Typically, preventative maintenance is regularly scheduled where as corrective maintenance is responsive.
Preventative maintenance involves routine checks and maintenance activities that are designed to prevent potential problems before they occur. This includes activities such as oil changes, filter replacements, and regular inspections. By undertaking preventative maintenance, organizations can minimize downtime and reduce the risk of equipment failure. On the other hand, corrective maintenance is undertaken in response to a problem or issue that has already occurred. This can include activities such as repairs, replacements, and emergency fixes. Corrective maintenance is typically more expensive and time-consuming than preventative maintenance, as it involves fixing a problem that has already occurred.
Overall, both preventative and corrective maintenance are important for ensuring the reliability and longevity of equipment and machinery. By regularly undertaking preventative maintenance, organizations can minimize the need for corrective maintenance and reduce the risk of equipment failure.
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As you encounter unfamiliar key torms in your eText, how can you leamn their definitions? Note that key terms may oppoar in boid or in a diferent color in your eted Select all that apply. O Select the Search icon and enter the term into the seurch feld. A definitian will show up in the Key torms saction of Eie fesulfs. O Select the Playlist icon and select the module you want to hear O Select the Table of Contents or the Navigation icon and navigate to the Glossary. O Select the key term in your eText and a pop-up defintion wel appear
A) Select the Search icon and enter the term into the search field. A definition will show up in the Key Terms section of the search results.
What is Key Terms?Key Terms are words or phrases used to describe a concept or idea. They are often used in the field of academia to help define the scope of a particular study or research project. Key Terms are also used in business and legal documents to provide a concise and precise description of a concept or idea. By providing clear definitions for each key term, it helps to ensure that all parties involved in a discussion or agreement are on the same page.
C) Select the Table of Contents or the Navigation icon and navigate to the Glossary.
D) Select the key term in your eText and a pop-up definition will appear.
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need help bad, brainliest for non-irrelevant answers
Describe the quality control measures engineers likely will use for a newly introduced line of cars that use solar power to recharge high-capacity batteries. Propose at least three tests or processes that will be important to any quality assessment for such a vehicle system.
Answer:
Quality control measures they most likely use for a newly introduced would be safety and how its made.
Explanation:
Which step in the reverse-engineering process involves the identification of subsystems and their relationship to one another?
The answer is analyze
Pls answer and I will give a like!
Answer:
a
Explanation:
WHO EVER COMMENTS FIRST GETS BRAINLIEST LOL
Answer:
g the djnsbsgsuks bbvv
Answer:i want to be brainliest
Explanation: im new here
Dust,dirt, or metal chips can pose a potential what kind of injury risk in a shop
Answer:
Dust, dirt, or metal chips can pose a potential eye injury risk in a shop.
Explanation:
to produce cooling the refrigerant must
Answer:
The compressor
Explanation:
to compress the low-pressure dry gas refrigerant from the evaporator and raise its pressure and temperature to that of the condenser, to produce flow around the system.
A ductile hot-rolled steel bar has a minimum yield strength in tension and compression of 350 MPa. Using the distortion-energy and maximum-shear-stress theories, determine the factors of safety for the following plane stress states.
a. σx = 94 MPa, and τxy = -75 MPa
b. σx = 110 MPa, σy = 100 MPa
c. σx = 90 MPa, σy = 20 MPa, τxy =−20 MPa
Answer:
Explanation:
From the given question:
Using the distortion energy theory to determine the factors of safety FOS can be expressed by the relation:
\(\dfrac{Syt}{FOS}= \sqrt{ \sigma x^2+\sigma y^2-\sigma x \sigma y+3 \tau_{xy^2}}\)
where; syt = strength in tension and compression = 350 MPa
The maximum shear stress theory can be expressed as:
\(\tau_{max} = \dfrac{Syt}{2FOS}\)
where;
\(\tau_{max} =\sqrt{ (\dfrac{\sigma x-\sigma y}{2})^2+ \tau _{xy^2\)
a. Using distortion - energy theory formula:
\(\dfrac{350}{FOS}= \sqrt{94^2+0^2-94*0+3 (-75)^2}}\)
\(\dfrac{350}{FOS}=160.35\)
\({FOS}=\dfrac{350}{160.35}\)
FOS = 2.183
USing the maximum-shear stress theory;
\(\dfrac{350}{2 FOS} =\sqrt{ (\dfrac{94-0}{2})^2+ (-75)^2\)
\(\dfrac{350}{2 FOS} =88.51\)
\(\dfrac{350}{ FOS} =2 \times 88.51\)
\({ FOS} =\dfrac{350}{2 \times 88.51}\)
FOS = 1.977
b. σx = 110 MPa, σy = 100 MPa
Using distortion - energy theory formula:
\(\dfrac{350}{FOS}= \sqrt{ 110^2+100^2-110*100+3(0)^2}\)
\(\dfrac{350}{FOS}= \sqrt{ 12100+10000-11000\)
\(\dfrac{350}{FOS}=105.3565\)
\(FOS=\dfrac{350}{105.3565}\)
FOS =3.322
USing the maximum-shear stress theory;
\(\dfrac{350}{2 FOS} =\sqrt{ (\dfrac{110-100}{2})^2+ (0)^2\)
\(\dfrac{350}{2 FOS} ={ (\dfrac{110-100}{2})^2\)
\(\dfrac{350}{2 FOS} =25\)
FOS = 350/2×25
FOS = 350/50
FOS = 70
c. σx = 90 MPa, σy = 20 MPa, τxy =−20 MPa
Using distortion- energy theory formula:
\(\dfrac{350}{FOS}= \sqrt{ 90^2+20^2-90*20+3(-20)^2}\)
\(\dfrac{350}{FOS}= \sqrt{ 8100+400-1800+1200}\)
\(\dfrac{350}{FOS}= 88.88\)
FOS = 350/88.88
FOS = 3.939
USing the maximum-shear stress theory;
\(\dfrac{350}{2 FOS} =\sqrt{ (\dfrac{90-20}{2})^2+ (-20)^2\)
\(\dfrac{350}{2 FOS} =\sqrt{ (35)^2+ (-20)^2\)
\(\dfrac{350}{2 FOS} =\sqrt{ 1225+ 400\)
\(\dfrac{350}{2 FOS} =40.31\)
\(FOS} =\dfrac{350}{2*40.31}\)
FOS = 4.341
A ____ is either in the pressure reducer or in the downstream side of the system to ensure that the control air pressure does not exceed about 30 psig. Group of answer choices
Answer:
A relief valve is either in the pressure reducer or in the downstream side of the system to ensure that the control air pressure does not exceed about 30 psig.
Determine the power output of the draw-works motor M necessary to lift the 600-lb drill pipe upward with a constant speed of 4 ft/s. The cable is tied to the top of the oil rig, wraps around the lower pulley, then around the top pulley, and then to the motor.
Answer:
\( \therefore \) The power output of the draw-works motor is 4.36 hp
Explanation:
Given that,
600 lb of weight of the drill pipe 4 ft/s constant velocity of the motorM power output of the motorAs the problem given, the cable is tied of the top on the oil rig and it wraps around the lower pulley and the top pulley. So, we will be using the formula below:
\( \boxed{\rm{2s_p + s_M = l}} \)Differentiate it but with respect to the time. Therefore,
\( 2v_p +v_M = 0 \)Thus,
\( V_M = -2v_p = -2(-4) = 8 \ ft/s \)Thus, the power output should be
\( P = Fv = \bigg(\frac{600}{2}\bigg) \cdot 8 = 2400 \ lb \cdot ft/s = \frac{2400}{550} = 4.36 \ hp \)
\( \therefore \) The power output of the draw-works motor is 4.36 hp
Drag each tile to the correct box. Not all tiles will be used.
Adam wants to become a certified professional engineer. What are the steps that he will have to follow?
Answer:
I think it is the 2,3,5 and 1 ones
7. The ____ is a device that connects a stationary object to a fall restraint vest.
A. restraint
B. tie-off
C. lanyard
D. sling
The lanyard is a device that connects a stationary object to a fall restraint vest. The correct option is C. lanyard
How to explain the informationThe answer is C. lanyard. A lanyard is a short length of rope or chain with a snap hook on one end that is used to connect a fall restraint vest to a stationary object. The other end of the lanyard is attached to the vest.
The other options are incorrect. A restraint is a device that prevents someone from moving freely. A tie-off is a secure attachment point for a lanyard. A sling is a piece of fabric that is used to support a load.
The correct option is C
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fi Home e Content zy Section 4.15 - DAT 210: Data Pro X c lle Bython Chaleton Pecal x + . : = zyBooks My library > DAT 210: Data Programming Languages home > 4.15: LAD: Hailstone sequence 5 Books catalog Help/FAQ A Ryan Wilson - 4.15 LAB: Hailstone sequence Given a positive integer n, the following rules will always create a sequence that ends with 1 caled the hailstone sequence .ifnis even, divide it by 2 • It n is odd multiply it by 3 and add 1 (1. 3n+1) - . Continue until nis 1 Wnte a program that reads an integer as input and points the hailstone sequence starting with the integer entered. Format the output so that ten integers, each separated by a tab character t), are printed per line. The output format can be achieved as follows: printin, endet Ex: If the input is 25 the outputis 39 11 SU 13 19 24 1 40 10 22 5 17 40 20 52 2 16 381271119390 LAR ACTIVT 4.15.1: LAB Hailstone sequence : : 0/10 main.py Land default template 1 Type your code
A program that reads an integer as input and points the hailstone sequence starting with the integer entered is mentioned as below.
What is Programming?Computer programming is the method of carrying out a certain computation, often through creating and constructing an executable computer program.
Programming activities include analysis, algorithm generation, algorithm accuracy and resource use assessment, and algorithm implementation.
CODE IN PYTHON:
def haleStoneSeq(num): ## method to that return the hailStoneSquence
NumberList = [num]
while num != 1:
if (num%2) == 0:
num = num//2
NumberList.append(num)
else:
num = (num * 3) + 1
NumberList.append(num)
return NumberList
n=int(input("Enter the input value : ")) ## asking the input from the user
print(haleStoneSeq(n)) ## method calling
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Need help fast 50 points Project: Creating a Morphological Matrix
Assignment Directions
A systematic way to view common functionality of an object's structure and components is through a morphological matrix. You are going to utilize this method to analyze a common household device (from the list below or your own idea). First, create the left-hand column by deciding on the parameters that allow the object to function normally. For example, a pencil sharpener has a blade and a housing unit to support the system. Use the parameters to describe the system. If the pencil sharpener is hand operated, list the parameter of hand turning (either the pencil itself in a small unit or a handle in a wall-mounted device). The parameter column can include specific structures in the device, power sources, or any other information you learned in the lesson. The right-hand columns will include the current methods used by the device to complete the parameter, as well as any other options that would satisfy the parameter. You must create at least two other options for each parameter.
While the matrix provides valuable information for an engineer, it is typically more technological than a client or decision team needs. Therefore, you will also need to complete a one- or two-page analysis of the device, including the current parameter solutions and any recommended alterations to a design. Each recommendation must be supported by information in the morphological matrix.
Here are some ideas of household devices that you can analyze:
can opener
bathroom or kitchen scale
doorknob assembly
stapler
Assignment Guidelines
a completed morphological matrix
each parameter must have at least three solutions
a written analysis of the device with supporting details from the matrix
Submission Requirements
One to two pages double spaced
Proper grammar and vocabulary is required.
Answer:
The fundamental difference between effective and less effective matrix organizations is whether the tension between different perspectives is creative or destructive. While various processes, systems and tools can help, what matters most is what top leadership says and does and how that flows through the organization in shared targets, clear accountabilities, live team interactions and team-building transparency and behaviors.
Getting matrix management right is linked inextricably to an organization’s culture - the only sustainable competitive advantage. Key components of a culture can be grouped into behaviors, relationships, attitudes, values and the environment.
Environment and values: Each organization has its own environment, context and bedrock values. Everyone needs to know what matters and why. Don’t try to do anything else until you’ve got that set.
Attitude is about choices: An organization’s overall strategy drives choices about which of its parts will be best in class (superior), world class (parity), strong (above average), or simplified/outsourced to be good enough. These choices help determine the need for a matrix and how best to design it.
Relationships and behaviors: This is why organizations have matrices. The most effective of them best balance focus and collaboration. They allow leaders and teams to build differential strengths and then work together to make the best possible decisions and scale enterprises with a creative tension that they could not do on their own.
My colleague Joe Durrett has worked all sides of matrix organizations in marketing at Procter & Gamble, sales and general management at Kraft General Foods and CEO of Information Resources, Broderbund Software and Advo. He has seen matrices at their best and at their worst and offered his perspective for this article along with his partners John Lawler and Linda Hlavac. The 12 ways to make matrix organizations more effective were built on their ideas.
Explanation:
In relation to mine planning and design define scheduling
Answer:
Scheduling is a process of create a structure that shows the way a schedule is organized before developing a complete and final schedule of a project.
Explanation:
This is the initial step in of developing a project schedule for a capital cost project. At this stage, the estimates for the project are done involving the various actions in the project. A lot of details are included in this schedule showing the activities that are to be performed and the constraints involved.
What is not a condition under which the malfunction indicator light or service engine light is turned off ?
The malfunction indicator light or service engine light is not switched off when the Powertrain Control Module Link is grounded.
A power-train control module (PCM), sometimes known as a control unit, is a motor vehicle component. The engine control unit (ECU) and transmission control unit are typically combined into one controller (TCU). On some vehicles, including many Chryslers, there are three different computers: the PCM, the TCU, and the Body Control Module (BCM). In general, these car computers are very dependable. In a car or truck, the PCM frequently regulates more than 100 variables. There are hundreds of different error codes that may appear and signify that a specific component of the car isn't working properly. The "check engine" light on the dashboard typically illuminates when one of these errors occurs.
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According to the article “Getting from Here to There,” which choice best explains how engineers offered a counterpoint to public transportation? A. by offering high-speed trains that travel even faster B. by making trains more energy efficient C. by creating more fuel-efficient hybrid cars D. by making more roads so there's less traffic
Answer: C is the best answer
Fugacity could be calculated for gases and liquids T) True F False
Fugacity could be calculated for gases and liquids. This statement is true.
The chemical potential of a condensed phase (liquid or solid) in equilibrium with its vapour phase is equal to the vapour's chemical potential, and as a result, the fugacity is also equal to the fugacity of the vapour. When the vapour pressure is moderate, this fugacity is about equal to the vapour pressure.
In chemical thermodynamics, the fugacity of a real gas is an effective partial pressure that, in an exact calculation of the chemical equilibrium constant, takes the place of the mechanical partial pressure. It is equivalent to the pressure of an ideal gas with the same molar Gibbs free energy, temperature, and pressure as the actual gas.
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please help with my economics problem
Answer:
You first get a new job, and make a new company and then by amazon to traumatize Jeff Bezos after his divorce
Explanation:
3. It's
job to consider more ergonomic approaches to work
A) Everyone's
B) O Your direct supervisor's
CO The employer's
DO The employee's
Answer:
right answer is option no d
Consider the products you use and the activities you perform on a daily basis. Describe three examples that use both SI units and customary units for measurement.
Answer: Three examples of activities that I can perform on a daily basis that involves both metric units (SI units) and customary units include: measuring the length of a door using a tape measure, which includes both SI units and customary units (like feet, inches, and centimeters); baking a cake that requires one teaspoon (customary unit) of baking soda, which could also be converted into four grams (SI unit); weighing myself on a weighing scale, which can be measured by pounds (customary unit) or kilograms (metric unit).
Explanation: I big brain :) (Not Really I Just Wanted To Help) I hope this helped! ;)
Three activities that I can do on a daily basis that involve both metric units (SI units) and customary units are: measuring the length of a door with a tape measure, which includes both SI units and customary units (like feet, inches, and centimeters); baking a cake that calls for one teaspoon (customary unit) of baking soda, which can also be converted to four grams (SI unit); and weighing myself on a weighing scale, which can be measured in pound and kilogram (metric unit).
A one-story office building measures 225 feet by 350 feet. After the lighting calculations are completed, what are the additional load calculations for general-purpose receptacle outlets, when the actual number of general-purpose receptacle outlets is unknown
The additional load calculations for general-purpose receptacle outlets would be equal to 18750.
What are receptacles?A touch device set up at the opening for the connection of an attachment plug is called a receptacle. A single receptacle is a single touch tool without a different touch tool at an equal yoke. A couple of receptacles are or greater touch devices at the equal yoke.
Therefore, The additional load calculations for general-purpose receptacle outlets would be equal to 18750.
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Under conditions for which the same room temperature is maintained by a heating or cooling system, it is not uncommon for a person to feel chilled in the winter but comfortable in the summer. Provide a plausible explanation for this situation (with supporting calculations) by considering a room whose air temperature is maintained at 20 ℃ throughout the year, while the walls of the room are nominally at 27 ℃ and 14 ℃ in the summer and winter, respectively. The exposed surface of a person in the room may be assumed to be at a temperature of 32 ℃ throughout the year and to have an emissivity of 0.90. The coefficient associated with heat transfer by natural convection between the person and the room air is approximately 2 W/m2∙K.
Answer:
radiative heat loss substantially increases as the wall temperature declines
Explanation:
The body's heat loss due to convection is ...
(2 W/m^2·K)((32 -20)K) = 24 W/m^2
__
The body's heat loss due to radiation in the summer is ...
\(\epsilon\sigma(T_b^4-T_w^4)\quad\text{where $T_b$ and $T_w$ are body and wall temperatures ($^\circ$K)}\\\\0.90\cdot 5.6703\cdot 10^{-8}(305.15^4-300.15^4)\,\text{W/m$^2$}\\\\\approx 28.3\,\text{W/m$^2$}\)
The corresponding heat loss in the winter is ...
\(0.90\cdot 5.6703\cdot 10^{-8}(305.15^4-287.15^4)\,\text{W/m$^2$}\\\\\approx 95.5\,\text{W/m$^2$}\)
Then the total of body heat losses to surroundings from convection and radiation are ...
summer: 24 +28.3 = 52.3 . . . W/m^2
winter: 24 +95.5 = 119.5 . . . W/m^2
__
It is reasonable that a person would feel chilled in the winter due to the additional radiative loss to the walls in the winter time. Total heat loss is more than doubled as the wall temperature declines.
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.
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.
A(n) ____ is an exact representation of an object projected onto a plane from a specific position.
Answer:
orthographic position
WHAT IS A TOROID IN HYDRAULUCS?
Answer:
A hydraulic actuator comprised of a toroidal piston within a toroidal enclosure, with differential fluid pressure alternatively applied to upper and lower surfaces of the piston to cause a reciprocating motion, and with plural double ended piston rods extending in parallel above and below the piston, and slidably extending in fluid sealed relation through end caps of the toroidal enclosure to distribute the vibrational force produced by the reciprocating piston over plural points of a surface area of the mass to be vibrated, thereby reducing the likelihood of stress, strain, or harmonics in the mass.
Answer:
Expl
A hydraulic actuator comprised of a toroidal piston within a toroidal enclosure, with differential fluid pressure alternatively applied to upper and lower surfaces of the piston to cause a reciprocating motion, and with plural double ended piston rods extending in parallel above and below the piston, and slidably extending in fluid sealed relation through end caps of the toroidal enclosure to distribute the vibrational force produced by the reciprocating piston over plural points of a surface area of the mass to be vibrated, thereby reducing the likelihood of stress, strain, or harmonics in the mass.anation:
Segment A in the urban four-lane divided arterial reference population will be screened by the "Excess Predicted Average Crash Frequency Using SPFs" performance measure. Segment A is 0.60 mi long. If the sliding window method is used to study this segment with a window of 0.30-mi and 0.10-mi increment, how many times will the performance measure be applied on Segment A?
The sliding window technique is utilized to identify the crash frequency of a certain region. A performance measure called "Excess Predicted Average Crash Frequency Using SPFs" will be used to screen Segment A in the urban four-lane divided arterial reference population.
The segment is 0.60 mi long. Let's determine the number of times the performance measure will be applied to Segment A using the sliding window method.In 0.30-mi windows, the section is analyzed. The increment is 0.10 miles long. As a result,0.30 mi long window = 0.60 / 0.30 = 2 windows.0.10 miles long increment = 0.60 / 0.10 = 6 increments.So, the total number of applications = number of windows × number of increments in each window= 2 × 6= 12.The performance measure will be used 12 times on Segment A. Answer: In 200 words. The sliding window technique is utilized to identify the crash frequency of a certain region. A performance measure called "Excess Predicted Average Crash Frequency Using SPFs" will be used to screen Segment A in the urban four-lane divided arterial reference population. The segment is 0.60 mi long. Let's determine the number of times the performance measure will be applied to Segment A using the sliding window method.In 0.30-mi windows, the section is analyzed. The increment is 0.10 miles long. As a result,0.30 mi long window = 0.60 / 0.30 = 2 windows.0.10 miles long increment = 0.60 / 0.10 = 6 increments.So, the total number of applications = number of windows × number of increments in each window= 2 × 6= 12.The performance measure will be used 12 times on Segment A.
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In each of the scenarios, two spheres of the same size and shape hang from a common attachment point. Each sphere is electrically charged and is either perfectly conductive or perfectly insulating (gray is conductive, orange is insulating). The magnitude of charge Q is greater than the magnitude of charge q.
Each pair of spheres is allowed to swing freely and comes to rest in some equilibrium position. In each scenario, determine whether the spheres come to rest in contact, or separated by some distance. Assume that the weight of the spheres is small enough that electrostatic forces are significant.
Spheres come to rest in contact:
- both gray, charges -q and +q
- both orange, charges -q and +q
- both orange, charges +Q and -q
- gray, charge -Q, orange, chargef +q
Spheres come to rest separated
- both gray, +Q and +q
- both gray, -Q and +q
- both orange, -q and -Q
Spheres come to rest in contact:
- both gray, charges -q and +q
- both orange, charges -q and +q
- both orange, charges +Q and -q
- gray, charge -Q, orange, chargef +q
Spheres come to rest separated
- both gray, +Q and +q
- both gray, -Q and +q
- both orange, -q and -Q
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The weight of the spheres is small enough that electrostatic forces are significant. Spheres come to rest in contact:
- both gray, charges -q and +q
- both orange, charges -q and +q
- both orange, charges +Q and -q
- gray, charge -Q, orange, charge f +q
Spheres come to rest separated
- both gray, +Q and +q
- both gray, -Q and +q
- both orange, -q and -Q
Where can electrostatic force be found?The distance between two charges creates an electrostatic force. The distance between two charges and their respective magnitudes determine the magnitude of the electrostatic force. When two charges, either positive or negative, are brought together, they repel one another.
What is electrostatics?The phenomena and properties of electric charges that are either stationary or moving slowly are the focus of the physics branch known as electrostatics. Coulomb's law describes electrostatic phenomena, which are caused by the forces that electric charges exert on one another.
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shear panels or shear walls are sometimes used in steel-framed buildings. which component of wood light-frame construction serves the same function as a shear panel/wall?
Since shear panels or shear walls are sometimes used in steel-framed buildings. the component of wood light-frame construction serves the same function as a shear panel/wall is Wall Sheathing.
What does the covering do?The supporting framework that serves as a covering for a building's surfaces is known as sheathing. Sheathing's primary purpose is to give a surface for additional materials to be applied to, whether on a building's walls, roof, or floors. Additionally, it gives buildings more structural integrity.
Therefore, Sheathing for walls is largely a structural component. It stops walls from swaying or bending and is fastened to the outer wall framing. Building walls are constructed using sheathing as a base for siding nails.
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Anyone got a pc that can run 240 fps? Around like 1,300 dollars that can run 240 fps on fortnite whoever answers and gives me a good pc I will give brainliest
Answer:
What do u need it for just gaming or for streaming and other things