root of (20^2 + 20^2), which is 28.28 km.

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what is a reasonable temperature for a house in winter

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The ideal thermostat temperature inside the winter is 65° Fahrenheit while you're at home.

Temperature is a measure of the level of hotness or coldness perceived by the body. Temperature scales want values for definition: the thing selected as 0 ranges and the magnitudes of the incremental unit of temperature.

Thermometers are calibrated in numerous temperature scales that traditionally have depended on severa reference factors and thermometric substances for definition. The maximum not unusual scales are the Celsius scale with the unit symbol °C (formerly referred to as centigrade), the Fahrenheit scale (°F), and the Kelvin scale (°k), the latter getting used predominantly for scientific functions. The kelvin is one of the seven base units within the global device of units (SI).

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You throw a red ball straight up with a speed of 7m / s When it reaches the very top of its path what is its acceleration?

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When an object is thrown straight up, it initially accelerates upward as it gains speed. Once it reaches the very top of its path, it stops accelerating and begins to decelerate due to gravity, until it reaches its maximum height and starts to fall back down.

At the very top of its path, the acceleration of the red ball is zero, because it is no longer gaining speed, it has reached its maximum height and is starting to fall back down.

The acceleration of the red ball at the very top of its path is zero m/s^2.

It's important to note that the initial velocity is 7m/s and the acceleration is the change of velocity over time, which is equal to zero because the velocity is the same and hasn't changed, the ball is at the highest point and it is not moving anymore.

What is the formula and unit of work?.

Answers

The formula of work is given as force multiplied by distance. The unit of work is said to be joule.

A force is a quantity which is a vector because it has both a magnitude and a direction. According to Newton's laws, the force acting on an item is what causes it to move or cease moving.  

Force multiplied by distance equals work. Work is a form of energy that is expended as an object moves along certain distance. However, note that this particular formulation:

W = F d

The above equation works only if force is constant and if the movement is entirely linear on a flat surface. General formula for determining work can be done through calculus as:

W = ∫ F ds

where the distance becomes differential from d to ds, and allows us to evaluate the work done even for non-linear paths or on paths that are inclined at angles above the horizontal plane.

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what are some sources of electromagnetic radiation that you have encountered in your daily life in the past week?

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Everyday life is dominated by man-made electromagnetic radiation: microwave ovens cook food, radar waves guide aeroplanes, television sets receive electromagnetic waves provided by broadcasting stations, and infrared rays from heaters offer warmth.

What causes electromagnetic waves in our home?

Electromagnetic fields are produced by a variety of household gadgets, including low-energy light bulbs, television and computer displays, electric heaters, and even electric blankets. All of these popular objects produce electric or electromagnetic fields and/or need them to function.

Exposure to powerful enough low frequency fields can cause dizziness, light flashes, and tingling or pain due to nerve activation. Exposure to strong enough radiofrequency fields can cause heating of bodily tissue.

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A small bullet is fired into a large piece of wood. after the bullet penetrates the wood, the assembly moves as one unit along a low-friction track in the direction of travel of the bullet.
After the bullet is stuck in the piece of wood, is the momentum of the wood (not including the bullet; assuming the piece of wood was initially at rest) greater than, equal to, or less than the initial momentum of the bullet?

Answers

Following the bullet's passage through the wood, the entire assembly moves in the same direction as the bullet along a low-friction track. The initial momentum of the bullet is smaller than the momentum of the wood.

When a bullet strikes a block, is momentum maintained?

The momentum of the block with the bullet after the strike will be equal to the momentum of the block with the bullet before the hit, under the law of conservation of linear momentum.

What was the bullet's momentum prior to the collision?

The block/bullet mechanism conserves momentum. As a result, the momentum prior to the impact and the momentum following the contact are the same.

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What is the formula for calculating moment of inertia?.

Answers

The formula for calculating moment of inertia is I = Σ mi ri², where, m is the mass and r is the distance. The sum of each particle's mass times the square of its distance from rotational axis gives the moment of inertia.

The quantity known as the moment of inertia, which is determined by multiplying each particle's mass by the square of its distance from the rotational axis, indicates how a body resists angular acceleration. It can also be described in easier terms as a quantity that establishes the amount of torque necessary for a specific angular acceleration in a rotating axis.

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If a car travels 540 km in 4.5 hours, what would be its average speed in m/s?

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To find the average speed in meters per second, we need to convert both the distance and time to the same units. Since 540 km is equal to 540000 meters and 4.5 hours is equal to 16200 seconds, we can calculate the average speed as:

Average speed = distance / time = 540000 meters / 16200 seconds = 33.333 meters/second.

Liz is shipping a package to her friend. The maximum weight of a medium flat-rate box is 20 pounds, including the box which weighs 38 3 8 pound. What is the possible weight in pounds, w, of the contents that liz will ship to her friend if she must use a medium flat-rate box? complete the sentence with the correct inequality and solution.

Answers

The correct inequality solution is: w ≤ 19.62

What is weight?

Weight is the gravitational force that pulls on an object when a larger second object, such the Earth or Moon, is present. It represents how much gravity is pulling on a body. Given that weight is a force, its SI unit is likewise a force; hence, the SI unit of weight is the Newton (N).

On Earth compared to the Moon, an object's weight would vary due to the effects of gravity. This is how the weight formula is explained: Mass times gravitational pull equals weight. This may be expressed as w = mg.

Let, the possible weight of the medium flat-rate box = w pounds.

It is given that there is a box weighing  0.38 pounds.

Plus, the maximum weight of the package is 20 pounds.

So, we get,

The inequality representing the situation is,

Weight of medium box + 0.375 pounds ≤ Maximum weight of the package

i.e. w + 0.38 ≤ 20

or, w ≤ 19.62

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What is linear momentum and its SI unit class 9?.

Answers

A body's linear momentum is defined as the product of its mass and velocity. Kgms-1 is the SI unit of linear momentum.

What exactly is momentum?

Linear momentum is defined as the product of a system's mass and velocity. An equation is used to express linear momentum p. p = mv. According to the equation, momentum is proportional to mass (m) and velocity (v) (v). A body's linear momentum is defined as the product of its mass and velocity. p = mv. Linear momentum is measured in kilograms per second. Linear momentum is defined as the product of an object's mass (m) and velocity (v) (v). It is more harder to stop an item that has more momentum. The linear momentum formula is p = mv.

Here,

The linear momentum of a body is defined as the product of its mass and velocity. Kgms-1 is the SI unit for linear momentum.

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What is Newton's 2nd law of motion apply it in an example?.

Answers

According to Newton's second law of motion, the rate of change of an object is directed proportional to force applied to it and takes place in the direction in which the force acts. Mathematically, it is written as, F = m a.

You may have observed that a fielder frequently pulls his hand backward while capturing a faster-moving cricket ball. This is so that the fielder can extend the period of time during which the ball's high velocity lowers to zero.

As a result, the ball's acceleration slows down, which lessens the impact of catching the ball's increased speed and prevents the fielder's hand from being injured.

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What is the principle of lever short answer?.

Answers

Principle of Lever practical experience has shown that when two equal forces in different directions,

What is the lever's underlying principle?

Lever Practical experience has shown that when two equivalent forces acting in different directions, — in other words, counterclockwise and clockwise, were applied to a homogeneous lever at equal spacing from the pivot, they balance each other out and bring the lever to equilibrium.

What does a kid-friendly definition of a lever simple look like?

Image for What is the concise explanation of the lever principle, Levers are tools that increase force, to put it simply. We refer to them as "simple machines" since they.

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you push two identical bricks across a tabletop with constant speed. in case 1, you place the bricks end to end; in case 2, you stack the bricks on top of the other. (a) is the force of kinetic friction in case 1 greater, less, or equal to the force of kinetic friction in case 2? (b) explain why.

Answers

The kinetic friction force for case 1 is equal to the dynamic friction force for case 2. This is because the mass is the same in both scenarios.

Kinetic friction is defined as the force acting between moving surfaces. An object moving on a surface experiences a force opposite its direction of motion. The force magnitude depends on the kinetic friction coefficient between the two materials. The dynamic friction force for case 1 is equal to the dynamic friction force for case 2. This is because the mass is the same in both scenarios.

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According to mendel's law of independent assortment, which punnett square correctly lists the gametes for these individuals?.

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According to Mendel's law of independent assortment, which punnett square correctly lists the gametes for these individuals

What is Mendel's law of independent?

The alleles of two (or more) distinct genes are chosen onto gametes independently from one another, according to Mendel's law of independent assortment. To put it another way, the allele that a gamete receives for one gene has no effect on the allele that it receives for another gene. When reproductive cells mature, various genes autonomously segregate from one another, according to the Principle of Independent Assortment. When Gregor Mendel initially studied genetics in pea plants in 1865, he discovered the independent assortment of genes and the qualities that go along with them.

An illustration of the law of independent assortment is: There are crossed two-hybrid rabbits. Having the genotype BbGg, both rabbits are. Each rabbit produced gametes before breeding. As a result, the copies of each chromosome are assigned to various individuals, and the alleles are separated gametes.

For the two genotypes given - BBTt and Bbtt

The gametes formed from BBTt are: BT, Bt, BT and BtThe gametes formed from Bbtt are: Bt, Bt, bt, and bt

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The complete question is as follows:

What is the formula of torque of couple?.

Answers

The formula for Torque of couple is given as:

Moment (Torque)= F x d, where, F is the force in newtons and d is the perpendicular distance in meters.

Torque is defined as the moment of a force at about a turning point is the force multiplied by the perpendicular distance to the force from the turning point.

For Example- A 20N force acts at a perpendicular distance of 2m from the turning point then it torque will be equal to-

Torque of couple = F x d = 20 x 2 = 40 Nm

The moment of torque becomes zero when the forces acting on the body have the same line of action. When the forces are at right angles to the arm , the torque is maximum.

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Two tugboats pull a disabled supertanker. Each tug exerts a constant force of 2.10×10^6 N
, one at an angle 17.0 ∘
west of north, and the other at an angle 17.0 ∘
east of north, as they pull the tanker a distance 0.630 km
toward the north. What is the total work done by the two tugboats on the supertanker?
Express your answer in joules, to three significant figures.

Answers

To pull the tanker 0.630 km total work to be done is  1.871 × 10⁹ Joule.

What is force?

The definition of force in physics is: The push or pull on a massed object changes its velocity.

An external force is an agent that has the power to alter the resting or moving condition of a body. It has a direction and a magnitude.

Resultant force acting on the tugboat = √2 × 2.10 × 10⁶ N.

To pull the tanker 0.630 km, that is, 630 m, work done = force × displacement

= √2 × 2.10 × 10⁶ N × 630 m

= 1871004543.01 Joule.

= 1.871 × 10⁹ Joule.

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does energy play an important role in global warming?

pls answer quick - ill give u all my points

Answers

Answer:

Yes.

Globally, energy usage is by far the most significant source of greenhouse gas emissions from human activity. About two-thirds of worldwide greenhouse gas emissions are associated with the use of fossil fuels to provide energy for heating, electricity, transportation, and industry.

Hope this helped :)

How is torque calculated?.

Answers

By combining force and distance, torque (also referred to as moment by engineers) is computed. Newton-meters are the SI units for torque.

How is torque calculated using a formula?

photo of Just how is torque determined.In a perfect world, F = F x r would be the equation for driving torque. Here, r denotes the height of a lever coupled to the axes of rotation, at the end of which force F exerts a perpendicular force. The point of application, however, is not always fixed.

Does torque grow as rpm increases?

Several factors, including RPM, can influence an engine's torque output: A engine can produce more torque as the RPM incases. The engine has much more time to finish a cycle because of this.

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What is m1 and m2 in gravity equation?.

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The gravitational formula, Equation is given as, F = G ((m₁m₂)/d₂)

Where F is the gravitational force, G is the gravitational constant, m₁ and m₂ are the masses of the two objects, and d represents their separation from one another.

Gravity is a fundamental interaction in physics that generates mutual attraction between all things having mass or energy (from the Latin gravitas, weight. The electromagnetic force, the weak interaction, and the strong interaction are all significantly stronger than gravity, which is by far the weakest of the four fundamental interactions. As a result, it has no appreciable impact on subatomic particle level phenomena. However, at the macroscopic level, gravity is the most important interaction between things and governs the motion of planets, stars, galaxies, and even light. Sublunar tides in the oceans are created by the Moon's gravity, just as gravity on Earth gives weight to physical objects (the comparable antipodal tide is caused by the inertia of the orbits of the Earth and Moon). In addition, gravity plays a significant role in many biological processes, including gravitropism, which directs plant growth, and the movement of fluids in multicellular organisms. Gravity may affect how the immune system and cells differentiate in the human body, according to research on the effects of weightlessness.

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What is the SI unit of work Mcq?.

Answers

The SI unit of work is the joule (J).

Work is the amount of energy required to move an object through a distance, and it is calculated by multiplying the force applied to an object by the distance over which the force is applied. The joule is the derived unit of energy and work in the International System of Units (SI). It is defined as the amount of energy expended in applying a force of one newton through a distance of one meter. In other words, it is the energy required to move an object with a mass of one kilogram through a distance of one meter, while applying a force of one newton. Work can also be described as the energy transferred to or from an object by the application of a force. The Joule is also used for heat, power and many other units.

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Is rate of change of momentum equal to force?.

Answers

A substance's rate of change in momentum is inversely proportional to the applied resultant force and moves in the same direction. Therefore, we may state that the force exerted equals the rate of change of momentum.

Is force and momentum the same?

Force times time equals momentum. It is evident from the equation above that momentum is time-dependent. It demonstrates how momentum will grow when more force is applied to an item. In contrast to momentum, however, force is not time dependent.

According to Newton's second law, if a constant force acts on a particle for a specific amount of time, the force multiplied by the duration of the action equals the force.

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A hot-air balloon takes off from the ground traveling vertically with a constant upward acceleration of magnitude g/4. After a time interval Δt, a crew member releases a ballast sandbag from the basket attached to the balloon. How many seconds does it take the sandbag to reach the ground?

Answers

The distance traveled (height) following a drop until it touches the ground is calculated using the equation s = u*t + 1/2*a*t2. The height from which the sandbag was dropped is given by plugging in the u, t, and a values mentioned above as well as s = 110 m.

What are Newton's first, second, and third laws of motion?

According to the first law, a force must be applied to an object before it may affect its motion. According to the second law, an object experiences a force equal to its mass times its acceleration. According to the third law, when two things interact, they exert forces on one another that are both equal in strength and directed in the opposite direction.

What is the definition of equation of motion class 9?

A set of equations can be used to construct a relationship between the body's velocity, acceleration, and the distance it travels in a given amount of time when the body is moving in a straight line with uniform acceleration.

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