Which ICMP message type description corresponds to ICMP Type 11 and Code 0 : OA. IP header bad B. source quench OC. destination host unknown D. None of the mentioned OE. TTL expired

Answers

Answer 1

The ICMP message type description that corresponds to ICMP Type 11 and Code 0 is "TTL expired."

So, the correct answer is E

The "TTL expired" ICMP message is used to inform the source host that the packet's Time to Live (TTL) field has expired.The purpose of this message is to inform the sender of a packet that a router along the path has discarded the packet due to the fact that the TTL value has reached zero (0). ICMP Type 11 and Code 0 correspond to "TTL expired in transit."

When a packet is transmitted through a network, the packet's TTL field is set to a specific value. The TTL value is decremented by one by each router along the path to the packet's destination. If the TTL value of the packet reaches zero, it is discarded by the router, and the router transmits an "TTL expired in transit" ICMP message back to the source.

This ICMP message serves as an indication that the packet was not received by the intended destination. The ICMP Type 11 message is used to indicate that an IP packet has been discarded and to provide additional information about the reason why it was discarded.

Hence, the answer is E

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Related Questions

A forklift will tip over if the center of gravity is outside the stability triangle. True or false?

Answers

Answer:

True

Explanation:

A forklift will tip over if the center of gravity is outside the stability triangle. The stability triangle refers to the area within the three wheels of a forklift that ensures the stability of the machine and prevents tipping. If the center of gravity of the load being carried by the forklift moves outside of the stability triangle, the machine becomes unstable and is at risk of tipping over. It's important to properly balance the load on a forklift and ensure that the center of gravity stays within the stability triangle to avoid accidents and maintain safety.

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Draw the circuit diagram for 3 cells connected in series, two resistors in series and a switch.

If V = I x R, calculate l if one cell = 2V and the resistor = 4Ω.​

Answers

Answer:

See the image for solution

Draw the circuit diagram for 3 cells connected in series, two resistors in series and a switch. If V

assuming that the coupling capacitor is a short circuit for the ac signal and an open circuit for dc. [hint: apply the superposition principle for the ac and dc sources.]

Answers

When connecting two circuits, a coupling capacitor is used to block DC and allow just the AC signal from the first circuit to flow through to the second.

Explain about the coupling capacitor?

When an alternating current signal needs to be sent from one node to another, a coupling capacitor is utilized. The coupling capacitor permits the coupling of AC changes from an input source but disallows any DC coupling, preserving the values of voltage, current, and resistance within each stage.

The purpose of coupling capacitors is to stop the bias voltage being provided to the base of a transistor by the incoming AC signal from interfering with it.

The DC bias settings of the two connected circuits can be separated using this technique. AC coupling is another name for capacitive coupling, and the capacitor utilized for it is also referred to as a DC-blocking capacitor.

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In how many ways 2450 can be written as a product of 2 factors?
Select one:
O a. 9
O b. 6
C. 18
O d. 10

Answers

Answer:

search up factors of 2450 and divide by two

The number of ways 2450 can be written as a product of 2 factors is 9 ways

How to find factors of numbers?

Factors of 2,450 = 1, 2, 5, 7, 10, 14, 25, 35, 49, 50, 70, 98, 175, 245, 350, 490, 1225, 2450

2450 has 18 factors.

The number of ways 2450 can be written as a product of 2 factors = number of factors / 2

= 18/2

= 9 wats

This means, taking the product of two factors such as;

1 × 2450

2 × 1225

5 × 490

7 × 350

10 × 245

14 × 175

25 × 98

35 × 70

50 × 98

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Which statement best explains why pneumatic cylinders need to be smaller than hydraulic cylinders?
The pneumatic system only needs enough room to have an onloff switch installed in order to operate correctly.
The energy in pneumatic power systems is easily transmitted to gases, which absorb the energy of the system and lower its efficiency
The control of the hydraulic system is much more precise and therefore requires a larger cylinder.
The fluid in a hydraulic system has more mass and therefore needs more storage space.

Answers

Answer:

The energy in pneumatic power systems is easily transmitted to gases, which absorb the energy of the system and lower its efficiency.

Explanation:

I did it on edge and got it right.

Answer:

The energy in pneumatic power systems is easily transmitted to gases, which absorb the energy of the system and lower its efficiency

Thanks for points!!! :D

what is the relationship between ladder length and weight capacity?

Answers

Answer:

The relationship between ladder length and weight capacity can vary depending on the specific ladder design and manufacturer. In general, however, there tends to be a correlation between ladder length and weight capacity.

When it comes to traditional extension ladders, longer ladders typically have a higher weight capacity compared to shorter ones. This is because longer ladders are typically designed to support more weight due to their increased size and structural reinforcement. The weight capacity of extension ladders is often specified by the manufacturer and can vary significantly based on the ladder's material, construction, and intended use.

It's important to note that weight capacity is not solely determined by ladder length. Other factors, such as the ladder's material (aluminum, fiberglass, etc.) and its overall construction, also play a significant role in determining the weight capacity. Manufacturers usually provide weight capacity guidelines to ensure user safety and to prevent ladder failure.

To ensure safety and proper usage, it is crucial to follow the manufacturer's guidelines and not exceed the weight capacity specified for a particular ladder. Exceeding the recommended weight capacity can compromise the ladder's structural integrity and pose a significant risk of accidents or injuries. Always consult the ladder's documentation or contact the manufacturer for accurate information regarding weight capacity and usage guidelines for a specific ladder model.

Suppose a CT LTI system has impulse response h(t) = (3e-21 - 2e-4)u(t) Compute the output of the system with the following inputs: 2. x(t) = 2e-2+u(t) The value of the output at t = 1 is ae-4 + be-2 where a and b are positive integers. Fill in their values below. a = b =

Answers

We can determine the output at t = 1 by substituting t = 1 into the expression:

a = 6 * [(1/23) - (1/23)e^(-21)] - 4 * [(1/6) - (1/6)e^(-4)]

b = 6 * [(1/23) - (1/23)e^(-21)] - 4 * [(1/6) - (1/6)e^(-4)]

To compute the output of the CT LTI system with the given impulse response and input, we can convolve the input function with the impulse response.

Given:

Impulse response h(t) = (3e^(-21t) - 2e^(-4t))u(t)

Input x(t) = 2e^(-2t) + u(t)

Using the convolution integral formula:

y(t) = ∫[x(τ) * h(t-τ)] dτ

Substituting the given values:

y(t) = ∫[(2e^(-2τ) + u(τ)) * (3e^(-21(t-τ)) - 2e^(-4(t-τ)))] dτ

Since the integration limits are from 0 to t, we can split the integral into two parts for convenience:

y(t) = ∫[2e^(-2τ) * (3e^(-21(t-τ)) - 2e^(-4(t-τ)))] dτ + ∫[u(τ) * (3e^(-21(t-τ)) - 2e^(-4(t-τ)))] dτ

The first integral can be simplified as follows:

∫[2e^(-2τ) * (3e^(-21(t-τ)) - 2e^(-4(t-τ)))] dτ

= 6 ∫[e^(-23τ + 2t)] dτ - 4 ∫[e^(-6τ + 2t)] dτ

Integrating both terms gives:

6 * [(-1/23)e^(-23τ + 2t)] - 4 * [(-1/6)e^(-6τ + 2t)]

Evaluating the integral at the limits 0 to t, we get:

6 * [(-1/23)e^(-23t + 2t) + (1/23)] - 4 * [(-1/6)e^(-6t + 2t) + (1/6)]

Simplifying further:

6 * [(-1/23)e^(-21t) + (1/23)] - 4 * [(-1/6)e^(-4t) + (1/6)]

Rearranging terms:

6 * [(1/23) - (1/23)e^(-21t)] - 4 * [(1/6) - (1/6)e^(-4t)]

Finally, we can determine the output at t = 1 by substituting t = 1 into the expression:

a = 6 * [(1/23) - (1/23)e^(-21)] - 4 * [(1/6) - (1/6)e^(-4)]

b = 6 * [(1/23) - (1/23)e^(-21)] - 4 * [(1/6) - (1/6)e^(-4)]

Evaluating these expressions gives the specific values for a and b.

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coherent-control of tunneling dynamics in functionalized semiconductor nanostructures: a quantum-control scenario based on stochastic unitary pulses

Answers

This paper explores the potential of using sequences of unitary pulses to achieve coherent control of quantum phenomena.

How is this so?

Specifically, it investigates controlling electron tunnelling and reducing decoherence in a quantum dot system.

The proposed approach involves applying 2π pulses repeatedly to manipulate the interference of wave-packet components.

Understanding and advancing quantum control techniques can have significant implications in various fields, such as quantum computing, communication, and precision measurements, leading to advancements in technology and scientific understanding.

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How do you convert a double into a string in C++ program? For example, double price into a string.

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The greatest approach to learn C++ is to create your own programs in the language.

Thus, The interviews also include questions on C++ programming. The best practice questions for fundamental C++ programs are covered in this article, ranging from simple ones like control flow, patterns, and functions to more difficult ones like pointers, arrays, and strings.

These examples of C++ programs will aid your practical learning of C++ programming.

Given that C++ may be used to develop a wide variety of programs. As a result, we have written more than 100 articles that are split into a series of C++ programming examples.

Thus, The greatest approach to learn C++ is to create your own programs in the language.

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the tech must know the input signals to the control module to be able to determine what the output signal should be.

Answers

The correct answer is the control module's inputs and outputs are checked to see if the system is operating properly.

The fundamental control function is carried out by a control module, which functions independently. Sensors, controllers, actuators, or other control modules can be found inside a control module. Procedural control cannot be executed by control modules; instead, it calls on them to complete a certain task. Connecting an onboard diagnostic (OBD or OBD II) tool to the diagnostic port is the least invasive technique to diagnose your ECM. You may then scan to see if your engine computers have generated any problem codes from there. There are several of these codes, and the handbook for your diagnostic equipment should explain what each one means.

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Calculate the capacitance-to-neutral in F/m and the admittance-to-neutral in S/km for the three-phase line in Problem 4.18. Also calculate the line-charging current in kA/phase if the line is 110 km in length and is operated at 230 kV. Neglect the effect of the earth plane.
A 230-kV, 60-Hz, three-phase completely transposed overhead line has one ACSR 954 kcmil conductor per phase and flat horizontal phase spacing, with 7 m between adjacent conductors. Determine the inductance in Him and the inductive reactance in ?/km.

Answers

The capacitance-to-neutral in F/m is 8.742 × 10⁻¹²  F/m

The admittance-to-neutral in S/km is j3.296 × 10⁻⁶  S/km

The line charging current in kA/phase if the line is 110 km in length and is operated at 230 kV, I\(_{chg}\) = 4.814 × 10⁻¹²  kA/ Phase

What is capacitance?

A component or circuit's capacitance is its capacity to accumulate and store energy in the form of an electrical charge. The ratio of the electric charge on each conductor to the potential difference, or voltage, between them is used to express capacitance.

Farads (F), which bear the name of English physicist Michael Faraday, are the units used to measure the capacitance value of a capacitor (1791–1867).

A farad is a huge amount of capacitance. Most household electrical appliances contain capacitors that produce only a tiny amount of electricity, often a thousandth of a farad (or microfarad, or F), or as little as a picofarad (a trillionth, pF).

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what is projectile motion.????​

Answers

Answer:

Projectile motion is a form of motion experienced by a launched object.

Answer:

Projectile motion is the motion of a body which experiences both vertical and horizontal motions ( trajection ) from point of flight up to the point of landing.

A box barge 65 m long and 12 m wide floats at a draught of 5.5 m in sea water. calculate: a) the displacement of the barge, b) its draught in fresh water.

Answers

The Displacement of the Barge whose length 65m and 12m wide- 4375.8 tonnes(a) and the Draught in Fresh Water- 5.61 m(b).

Let density of sea-water be- 1020kg/m3

Displacement of the barge= Density of sea water* Volume Displaced

                                         =1020* (12*65*5.5)

                                         =4375800 kg

                                         =4375.8 tonnes

Let Density of Fresh Water- 1000kg/m3

Draught in Fresh Water= Density of sea water/Density of water *draught in sea water

1020/1000 *5.5

Draught in Fresh Water= 5.61 m

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Explain what the ancient Romans did to solve the problem in the following scenario.

Situation: In ancient Italy, farmers were experiencing a drought. Rather than move to where the water was, Roman inventors decided to bring the water to the farmers.

Answers

Answer:

They moved fresh water around their vast empire with aqueducts and canals.

Explanation:

The value of dispersivity (a) for a given site is generally the same in all directions. Choose the most accurate response from the options below. Select one: a. No. Dispersivity is generally larger in

Answers

The most accurate response is: No. Dispersivity is generally larger in some directions than in others.

Dispersivity refers to the extent to which a fluid or solute spreads out or disperses in a porous medium, such as soil or rock. It is a property that characterizes the transport behavior of contaminants or pollutants in the subsurface. In many cases, the dispersivity value (a) is not the same in all directions within a given site.

The dispersivity value is influenced by various factors, including the physical properties of the porous medium, the nature of the contaminant, and the flow conditions. These factors can lead to variations in dispersivity values in different directions.

For example, in a highly heterogeneous subsurface environment, where there are variations in the size and connectivity of pores, the dispersivity may be larger in certain preferential flow paths or along fractures, resulting in higher dispersion in those directions. On the other hand, in directions where the porous medium is more homogeneous or where flow paths are restricted, the dispersivity may be smaller, leading to less dispersion.

Therefore, it is important to consider the anisotropic nature of dispersivity, where its value can vary in different directions, when assessing the potential transport and spread of contaminants in a given site. Understanding these directional variations in dispersivity can help in designing effective remediation strategies and predicting the movement of contaminants in the subsurface.

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A homogeneous beam of triangular cross section is subjected to a pure bending moment as shown in figure (a). Figure (b) indicates the cross section with centroid C as the origin of the coordinate system. In which point of the cross section is the magnitude of normal stress greatest? (a) y (b) fy Mz O (a) Point B O (b) Point C (c) Points A and B (d) Point A O (e) Not enough information to tell

Answers

The magnitude of normal stress is greatest at point D. Point A in the triangular cross-section of a homogeneous beam subjected to a pure bending moment.

The cross-section of a homogeneous beam of triangular cross-section, the point of the cross-section where the magnitude of normal stress is the greatest is Point C.

Normal stress is a type of stress that occurs in a member when a force is applied perpendicular to the member's cross-section. It is calculated using the formula: σ = F/A

Where,σ = normal stress, F = the applied force, and A = the cross-sectional area of the member.

Now, let us consider the cross-section of the beam in question:

The centroid of the cross-section is at point C. This means that the cross-section is symmetric with respect to the y-axis. When a pure bending moment is applied to the beam, it causes the top of the beam to compress and the bottom of the beam to stretch. This creates a normal stress that is maximum at the top and minimum at the bottom.

Since the cross-section is symmetric, this maximum normal stress will occur at a point equidistant from the top and bottom of the beam. This point is point C. Therefore, the point of the cross-section where the magnitude of normal stress is the greatest is Point C.

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There are many answers to this scenario. Please post yours and comment what you like about others and how you might improve them.

The Acme Company has two offices. They would like you to help them address their network. Like all companies, they want to account for growth, but want a simple, organized addressing scheme. They have been assigned the range of 201.11.10.224/29 for public access. Their VLAN needs are below for each site.

The 201.11.10.224/29 address has only 8 total addresses. That's not even going to cover the first subnet. This is a component of IPv4 and limited addresses. So, we can use Network Address Translation (NAT) on the router limiting the 201.11.10.0 addresses to the outside of network and use private addresses internally. What are the private address ranges? (Hint: They are in Module 11.3.1). Pick one and use that to address the scenario.

Document how you would address the network and communicate it to Acme leadership.

Walla Walla Office (HQ)

Management (10 devices)
Accounting (25 devices)
IT (30 devices)
Production (100 devices)
Seattle Office

Management (10 devices)
Accounting (25 devices)
IT (15 devices)
Production (50 devices)

Answers

Network address translation between Walla Walla and Seattle is the optimum network method for this.

What is Network Address Translation?

Network address translation is a technique for translating one IP address space to another by altering network address information in packet IP headers while they are in transit through a traffic routing device.

The NAT (network address translation) is originally established to limit the number of public IP addresses used by major corporate businesses or companies, hence preserving both IP address conservation and protection.

There are several devices within the community that need to be protected from the outside world, thus the NAT permits private IP addresses to connect to the outside world.

As an example, designating a public handle to a set of HOST/gadgets inside an inside community/corporation.

Remember that a host or device in an inner network with a private IP address, say (192.168.1.11), wishes to interact with an internet server on the internet ( outside world ). Now, NAT will convert this non-public IP address into a public IP address (for example, 1.12.1.1) that is known to everyone.

So, the web server recognizes this precise public IP and returns its outcome to this deal with (1.12.1.1), after which it routes to the vacation spot, where the NAT converts it once more to the private IP deal with and sends the outcomes to the desired device in the non-public network.  

As for a corporation's local network, there are numerous non-public IP with one public IP denoting all of them), so the result now, obtained via one of the devices in that network

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what is a computer device

Answers

electronic equipment

beams are designed on the basis of strength to resist internal shear and moment developed along their length. true false

Answers

True. Beams are indeed designed based on their strength to resist internal shear and moment forces that develop along their length.

These internal forces, known as shear and bending moments, are a result of external loads applied to the beam, such as the weight of the structure or additional live loads. The design process involves determining the maximum shear and bending moment that the beam will experience and selecting a beam size, material, and shape that can safely withstand these forces without failure. Engineers analyze the beam's cross-sectional properties, such as its moment of inertia and section modulus, to calculate the maximum stress and deflection under the applied loads. By designing beams to resist shear and moment forces, structural integrity and safety are ensured.

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What should you do before you start welding?

Answers

Explanation:

1. Weld only in authorized areas. Make sure the area is dry, chemical free, and well ventilated.

2. Inspect the equipment before starting to use it.

3. Keep other people away, unless they are authorized to be there and are wearing the appropriate personal protective equipment.

Assume that the electrons in a material follow the Fermi-Dirac distribution function and assume that EF​ is 0.3eV below EC​. Determine the temperature at which the probability of an electron occupying an energy state at E=(EC​+0.025)eV is 8×10−6.

Answers

Assuming that the electrons in a material follow the Fermi-Dirac distribution function and  EF​ is 0.3eV below EC​, the temperature at which the probability of an electron occupying an energy state at E=(EC​+0.025)eV is 8×\(10^{-6}\) is 271.74 K.

A mathematical depiction of the probability distribution of the energy of the quantum states that electrons can reside in at a specific temperature is the Fermi-Dirac probability function.

It explains what happens to the electrons within metal solids as their temperature rises. The Fermi Level Formula is - k=1.38×10-23 J/K=8.62×10-5 eV/K. The detailed solution is attached below.

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Assume that the electrons in a material follow the Fermi-Dirac distribution function and assume that
Assume that the electrons in a material follow the Fermi-Dirac distribution function and assume that

3. (a) Describe the procedure of measuring the depth of modulation of an amplitude modulated (AM) wave using an oscilloscope with the internal timebase switched off and sketch the displayed waveform. (6 marks)​

Answers

To measure the depth of modulation of an amplitude modulated (AM) wave using an oscilloscope with the internal timebase switched off, follow these steps:

1. Connect the output of the AM transmitter to the vertical input of the oscilloscope.
2. Connect a DC voltmeter across the output of the AM transmitter.
3. Set the oscilloscope to DC coupling and adjust the vertical sensitivity so that the AM waveform is clearly visible on the screen.
4. Adjust the horizontal position of the waveform so that the unmodulated carrier is centered on the screen.
5. Adjust the DC voltmeter to read the unmodulated carrier voltage.
6. Adjust the AM modulation depth so that the AM waveform just reaches the maximum and minimum levels of the carrier waveform.
7. Read the DC voltmeter again to determine the new carrier voltage.
8. Calculate the modulation depth using the formula:

Modulation Depth = (Vmax - Vmin) / (Vmax + Vmin)

Where Vmax is the carrier voltage with modulation and Vmin is the carrier voltage without modulation.

The displayed waveform will show the unmodulated carrier waveform centered on the screen, with the modulated waveform superimposed on it. The depth of modulation can be determined by measuring the maximum and minimum levels of the modulated waveform and calculating the modulation depth using the formula above.

describe how a feeler gauge can be used to assist in the adjustment of a spark plug electrode gap​

Answers

Answer:

Explanation:

Adjusting the distance between the two electrodes is called gapping your spark plugs. You need a feeler gauge to gap your spark plugs properly If you're re-gapping a used plug, make sure that it's clean (gently scrub it with a wire brush)

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What is the impact on fuel economy when using E85 instead of gasoline?

Answers

Answer:

energy security ethanol

The cost to rent a scooter is $15.50 per hour and the cost to rent a watercraft is $22.80 per hour use the expression 15.5 S +22.8 W you The cost to rent a scooter is $15.50 per hour and the cost to rent a water craft is $22.80 per hour use the expression 15.5 S +22.8 W you you

Answers

Complete Question:

The cost to rent a scooter is $15.50 per hour and the cost to rent a watercraft

is $22.80 per hour. Use the expression 15.5s + 22.8w to determine how much it would cost to rent a scooter for 3 hours and a watercraft for 1 hours.

Answer:

$69.39

Explanation:

Given

15.5s + 22.8w

Required

Evaluate, when w = 1 and s = 3

To do this, we simply substitute 3 for a and 1 for w in the given expression.

15.5s + 22.8w becomes..

15.5 * 3 + 22.8 * 1

46.5 + 22.8

69.3

Hence, the cost is $69.30

A 2400-lb rear-wheel drive tractor carrying 900 lb of gravel starts from rest and accelerates forward at 3ft/s2. Determine the reaction at each of the two (a) rear wheels A, (b) front wheels B.

Answers

Answer:

Explanation:

The missing diagram attached to the question is shown in the attached file below:

The very first thing we need to do in other to solve this question is to determine the mass of both the tractor and the mass of the gravel

For tractor, the mass is:

\(m_1 = \dfrac{2400 \ lb }{32.2 \ ft/s^2}\)

\(m_1 = 74.53 \ lb.s^2/ft\)

For gravel, the mass is:

\(m_2 = \dfrac{900 \ lb}{32.2 \ft/s^2}\)

\(m_2 = 27.95 \ lb.s^2/ft\)

From the diagram, let's consider the force along the horizontal components and vertical components;

So,

\(\sum F_x = ma_x \\ \\ 2F = (m_1+m_2) a \\ \\ F = \dfrac{1}{2}(74.53 4 + 27.950)lb.s^2/ft(2 \ ft/s^2) \\ \\ F = 102.484 \ lb\)

\(\sum F_y = 0 \\ \\ 2N_A+2N_B - 2400 -900 = 0 \\ \\ N_A +N_B = 1650 \ lb\)

Consider the algebraic sum of moments in the plane of A, with counter-clockwise moments being positive.

\(\sum M_A = I_o \alpha + \sum ma (d) \\ \\ = -2400 (20) + 2N_B (60) -900(110) = 0 - (74.534)(2)(20) - (27.950)(2)(40)\)

\(=-48000 + 2N_B (60) -99000 = -2981.36-2236 \\ \\ = + 2N_B (60) = -2981.36-2236+48000+99000 \\ \\ = + 2N_B (60) = 141782.64 \\ \\ N_B = \dfrac{141782.64}{120} \\ \\ N_B = 1181.522 \ lb\)

Replacing the value of 1181.522 lb for \(N_B\) in equation (1)

\(N_A\) + 1181.522 lb = 1650 lb

\(N_A\) = (1650 - 1181.522)lb

\(N_A\) = 468.478 lb

The net reaction on each of the rear wheels now is:)

\(F_R = \sqrt{N_A^2 +F^2}\)

\(F_R = \sqrt{(468.478)^2 + (102.484)^2}\)

\(\mathbf{F_R =479.6 \ lb}\)

Now, we can determine the angle at the end of the rear wheels at which the resultant reaction force is being made in line with the horizontal

\(\theta = tan ^{-1}( \dfrac{468.478 }{102.484})\)

\(\theta = 77.7^0\)

Finally, the net reaction on each of the front wheels is:

\(F_B = N_B\)

\(F_B =\) 1182 lb  

A 2400-lb rear-wheel drive tractor carrying 900 lb of gravel starts from rest and accelerates forward

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

Answers

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

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

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

A company makes parts for satellites by the thousands and an engineer oversees quality control. they pick 20 parts at random as sample 1 and calculate the mean. then, they pick 20 other parts as sample 2 and calculate the mean. they continue to do this through sample 20. the average of all the means is 10.12 cm. the sample standard deviation of the sample means is 0.421 mm.
(a) Calculate the population mean.
(b) Estimate the overall population standard deviation. Give your answer in mm to three significant digits.

Answers

To calculate the population mean, we can use the formula:Population Mean = Average of all sample means the estimated overall population standard deviation is 0.094 mm.

Population Mean = 10.12 cmTherefore, the population mean is 10.12 cm.(b) To estimate the overall population standard deviation, we can use the formula:Population Standard Deviation = Sample Standard Deviation / sqrt(n)where n is the sample size.Here, n = 20 (since each sample has 20 parts).Population Standard Deviation = 0.421 mm / sqrt(20)Population Standard Deviation ≈ 0.094 mm (rounded to three significant digits)Therefore, the estimated overall population standard deviation is 0.094 mm.

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what's the best way to plan an organized​

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Answer:

Get ready and comfortable.

List all of the tasks you need to accomplish over the next week. .

Next schedule everything.

Get a planner/calender.

Cut those tasks that do not fit into your

using the what-if function in excel to make a decision is considered a type of __________.

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Using the 'what-if' function in MS Excel to make a decision is said to be a type of forecast and scenario model.

In MS Excel, the 'what-if' function allows altering the values in cells to check how those changes affect the results. When in Excel the 'what-if' function is used to check to see different results of decisions based on various values of the input, it is considered to be a type of forecast and scenario model.  

The forecast and scenario model represents a strategic process for businesses used to plan several potential decision results. These scenarios are forecasted on the basis of visible risks and supposed uncertainties existing in a set of plausible situations. In simple terms, it can be stated that the forecast and scenario model assists to model multiple 'what-if' circumstances to be prepared for the future.

You can learn more about MS Excel at

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