technician a says that the multimeter is connected in series with the circuit or component to measure the voltage dropped by the circuit resistance. technician b says that the ohmmeter works well in testing semiconductors. who is correct?

Answers

Answer 1

The multimeter is linked in series with the circuit or component to measure the voltage dropped by the circuit resistance, which technician an is accurate to state is the case.

When a multimeter is linked in series with an electrical circuit, what may be measured?

A multimeter needs to be connected in series with a circuit in order to measure current. See the example below. Placing the dial of the meter at the highest current range (or the 10A range if the probe is in the 10A socket).

How can the resistance of a resistor be measured using a digital multimeter?

Select any resistor at random, and then set the multimeter to the 20k preset. Next, apply the same pressure you would use to push a key on a keyboard to the probes against the resistor legs. One of three values—0.00, 1, or the actual resistor value—will be displayed by the meter.

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Related Questions

What is the key objective of data analysis

Answers

Answer: The process of data analysis uses analytical and logical reasoning to gain information from the data. The main purpose of data analysis is to find meaning in data so that the derived knowledge can be used to make informed decisions.

what data-structures linker will use and what will be the values of all the variables and data-structures at the end of pass 1 of linkage editor?

Answers

A linker can use any of the following  data structures during pass 1 of its operation:

Symbol table - a data structure that stores information about symbols defined and referenced in the object files and may contain entries for functions, variables, etc,  with their associated addresses and attributes.

A relocation table is a data structure that stores information about the locations in the object files that need to be modified during the linking process. It contains and specifies the type of relocation and the associated symbol.

The linker may use data structures to represent the object files that are being processed, such as a format-specific data structure like ELF, or COFF that stores the object file's sections, symbols, and other attributes.

During pass 1, the linker may also use Loader Data Structures that represent the layout and organization of the target system's memory, such as segments or sections that will be used to load the executable program or shared library.

The actual values of these variables and data structures will depend on the specific input files being processed and the linker's implementation.

What does a linker do?

A linker is in charge of resolving symbols (such as function or variable names) in object files and libraries and generating an executable program or shared library.

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what is the horsepower rating on the bmw m3 in north america?A) 473 horsepowerB) 463 horsepowerC) 450 horsepowerD) 470 horsepower

Answers

A) 473 horsepower rating on the bmw m3 in north america.

BMW's S58 twin-turbo 3.0-liter inline-six, which in standard form generates 473 horsepower and 406 lb-ft of torque, powers the M3. It is connected to either a six-speed manual transmission or an eight-speed automatic transmission that only drives the rear wheels. According to BMW, the M3 will reach 60 mph in 4.1 seconds and reach a top speed of 180 mph.

Engine output increases to 503 horsepower and 479 lb-ft of torque in the M3 Competition. BMW's xDrive AWD technology is now provided, whilst the Competition is only offered with an automatic transmission. Considering the car's capabilities, fuel economy isn't too poor; regardless of the transmission selected, it receives an EPA rating of 16/23 mpg city/highway.

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Is the impedance of the capacitor purely reactive, and how does it compare to the nominal value of the ideal capacitor? Why or why not is it purely reactive?

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In an electric field, a capacitor is a device that stores electrical energy. It has two terminals and is a passive electrical component. Capacitance refers to a capacitor's effect.

What is the impedance of an ideal capacitor?An perfect capacitor has an infinite resistance. For all frequencies and capacitance levels, the reactance of a perfect capacitor, and consequently its impedance, is negative.A capacitor that has no resistance and therefore doesn't lose any energy while it's operating is the ideal capacitor. It just possesses capacitance. There is no dielectric loss in a perfect capacitor. High temperature stability characterizes the ideal capacitor.As capacitance and frequency increase, capacitive reactance falls. Impedance is the complete opposition that reactance and resistance give.Similar to inductors, the ideal capacitor is a totally reactive device with no resistive (power dissipative) effects whatsoever. Of course, nothing is so flawless in the actual world. Capacitors, however, have the advantage of often being more pure reactive components

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identify the number returned by the dequeue operation on the following priority queue. array containing 7 elements: 21, 36, 45, 54, 60, 73, 90. group of answer choices 54 36 21 90

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90 is the number returned by the dequeue operation on the priority queue.

What is meant by priority queue with example?The highest number in a queue with priorities arranged in descending order is given the highest priority. The priority queue, for instance, has six numbers in it:21, 36, 45, 54, 60, 73, 90. . Ascending order is the first order in which you should organize these numbers. According to the updated list:90,73,60,54,45,36.In contrast to a standard queue or stack data structure, a priority queue is an abstract data type in which each element also has a priority assigned to it. In a priority queue, a high-priority element receives service before a low-priority element.90 is the number returned by the dequeue operation on the priority queue.

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Write one page summary about engineering.

Answers

Answer:

this is the answer

Explanation:

this the summery about engineering

Write one page summary about engineering.
Write one page summary about engineering.
Write one page summary about engineering.
Write one page summary about engineering.

You are told by a technician over the phone that you need to bring replacement DDR SDRAM memory. What type of packaging is used for DDR SDRAM memory?

Answers

DDR SDRAM memory comes in several forms of packaging. It is important to determine the correct type of memory module as well as the correct packaging when replacing memory. In this particular case, the technician over the phone has told you that you need to bring a replacement DDR SDRAM memory.

The packaging that is used for DDR SDRAM memory can be summarized below:

Dual Inline Memory Module (DIMM): This is the most common type of packaging used for DDR SDRAM memory. DIMMs have a single notch on the connector to prevent insertion of an incompatible memory module.Single Inline Memory Module (SIMM): This is an older type of packaging used for DDR SDRAM memory. SIMMs have two notches on the connector to prevent insertion of an incompatible memory module.Small Outline Dual Inline Memory Module (SODIMM):

This is a type of packaging that is typically used for laptops and other portable devices. SODIMMs are smaller than DIMMs and have a single notch on the connector.MicroDIMM:

This is an even smaller type of packaging that is used in some ultra-portable laptops. MicroDIMMs are much smaller than SODIMMs and have a single notch on the connector. In conclusion, the packaging for DDR SDRAM memory depends on the type of module being used. The most common type of packaging is the DIMM, while SODIMMs and MicroDIMMs are used in portable devices.

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What is RACE fire safety?

Answers

Answer:

Remove, Alarm, Confine and Extinguish or Evacuate

Explanation:

This easy to remember acronym is our University procedure in the case of a fire. Particularly in the hospital, every staff member is trained to recognize and respond appropriately in the case of a fire using this term.

Discuss how you can identify which resistances are in series and which ones are in parallel in a series-parallel circuit. How might this affect how you measure current and voltages in the circuit with a digital multimeter? Discuss the difference between voltage division and current division and how each can be used to analyze a series-parallel circuit.

Answers

Identifying resistances in series and parallel in a series-parallel circuits involves analyzing the circuit's topology and understanding the connection patterns.

This information affects how you measure current and voltages using a digital multimeter. Voltage division and current division are techniques used to analyze series-parallel circuits, with voltage division determining the voltage across individual resistances and current division determining the current through individual branches.

To identify resistances in series, you look for a direct connection between resistors where the current flows through one resistor into the next without any branching. In parallel, resistances are connected at both ends and share the same voltage. Analyzing the circuit's schematic or physical layout helps identify the connections.

When measuring current with a digital multimeter in a series-parallel circuit, you can place the meter in series with a specific branch to measure the current flowing through that branch. For voltage measurements, you can use the meter in parallel across a particular resistance to measure the voltage drop across it.

Voltage division is a technique used to determine the voltage across individual resistances in a series-parallel circuit. By considering the ratio of the resistance value to the total resistance, you can calculate the voltage drop across each resistor using the total applied voltage. Current division, on the other hand, analyzes the current flowing through different branches in a series-parallel circuit. It involves calculating the ratio of the conductance (inverse of resistance) to the total conductance and multiplying it by the total current to determine the current flowing through each branch.

identifying series and parallel resistances in a series-parallel circuit allows for accurate measurement of current and voltage using a digital multimeter. Voltage division and current division are useful techniques for analyzing series-parallel circuits, providing insights into the voltage drop and current distribution across resistors and branches, respectively.

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A commercial jet is flying at a standard altitude of 35,000 ft with a velocity of 550 mph: (a) what is the Mach number? (b) should the flow be treated as incompressible, why or why not?

Answers

Answer:

Mach number = 0.68168

The flow should be treated as compressible.

Explanation:

Given that:

The altitude of a commercial jet = 35000

The properties of air at that given altitude are as follows:

Pressure = 24.577 kPa

Temperature T = 50.78176° C

Temperature T = ( 50.78176 + 273 )K = 328.78176 K

\(\varphi = 0.38428 \ kg/m^3\)

The velocity is also given as: 550 mph = 245.872 m/s

Therefore, the sonic velocity is firstly determined by using the formula:

\(a = \sqrt{ \vartheta \times R \times T\\)

\(a = \sqrt{1.4 \times 287 \times 323.78176\)

\(a = \sqrt{130095.5112\)

a = 360.68755 m/s

Then, we can calculate the Mach number by using the expression:

\({Mach \ number = \dfrac{V}{a}}\)

\(Mach \ number = \dfrac{245.872}{360.68755}\)

Mach number = 0.68168

b) Ideally, all flows are compressible because the Mach number is greater than 0.3, suppose the Mach number is lesser than 0.3, then it is incompressible.

What sub-discipline of Mechanical Engineering focuses
heavily on vehicle design and testing?
Geothermal Engineering
Automotive Engineering
Biomedical Engineering
Architectural Engineering

Answers

Automotive I believe

Answer:

Automotive engineering

what document is the primary reference document when making ethical decisions?​

Answers

The one that has Ben cited the most and which most directly relates to the topic it is pertaining to.

Please help me solve the following problems, thank you
Describe TWO factors that need to be considered when selecting material for use as furnace linings.

Answers

When selecting materials for use as furnace linings, several factors need to be carefully considered. Two important factors are:

Temperature Resistance: Furnaces operate at high temperatures, and the chosen lining material must have excellent temperature resistance to withstand the extreme heat. Different furnaces may require different temperature capabilities, so it is crucial to select a lining material that can withstand the specific operating temperature range. Factors such as melting point, softening point, and thermal conductivity of the material should be evaluated to ensure it can handle the heat without deteriorating or deforming. High-temperature-resistant materials, such as refractory ceramics (e.g., alumina, silica, zirconia), refractory metals (e.g., molybdenum, tungsten), or specialized heat-resistant alloys, are commonly used for furnace linings.

Chemical Compatibility: Furnaces often involve various chemical processes and environments, such as oxidation, reduction, acidic or alkaline atmospheres, or exposure to corrosive gases. The selected lining material must be chemically compatible with these conditions to prevent degradation or chemical reactions that could compromise the integrity of the lining. It is important to consider factors such as resistance to chemical attack, stability in different atmospheres, and potential reactions with the process materials or by-products. Suitable lining materials may include refractory materials that are chemically inert or have specific chemical resistance properties, such as high-alumina refractories, silica-based refractories, or certain types of specialty coatings.

By carefully evaluating temperature resistance and chemical compatibility, the selection of a suitable lining material can ensure optimal performance, longevity, and safety of furnace operations.

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Complex machines are defined by
Otheir multiple moving parts.
Otheir use of several materials.
the fact that they are difficult to repair.
the use of digital controls for some features.
Previous Page
Next Page

Answers

Answer:

their multiple moving parts.

Explanation:

1) (30 pts ) Oxygen (O2) flows through a pipe, entering at at 4 m/sec at 10000 kPa, 227oC. For a pipe inside diameter of 3.0 cm, find the volumetric flow rate (m3/sec) and the mass flow rate of the gas (kg/sec) assuming you have an ideal gas

Answers

Complete Question

Nitrogen (N2) flows through a pipe, entering at at 4 m/sec at 1000 kPa, 2270C. For a pipe inside diameter of 3 cm, find the volumetric flow rate (m3/sec) and the mass flow rate of the gas (kg/sec) assuming you have an ideal gas Then using your ideal gas mass flow rate find the rate at which enthalpy enters the pipe (kJ/sec) NO Cp, Cv, k permitted

Answer:

\(H=9.91kJ/sec\)

Explanation:

From the question we are told that:

Velocity \(v=4 m/sec\)

Pressure \(P=1000kPa\)

Temperature \(T=227 \textdegree C\)

Diameter \(d=3cm=>0.03m\)

Generally the equation for volumetric Flow Rate is mathematically given by

\(V_r=(\frac{\pi*d^2}{4}v)\)

\(V_r=(\frac{\pi*(0.03)^2}{4} *4)\)

\(V_r=0.002827m^3/s\)

Generally the equation for mass Flow Rate is mathematically given by

\(m_r=\frac{PV_r}{RT}\)

\(m_r=\frac{1000*0.002827}{0.297*(227+273)}\)

\(m_r=0.019kg/sec\)

Generally the equation for mass Flow Rate is mathematically given by

Using gas Table for enthalpy Value

\(T=500K=>h=520.75kg\)

Therefore

\(H=mh\)

\(H=0.019*520.75\)

\(H=9.91kJ/sec\)

a typical information system will have which of these? (select all that apply, omit those that do not) a) somewhere to store data (often in the form of a database) b) a user interface where commands can be issued and results received c) a program to help use the data d) software to convert knowledge into data

Answers

Computer equipment Computer software is an example of physical technology that deals with data. The software's function is to instruct the hardware on what to do in the context of telecommunications.

Human resources and procedures, databases, and data warehouses. Operational, management, and strategic level systems are the three basic kinds of information systems that cater to various organizational levels. Information systems carry out tasks like collecting input data, storing it, processing it, and finally producing output data. The components of a system are not isolated from one another; rather, they are intertwined and have an impact on one another. To accomplish the system's objective, every component is arranged in a particular way. In a bigger system, a system will have a specific role to play. System feedback exists.

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Legal metrology would protect consumers from businesses that do not take measurements according to defined measuring regulations.

Answers

From what my research concluded, true

Za answa iz:

True

Twust meh

Represent each of the following combinations of
units in the correct SI form using an appropriate prefix:
(a) , (b) , and (c) .

Answers

The correct SI Form of the following combinations of Units are given as follows:

A) kN/μs = GN/s

B) Mg/mN; = Gg/N

C) MN/(kg.ms)  = GN/(kg.s)

What is a SI Unit?

The International System of Units, abbreviated SI in all languages and often pleonastically as the SI system, is the current version of the metric system and the world's most extensively used measuring system.

The System of Units, often known as the metric system, is frequently shortened as SI, which originates from the original French word, Système international d'unités.

A) kN/μs  = (10) ³N/ (10) ⁻6s

= (10)⁹ N/s

= GN/s

B) Mg/mN = (10⁶)g/10⁻³/N

= Gg/N

C) MN/ (kg.ms) = 10⁶N/kg * (10⁻³)s

= 10⁹ (N/kg · s)

= GN/Kg · S)

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Full Question:

Represent Each Of The Following Combinations Of Units In The Correct Si Form Using An Appropriate Prefix:

A) kN/μs

B) Mg/mN; and

MN/(kg.ms)

Refer to the graphic. What type of cabling is shown? a. STP b. UTP c. Coax d. Fiber

Answers

STP cable employs four of wires, each of which is shielded with foil and then covered with a metal braid or foil overall.

What kind of cable is UTP?

Unshielded twisted-pair cable is known as UTP. A 100 ohm cable called a UTP cable has 2 to 1800 coaxial cables pairs that are encased in an outer jacket. They don't have a metal shield. As a result, the wire has a small diameter yet is not shielded from electrical interference.

UTP or FTP, which is preferable?

For instance, Unshielded twisted - pair (unshielded twisted pair cables can be a good choice if you intend to install Network cable in your home. But if you wish to use other Gigabit Ethernet and PoE (Power through Ethernet) applications.

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F12-33. The ca . R has a speed of 55 ft/s. Determine the angular velocity 8 of the radial line OA at this instant.

Answers

Answer:

0.1375 rad/s

Explanation:

Speed of car = 55 ft/s

We are to find angular velocity, which is θ.

There are mistakes in this question. It should be θ not 8 and r = 400 ft

Radius r = 400ft

Speed = velocity = 55 ft/s

We Express transverse of velocity

Vθ = rθ

Vθ = 400θ

Then magnitude

V = √(Vr)²+(Vθ)²

55 = √0² + 400θ²

55 = √160000θ

55 = 400θ

We find the value of θ

θ = 55/400

= 0.1375rad/s

The angular velocityθ = 0.1375 rad/s

A helicopter is hovering in a steady cross wind at a gross weight of 3,000 lb (1,360.8 kg). This helicopter has 275 hp (205 kW) delivered to the main rotor shaft. The tail rotor is 2.3 ft (0.701 m) and has an induced power factor of 1.15. The tail rotor is located 15.3 ft (4.66 m) from the main rotor shaft. Determine the crosswind conditions (velocity and direction) in which the tail rotor effectiveness may be reduced or lost. If the center of gravity is assumed to lie on the rotor shaft axis, determine the feasible yawing angular velocity that the pilot can demand that may also result in a loss of tail rotor effectiveness

Answers

Answer: Answer Bellow

Explanation:The helicopter has 275 hp (205 kW) delivered to the main rotor shaft. The tail rotor radius is 2.3 ft (0.701 m) and has an induced power factor of 1.15.

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What are the major types of interior walls and partitions in a larger building, such as a hospital, classroom building, apartment building, or office building? How do these types differ from one another? Why is gypsum used so much in interior finishes? Name the coats of plaster used over expanded metal lath and explain the role of each. Under what circumstances would you specify the use of portland cement plaster? Keenes cement plaster? Veneer plaster? Describe step by step how the joints between sheets of gypsum board are made invisible. List the potential range of functions of a finish ceiling and of a finish floor. What are the advantages and disadvantages of a suspended ceiling compared to those of a tightly attached ceiling? When designing a building with its structure and mechanical equipment left exposed at the ceiling, what precautions should you take to ensure a satisfactory appearance? What does underlayment do? How should it be laid? List several different approaches to the problem of running electrical and communications wiring beneath a floor of a building framed with steel or concrete

Answers

The major types of interior walls and partitions in a larger building are:

Fire wallFire barrierSmoke barrier

Why is gypsum used so much in interior partitions?

It is different because it is more durable than the rest and it is also:

Has a Light weight.It is sound resistance.One can worked on it even if its wet or dry.

Conclusively, the coats of plaster that are used over expanded metal lath are:

Scratch coat.Brown coat.Finish coat.

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One of the tools that can be used to assist in the Architecture Design Process is a Schematic Block Diagram (SBD). This tool:

Answers

This tool allows architects to quickly and easily explore design ideas by creating visual diagrams of the system’s components, connections, and relationships.

What is diagrams?

Diagrams are visual representations of information, concepts, or processes. They are used to provide a clearer understanding of complex ideas, data, and relationships. Diagrams are used in a variety of fields, including engineering, science, mathematics, and business, to illustrate systems and processes. Diagrams can be used to communicate complex concepts and data, provide a summary of key points, or to show cause-and-effect relationships. Diagrams can also be used to help visualize problem-solving processes, decision-making processes, and to outline organizational structures. Diagrams can be created using a variety of tools, including traditional drawing tools, software applications, or web-based tools.

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An engineer places a small sample of a material on a horizontal disk whose surface is made of another material and then rotates the disk from rest with a constant angular acceleration of 4 rad/s2. Assuming that the coefficient of static friction between the sample and disk is 0. 2, what is the angular velocity of the disk at the time instant when the sample starts slipping on the disk?.

Answers

The critical value of the angular velocity obtained just before the slipping starts is the answer to this question and it is \(\bold{\omega = \sqrt{\frac{\mu.g}{r}}}\).

Let's consider the sample to be a point object.There are 2 forces acting upon the sample when it is on the plane and rotating: the normal force from the plane and the friction force directed to the centre of the rotating axis.This friction force provides the centripetal force needed to continue the rotation on the disk keeping itself at rest on the disk relative to it.The reason for a slip is due to the lacking of this friction so that it is no longer capable of providing the required amount of centripetal force in the form of friction.The maximum friction is simply \(f_{max} = \mu_s.R\) where \(R\) is the normal force on the sample and \(\mu_s\) the coefficient of static friction. By the vertical equilibrium \(R = mg\) and that gives \(f_{max} = \mu_s. mg\)The proper condition to continue the rotation without slipping is as follows and the critical value of angular velocity can be found from it.

                                         \(\begin{aligned}\\\\F &= ma\\\\f_{max} &\geq ma\\\\ \mu_s.mg &\geq m.r\omega^2\\\\\omega &\leq \sqrt{\frac{\mu_sg}{r}}\\\\\omega_{critical} &= \sqrt{\frac{\mu_sg}{r}}\end{aligned}\)

The critical angular velocity depends only on these parameters and for a given system it is dependent on where it is primarily placed from the centre of rotation (this question lacks this piece of data by the way).So this is the answer to this question and with the data for the constant angular acceleration, you can calculate how long it would take from the startup or how many rotations it would take until the point of slipping.For that, you can employ the formulae  \(\omega = \omega_0+\alpha.\Delta t\) and \(\omega^2 = \omega^2_0+2\alpha .\Delta \theta\) respectively by putting \(\omega = \omega_{critical}\).

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Tech A says that after an accident you should take measures to avoid it in the future. Tech B says that it is okay to block an exit for a shop if you are actively working. Who is correct

Answers

Technician A is the appropriate response based on the information provided in the question.

How would you define measures?

the quantity or size of something as determined by measurement. use equal amounts of the ingredients.: a yardstick, cup, or other measuring device.: a measurement unit. A foot is used to measure length.

What are basic steps?

The measurement that just employs one kind of unit is considered to be simple. minutes and hours. For instance, to convert 2 hours, 23 minutes, and 12 seconds to seconds, we must first get all 3 parameters in seconds using the conversion factors, then add them.

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A deep drawing operation is performed on a sheet-metal blank that is 1/8 in thick. The height of the cup = 3.8 in and its diameter = 5.0 in (both inside dimensions). (a) Assuming the punch radius = 0, compute the starting diameter of the blank to complete the operation with no material left in the flange. (b) Is the operation feasible (ignoring the fact that the punch radius is too small)?

Answers

Answer:

a) Db = 10.05 in

b) The operation is not feasible

Explanation:

Let's begin by listing out the given variables:

Thickness = 1/8 in, Height (h) = 3.8 in,

Diameter (Dp) = 5 in ⇒ rp = Dp ÷ 2 = 5 ÷ 2 = 2.5 in

a) Area of cup = Area of wall + Area of base

A = 2πh(rp) + π(rp)²

A = (2π * 2.5 * 3.8) + (π * 2.5²)

A = 59.69 + 19.635 = 79.325 in²

A ≈ 79.33 in²

But π(rb)² = 79.33 ⇒ rb² = 79.33 ÷ π

rb² = 25.25

rb = 5.025 ⇒ Db = 2 * rb = 2 * 5.025 = 10.05 in

Db = 10.05 in

b) To calculate for feasibility, we use the formula, draw ratio equals diameter of the blank divided by diameter of the punch

Mathematically,

DR = Db ÷ Dp

DR = 10.05 ÷ 5 = 2.01

DR = 2.01

DR > 2 ⇒ the operation is not feasible

For an operation to be feasible, it must have a drawing ratio limit of 2 or lesser

The lattice parameter of copper is 0.362 nanometer. The atomic weight of copper is 63.54 g/mole. Copper forms a fcc structure. Answer the following questions.

a. Volume the unit cell in cubic centimeters in cubic centimeters is:______
b. Density of copper in g/cm^3 is:________

Answers

Answer:

a) 4.74 * 10^-23 cm^3

b)  8.9 g/cm^3

Explanation:

Given data :

Lattice parameter of copper = 0.362 nM

Atomic weight of copper = 63.54 g/mole

Given that copper forms a fcc structure

a) Calculate the volume of the unit cell

V = a^3

  = ( 0.362 * 10^-7  cm )^3 = 4.74 * 10^-23 cm^3

b) Calculate density of copper in g/cm^3

Density = ( n*A ) / ( Vc * NA) ----------- ( 1 )

where: NA = Avogadro's number = 6.022 * 10^23  atoms/mol

n = number of atoms per unit cell = 4

A = atomic weight = 63.54 g/mol

Vc = volume of unit cell =  4.74 * 10^-23 cm^3

Input values into equation 1

Density = 8.9 g/cm^3

the term applied to the chemistry of the body​

Answers

Answer:

Biochemistry

Explanation:

Hope this helps :)

Answer:

Biochemistry

Have an amazing day!

What basis do bridges use to determine whetherto forward traffic?A. MAC addressesB. IP addressesC. traffic conditions at the timeD. nothing because bridges forward all traffic

Answers

Bridges use MAC addresses to determine whether to forward traffic.

MAC (Media Access Control) addresses are unique identifiers assigned to network interface controllers (NICs) by the manufacturer. These addresses are used in Ethernet and Wi-Fi networks to uniquely identify devices at the hardware level. A MAC address is a 48-bit (6-byte) hexadecimal value, typically displayed in the format of six groups of two hexadecimal digits separated by colons or hyphens (e.g., 00:1A:2B:3C:4D:5E). They maintain a table of MAC addresses and corresponding ports, and use this information to decide where to send incoming traffic. They do not rely on IP addresses or traffic conditions at the time, and they do not forward all traffic indiscriminately.


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true or false: engineering drawings use a special language of lines, symbols, notes, and abbreviations.

Answers

True. Engineering drawings use a special language of lines, symbols, notes, and abbreviations to communicate important information about the design and construction of a product or system. This language is standardized and universally recognized within the engineering industry, allowing engineers and other professionals to understand and interpret the drawings accurately.True.

Engineering drawings use a special language of lines, symbols, notes, and abbreviations that are used to communicate important information about the design of a product or system. These drawings are typically created by engineers and designers using Computer-Aided Design (CAD) software, and are used to convey information to other engineers, manufacturers, and contractors.The language of engineering drawings includes a wide range of different symbols and notations, such as geometric tolerancing symbols, welding symbols, surface finish symbols, and material specifications. These symbols and notations help to convey important information about the design, such as the size and shape of features, the tolerances that must be maintained during manufacturing, and the materials and finishes that must be used.Overall, engineering drawings are a critical component of the design and manufacturing process, as they help to ensure that products and systems are designed and manufactured correctly, and meet the required specifications and standards. True, engineering drawings use a special language of lines, symbols, notes, and abbreviations to effectively communicate technical information and design specifications.

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Rosa Parks's husband Raymond Parks was in a group that advocated forthe case related toAEmmett TillB The Scottsboro BoysRecy Taylor 1. What is an idealidzah]? Explain the main parts of t people, places, sections A What was does the faza system tell us about the nature of Islamicate science and education! 8. What are the differences between an de and a university degree? Who were the receivers of each? 2. One of the standard ways that Western writers discount islamicate science is the rise and decline thesis. Briefly explain this thesis by arranging the following alleged historical periods in their correct order: A Dark Ages in Europe 8. The decline of Islamicate science C. Enlightenment in Europe D. Founding of Islam E Golden Age of slam Scientific Revolution in Europe 3. Lyons divides the European response to Islam into three phases: affinity, expropriation and denial. Using an example from the reading or one of your own, explain beletly what Lyons means by each term 4. According to Lyons, what is the root cause of the denigration of Islam by Renan and Goldier? The charge on the__________is 1, the charge on the___________is +1, and the__________is neutral. Two parallel plates, each of area 3.37 cm2, are separated by 5.40 mm. The space between the plates is filled with air. A voltage of 8.55 V is applied between the plates. Calculate the magnitude of the electric field between the plates. Tries 0/20 Calculate the amount of the electric charge stored on each plate. Tries 0/20 Now distilled water is placed between the plates and the capacitor is charged up again to the same voltage as before. Calculate the magnitude of charge stored on each plate in this case. (Use = 83.0 for the dielectric constant of water.) Cost volume profit analysis helps managers predict how changes in costs and sales levels affect incomeTrueFalse A flat-plate X-ray diffraction pattern was obtained from an unoriented sample of polyethylene using CuKa radiation (a = 0.1542 nm). It consisted of three rings of radius 22.2, 36.6 and 19.7 mm. The specimen-to-film distance was 50 mm. Calculate the d-spacing of the planes giving rise to these reflections. What is the different between explicit and implicit details Which of the following is the solution to the quadratic equation x210x+21=0 ? Sympathetic nervous system Find the perimeter of this semi-circle with diameter, d = 78cm.Give your answer rounded to 1 DP. If the points (2,7),(-3,3) and (5,1) are the vertices of a triangle ,find the length of the median drawn through the first vertex. BRAINLIEST FOR WHOEVERS CORRECT Imagine if George Washington knew all about the rest of the presidents. What precedent do you believe George Washington would go back to his time and set How do you draw an inverse function? Find the m ULE in the triangle below.L109RUE49Find the m ULE. Plzzzzz help hurry What percentage of North American frogs and toads are in trouble? Anyone have chapter summary for "the devil in silver" oranything can help me understant this book? brainliest! please answer quickly **PLEASE HELP!!* James threw a ball from the roof of a building. The ball fell 3 feet in the first second, 9 feet in the next second, and 27 feet in the third second. which expression represents the distance the ball fell at the nth second?a. 3^nb. 3nc. n^3d. 6n-3 List the seven indications given in the AARC guideline for bland aerosol administration.1. Presence of upper airway edema (cool, bland aerosol) 2. Presence of a bypassed upper airway. 3. Need for sputum specimens. 4. LTB 5. Postextubation edema 6. Postoperative management of the upper airway. 7. Subglottic edema What is the x-intercept? 2x + 3y = 120 (0,6)O (6.0)0 (0.4)O (4,0)