Consider a falling mass(m) under gravity(9.8m/s). Initial velocity of the mass is 5 m/s upwards. Derive expressions for the velocity and the position of the mass(m) in terms of time and initial velocity/position of the mass. a) -How long will the mass take to reach the maximum height position? b)- What would be the maximum height the mass reach relative to its initial position?

Answers

Answer 1

Answer:

a) 0.51 s

b) 1.275m

Explanation:

using equation of linear motion

v=u+gt...........................(1)

[tex]v^{2} -u^{2}=2gh[/tex]...........(2)

[tex]s=ut+\frac{1}{2} gt^2[/tex].......(3)

a) as the ball is thrown upward -ve 'g' will be acting on the body

as the body reaches to the maximum height the final velocity(v) becomes

zero so from equation (1)

0=5-9.8t

[tex]t=\frac{5}{9.8}[/tex]

t=0.51s

b) Now for maximum height calculation using equation (2)

[tex]v^{2} -u^{2}=2gh[/tex]

v=0

[tex]h=\frac{-u^2}{2g}[/tex]

[tex]h=\frac{-5^2}{2\times-9.8}[/tex]

h=1.275m


Related Questions

When designing solid rockets, thrust and mass flow must be considered time dependent. a) True b) False

Answers

Answer:

the answer is true when designing sold rockets thrust and mass flow

A flywheel accelerates for 5 seconds at 2 rad/s2 from a speed of 20 rpm. Determine the total number of revolutions of the flywheel during the period of its acceleration. a.5.65 b.8.43 c. 723 d.6.86

Answers

Answer:

option (a)

Explanation:

t = 5 sec, α = 2 rad/s^2, f0 = 20 rpm = 20 / 60 rps

Use second equation of motion for rotational motion

θ = ω0 x t + 1/2 α t^2

θ = 2 x 3.14 x 5 x 20 / 60 + 0.5 x 2 x 5 x 5

θ = 10.47 + 25 = 35.47 rad

Number of revolution = 35.47 / (2 x 3.14) = 5.65

A direct contact heat exchanger (where the fluid mixes completely) has three inlets and one outlet. The mass flow rates of the inlets are 1kg/s, 1.5kg/s and 2 kg/s. The enthalpy of those inlets are the 100kJ/kg, 120kJ/kg, and 500kJ/kg, respectively. What is the enthalpy at the outlet?

Answers

Answer:

Enthalpy at outlet=284.44 KJ

Explanation:

[tex]m_1=1 Kg/s,m_2=1.5 Kg/s,m_3=22 Kg/s[/tex]

[tex]h_1=100 KJ/Kg,h_2=120 KJ/Kg,h_3=500 KJ/Kg[/tex]

We need to Find enthalpy of outlet.

Lets take the outlet mass m and outlet enthalpy h.

So from mass conservation

[tex]m_1+m_2+m_3=m[/tex]

   m=1+1.5+2 Kg/s

  m=4.5 Kg/s

Now from energy conservation

[tex]m_1h_1+m_2h_2+m_3h_3=mh[/tex]

By putting the values

[tex]1\times 100+1.5\times 120+2\times 500=4.5\times h[/tex]

So h=284.44 KJ

Define the Static Balancing.

Answers

Answer: Static Balancing is when a stationary object has the the ability to balance because its core centre of gravity is on the axis of rotation.

A smooth sphere with a diameter of 6 inches and a density of 493 lbm/ft^3 falls at terminal speed through sea water (S.G.=1.0027). Determine the terminal speed.

Answers

Given:

diameter of sphere, d = 6 inches

radius of sphere, r = [tex]\frac{d}{2}[/tex] = 3 inches

density,  [tex]\rho}[/tex] = 493 lbm/ [tex]ft^{3}[/tex]

S.G = 1.0027

g = 9.8 m/ [tex]m^{2}[/tex] = 386.22 inch/ [tex]s^{2}[/tex]

Solution:

Using the formula for terminal velocity,

[tex]v_{T}[/tex] = [tex]\sqrt{\frac{2V\rho  g}{A \rho C_{d}}}[/tex]              (1)

[tex](Since, m = V\times \rho)[/tex]

where,

V = volume of sphere

[tex]C_{d}[/tex] = drag coefficient

Now,

Surface area of sphere, A = [tex]4\pi r^{2}[/tex]

Volume of sphere, V = [tex]\frac{4}{3} \pi r^{3}[/tex]

Using the above formulae in eqn (1):

[tex]v_{T}[/tex] = [tex]\sqrt{\frac{2\times \frac{4}{3} \pir^{3}\rho  g}{4\pi r^{2} \rho C_{d}}}[/tex]

[tex]v_{T}[/tex] = [tex]\sqrt{\frac{2gr}{3C_{d}}}[/tex]  

[tex]v_{T}[/tex] = [tex]\sqrt{\frac{2\times 386.22\times 3}{3C_{d}}}[/tex]

Therefore, terminal velcity is given by:

[tex]v_{T}[/tex] = [tex]\frac{27.79}{\sqrt{C_d}}[/tex] inch/sec

A container filled with a sample of an ideal gas at the pressure of 150 Kpa. The gas is compressed isothermally to one-third of its original volume. What is the new pressure of the gas a)-900 kpa b)- 300 kpa c)- 450 kpa d)- 600 kpa

Answers

Answer: c) 450 kPa

Explanation:

Boyle's Law: This law states that pressure is inversely proportional to the volume of the gas at constant temperature and number of moles.

[tex]P\propto \frac{1}{V}[/tex]     (At constant temperature and number of moles)

[tex]P_1V_1=P_2V_2[/tex]  

where,

[tex]P_1[/tex] = initial pressure of gas  = 150 kPa

[tex]P_2[/tex] = final pressure of gas  = ?

[tex]V_1[/tex] = initial volume of gas   = v L

[tex]V_2[/tex] = final volume of gas  = [tex]\frac{v}{3}L[/tex]

[tex]150\times v=P_2\times \frac{v}{3}[/tex]  

[tex]P_2=450kPa[/tex]

Therefore, the new pressure of the gas will be 450 kPa.

In thermodynamicsedependent properties means?

Answers

Answer:

Explanation:

Thermodynamics properties are the properties which defined the state of any system.

some of the thermodynamics properties are pressure, temperature etc

thermodynamics are broadly divided into two type

1)intensive and

2)extensive properties

Dependent properties are the properties that are dependent on other properties. Extensive property are those which are dependent on the extent of system. Example volume. if size of the system increase or decrease then volume also have same effect according to the changes

Just-in-time delivery is not an important component of Lean manufacturing. a)- True b)- False

Answers

Answer:

False

Explanation:

Just-in-time manufacturing means that production is done when there is demand. It is a pull system which means that demand dictates production. Lean manufacturing is method of production which aims to reduce the seven types of waste which are

Logistics

Inventory

Motion of objects during manufacturing

Unnecessary delay

Producing more than demand

Over Processing of goods

Malfunctioning items.

Here it can be seen that Producing more than demand is a waste. This can be reduced by Just in Time manufacturing.

The melting point of W (tungsten) is 3380°C, is the processing at 1100 C hot working or cold working?

Answers

Answer:

cold working

Explanation:

Given data in question

melting point tungsten (W) = 3380°C = 3653 K

processing temperature = 1100°C = 1373 K

To find out

process is hot or cold working

solution

we know hot working and cold working process is depend upon the Recrystallization and Recrystallization is a process in which deformed grains of crystal structures are replace with stress-free grains that nucleate and grow till actual grains have been consumed fully

and we know that ratio of processing temperature and melting point tungsten is greater than 60% than the process is start of Recrystallization so we check ratio

ratio =  processing temperature / melting point tungsten

ratio =  1373 / 3653

ratio = 0.3758 = 37.58 %

we can see this is less than 60 % so our process is cold working

With increases in magnification, which of the following occur? a. The field of view decreases. b. The ambient illumination decreases. c. The larger parts can be measured. d. The eyepiece must be raised.

Answers

By increasing magnification you decrease the field of view.

The answer is A.

Hope this helps.

r3t40

The purifier is a device in a)- The air separation plant b)- steam power plant c)-- fuel cell d)- refrigerator

Answers

Answer:

a). Air separation plant

Explanation:

The purifier is a device that removes the pollutants or air contaminants from air to improve the air quality in a given space.

          There are basically two techniques or ways by which the air purifier makes the air contaminants free. This two techniques are active and passive.

Active air purifiers : negatively charged ions are released to the atmosphere which sticks the pollutants to the surface.

Passive air purifiers : They use air filters to eliminate pollutants and are more efficient than an active air purifiers.

Answer:

(A) Air separation plant

Explanation:

Purifier is used in air separation plant to purify the air main work of purifier is to remove the pollutants particles from the air and make the air fresh.

On the other hand it has no use team power pant because in steam power plant we don't need to purify the steam and also not used in fuel cell and refrigerator

So purifiers are used in the air separation plant.

A piston-cylinder device contains 1.329 kg of nitrogen gas at 120 kPa and 27 degree C. The gas is now compressed slowly in a polytropic process during which PV^1.49 = constant. The process ends when the volume is reduced by one-half. Determine the entropy change of nitrogen during this process.

Answers

Answer:-0.4199 J/k

Explanation:

Given data

mass of nitrogen(m)=1.329 Kg

Initial pressure[tex]\left ( P_1\right )[/tex]=120KPa

Initial temperature[tex]\left ( T_1\right )=27\degree \approx[/tex] 300k

Final volume is half of initial

R=particular gas constant

Therefore initial volume of gas is given by

PV=mRT

V=0.986\times 10^{-3}

Using [tex]PV^{1.49}[/tex]=constant

[tex]P_{1}V^{1.49}[/tex]=[tex]P_2\left (\frac{V}{2}\right )[/tex]

[tex]P_2[/tex]=337.066KPa

[tex]V_2[/tex]=[tex]0.493\times 10^{-3} m^{3}[/tex]

and entropy is given by

[tex]\Delta s[/tex]=[tex]C_v \ln \left (\frac{P_2}{P_1}\right )[/tex]+[tex]C_p \ln \left (\frac{V_2}{V_1}\right )[/tex]

Where, [tex]C_v[/tex]=[tex]\frac{R}{\gamma-1}[/tex]=0.6059

[tex]C_p[/tex]=[tex]\frac{\gamma R}{\gamma -1}[/tex]=0.9027

Substituting values we get

[tex]\Delta s[/tex]=[tex]0.6059\times\ln \left (\frac{337.066}{120}\right )[/tex]+[tex]0.9027 \ln \left (\frac{1}{2}\right )[/tex]

[tex]\Delta s[/tex]=-0.4199 J/k

The thermal efficiency of two reversible power cycles operating between the same thermal reservoirs will a)- depend on the mechanisms being used b)- be equal regardless of the mechanisms being used c)- be less than the efficiency of an irreversible power cycle

Answers

c ,, i’m pretty sure .

_____What is matrix in tungsten carbide cutting tool? a)- Chromium b)- Manganese c)- Cobalt d)- Aluminum

Answers

Answer:

The correct option is C) Cobalt

Explanation:

The cemented carbides are hard substances which are extensively used as cutting tools materials. In the cemented carbides, substances like tungsten-carbide are used as aggregates.

A tungsten carbide- cobalt cutting tool is a metal matrix composite, in which the tungsten carbide is the aggregate and the cobalt is the matrix.

Therefore, in the tungsten carbide cutting tool, cobalt is used as the matrix.

A dielectric is an insulating material or a very poor conductor of electric current. (True , False )

Answers

True.

Dielectric is a material with a low electrical conductivity (σ << 1); that is, an insulator, which has the property of forming electric dipoles inside it under the action of an electric field. Thus, all dielectric materials are insulators but not all insulating materials are dielectric.

Some examples of this type of materials are glass, ceramics, rubber, mica, wax, paper, dry wood, porcelain, some fats for industrial and electronic use and bakelite. As for the gases, the air, nitrogen and sulfur hexafluoride are used as dielectrics.

Oil with a density of 800 kg/m3 is pumped from a pressure of 0.6 bar to a pressure of 1.4 bar, and the outlet is 3 m above the inlet. The volumetric flow rate is 0.2 m3/s, and the inlet and exit areas are 0.06 m2 and 0.03 m3, respectively. (a) Assuming the temperature to remain constant and neglecting any heat transfer, determine the power input to the pump in kW. (b) What-if Scenario: What would the necessary power input be if the change in KE were neglected in the analysis??

Answers

Answer:

23.3808 kW

20.7088 kW

Explanation:

ρ = Density of oil = 800 kg/m³

P₁ = Initial Pressure = 0.6 bar

P₂ = Final Pressure = 1.4 bar

Q = Volumetric flow rate = 0.2 m³/s

A₁ = Area of inlet = 0.06 m²

A₂ = Area of outlet = 0.03 m²

Velocity through inlet = V₁ = Q/A₁ = 0.2/0.06 = 3.33 m/s

Velocity through outlet = V₂ = Q/A₂ = 0.2/0.03 = 6.67 m/s

Height between inlet and outlet = z₂ - z₁ = 3m

Temperature to remains constant and neglecting any heat transfer we use Bernoulli's equation

[tex]\frac {P_1}{\rho g}+\frac{V_1^2}{2g}+z_1+h=\frac {P_2}{\rho g}+\frac{V_2^2}{2g}+z_2\\\Rightarrow h=\frac{P_2-P_1}{\rho g}+\frac{V_2^2-V_1^2}{2g}+z_2-z_1\\\Rightarrow h=\frac{(1.4-0.6)\times 10^5}{800\times 9.81}+\frac{6.67_2^2-3.33^2}{2\times 9.81}+3\\\Rightarrow h=14.896\ m[/tex]

Work done by pump

[tex]W_{p}=\rho gQh\\\Rightarrow W_{p}=800\times 9.81\times 0.2\times 14.896\\\Rightarrow W_{p}=23380.8\ W[/tex]

∴ Power input to the pump 23.3808 kW

Now neglecting kinetic energy

[tex]h=\frac{P_2-P_1}{\rho g}+z_2-z_1\\\Righarrow h=\frac{(1.4-0.6)\times 10^5}{800\times 9.81}+3\\\Righarrow h=13.19\ m\\[/tex]

Work done by pump

[tex]W_{p}=\rho gQh\\\Rightarrow W_{p}=800\times 9.81\times 0.2\times 13.193\\\Rightarrow W_{p}=20708.8\ W[/tex]

∴ Power input to the pump 20.7088 kW

-Pure substance at sublimation line exist as a mixture of liquid and solid(____)

Answers

Answer:

False

Explanation:

A graphical representation of transition of substance's physical state under various temperature and pressure conditions is known as phase diagram.

A typical phase diagram usually consists of:

(A) Fusion curve - The curve that represents that the solid and the liquid state exists in the equilibrium with each other is called fusion curve.

(B) Vaporization curve - The curve that represents that the liquid and the gaseous state exists in the equilibrium with each other is called fusion curve.

(C) Sublimation curve - The curve that represents that the solid and the gaseous state exists in the equilibrium with each other is called fusion curve.

(D) Triple point - This is a point in the phase diagram in which all the three state exists in equilibrium.

Thus, for a pure substance, sublimation line exist as a mixture of solid and gas. The statement is false.

What is the typical bonding in a conductor and a semiconductor??

Answers

Answer:

The typical bonding in conductors is defined as which contain free valence electrons and free ions as, it is typically known as metallic bonding. In a group of free electrons metallic ions are made up from lattice and to conduct the electricity the free electron are the main reason for ability of the metals.

On the other hand, semiconductors can be arranged as structure of lattice and also there is a covalent bonds are present.

A 9-cm diameter, 11-cm high hollow metal can floats in water vertically with 8 cm of its height under water. What is the weight of the can?

Answers

Answer:

Weight of the can is 5 N

Explanation:

The weight of the can is a downward force. When an object floats in a fluid, it is acted upon by an upward force which balances the weight of the body that acts downwards. This upward force is know as Buoyant force. This buoyant force is also the weight of the fluid displaced by the object.

          Therefore, we know that

Total buoyant force = total weight of the body  

And total weight of the body is nothing but the weight of the fluid displaced by the body.

So, weight of the body = weight of the fluid displaced by the body.

                                      = [tex]\rho g\times[/tex]volume of water displaced by the body.

                                     = [tex]\rho g\times[/tex]volume of the body submerged in the water

Now we know that,

density of water, [tex]\rho[/tex] = 1000 kg/[tex]m^{3}[/tex]

acceleration due to gravity, g = 9.81 m/[tex]s^{2}[/tex]

Volume of the body submerged in water, V = [tex]\frac{\prod }{4}\times d^{2}\times h[/tex]

       = [tex]\frac{\prod }{4}\times 0.09^{2}\times 0.08[/tex]

       = 5.05[tex]\times 10^{-4}[/tex] [tex]m^{3}[/tex]

Therefore, weight of can = [tex]\rho g\times[/tex]volume of the body submerged in the water

                                        = 1000[tex]\times 9.81\times 5.05\times 10^{-4}[/tex]

                                        = 4.95 N

                                        [tex]\simeq[/tex] 5 N

Therefore the weight of the can is 5 N.

A closed-loop system has a forward path having two series elements with transfer functions 5 and 1/(s + 1). If the feedback path has a transfer function 2/s, what is the overall transfer function of the system?

Answers

Answer:

Transfer function for feedback path is given by:

[tex]\frac{C(s)}{R(s)}[/tex]=[tex]\frac{G(s)}{1+G(s)H(s)}[/tex]       (1)

Explanation:

with reference to fig1:

two blocks in series are multiplied:

[tex]\frac{5}{s(s+1)}[/tex]

for feedback function:

1+G(s)H(s)=[tex]1+\frac{5}{s+1}.\frac{2}{s}[/tex]

Now from eqn (1):

[tex]\frac{C(s)}{R(s)} = \frac{5}{s(s+1)+10}[/tex]

What is the temperature dependency of the electrical conductivity for metals and semiconductors??

Answers

Answer and Explanation:

TEMPERATURE DEPENDENCY ON ELECTRICAL CONDUCTIVITY OF METALS : Metals are good conductors of electricity but when we increase the temperature the free electrons of metals collide with each other due to heat.There collision become very fast and so the resistance increases and so the electrical conductivity of metals decreases on increasing temperature.    

TEMPERATURE DEPENDENCY ON ELECTRICAL CONDUCTIVITY OF SEMICONDUCTOR : The electrical conductivity of semiconductor is mainly sue to presence of impurities and defects as the temperature increases the impurities and defects also increases so the electrical conductivity of semiconductor increases on increasing temperature.

Heat in the amount of 100 kJ is transferred directly from a hot reservoir at 1200 K to a cold reservoir at 600 K. Calculate the entropy change of the two reservoirs and determine if the increase of entropy principle is satisfied.

Answers

Solution:

Given:

[tex]T_{H}[/tex] = 1200 K

[tex]T_{L}[/tex] = 600 K

Q = 100 kJ

The Entropy change of the two reservoirs is given by the sum of entropy change of each reservoir system and is given by the formula:

[tex]\Delta s = \frac{-Q}{T_{H}}+\frac{Q}{T_{L}}[/tex]

[tex]\Delta s = \frac{Q(T_{L}-T_{_{H}})}{T_{H}T_{L}}[/tex]

[tex]\Delta s = \frac{-100(600-1200)}{1200\times 600}[/tex]

[tex]\Delta s = 0.0833kJ/K

Since, the change in entropy is positive and according to the Increase in entropy principle, for any process the total change in entropy of a system is always greater than or equal to zero (with its enclosing adiabatic surrounding).

Therefore, the entropy principle is satisfied.

Proper grain stress/strain analysis is required in solid motor design: A. To ensure good motor structure B. To avoid surface cracks C. To avoid bond separation D. All of the above

Answers

Answer:

The correct answer to the given statement is

option D. All of the above

Explanation:

Analysis of proper grain stress/strain is important as it ensures good mechanical motor structure.

With the help of analysis surface cracks can be checked and proper maintenance can be provided. It further helps in keeping check in order to avoid separation of bonds.

Therefore, qualitative analysis and in depth analysis can reduce errors and helps to maintain the qualitative parameters.

What is flow energy? Do fluids at rest possess any flow energy?

Answers

Final answer:

Flow energy is the energy possessed by a fluid due to its motion, which is quantified by kinetic energy density. Based on Bernoulli's equation, fluids at rest do not have flow energy but can have potential energy. The total mechanical energy of a fluid includes potential and kinetic energy components.

Explanation:

Flow energy refers to the energy that fluid possesses due to its motion. This form of energy can be described by kinetic energy density, which is part of the total mechanical energy in a flowing fluid. According to Bernoulli's equation, the total mechanical energy of a fluid is composed of potential energy and kinetic energy. The kinetic energy of the fluid relates to its velocity and is expressed as (1/2)ρV^2, where ρ is the density of the fluid and V is the fluid velocity. On the other hand, fluids at rest do not possess flow energy or kinetic energy related to movement, but they can still have potential energy due to their position.

According to conservation of energy principles, the work done by the fluid's pressure changes the fluid's kinetic and potential energies, per unit volume. No additional flow energy is present in a fluid at rest; however, it may still exert pressure at the bottom of a container or well due to its potential energy.

A rigid, sealed tank initially contains 2000 kg of water at 30 °C and atmospheric pressure. Determine: a) the volume of the tank (m3 ). Later, a pump is used to extract 100 kg of water from the tank. The water remaining in the tank eventually reaches thermal equilibrium with the surroundings at 30 °C). Determine: b) the final pressure (kPa).

Answers

Given:

mass of water, m = 2000 kg

temperature, T = [tex]30^{\circ}C[/tex] = 303 K

extacted mass of water = 100 kg

Atmospheric pressure, P = 101.325 kPa

Solution:

a) Using Ideal gas equation:

PV = m[tex]\bar{R}[/tex]T                                        (1)

where,

V = volume

m = mass of water

P = atmospheric pressure

[tex]\bar{R} = \frac{R}{M} [/tex]

R= Rydberg's constant = 8.314 KJ/K

M = molar mass of water = 18 g/ mol

Now, using eqn (1):

[tex]V = \frac{m\bar{R}T}{P}[/tex]

[tex]V = \frac{2000\times \frac{8.314}{18}\times 303}{101.325}[/tex]

[tex]V = 2762.44 m^{3}[/tex]

Therefore, the volume of the tank is [tex]V = 2762.44 m^{3}[/tex]

b) After extracting 100 kg of water, amount of water left, m' = m - 100

m' = 2000 - 100 = 1900 kg

The remaining water reaches thermal equilibrium with surrounding temperature at T' = [tex]30^{\circ}C[/tex] = 303 K

At equilibrium, volume remain same

So,

P'V = m'[tex]\bar{R}[/tex]T'

[tex]P' = \frac{1900\times \frac{8.314}{18}\times 303}{2762.44}[/tex]      

Therefore, the final pressure is P' = 96.258 kPa

Consider three identical items in parallel. What is the system reliability if each item has a reliability of 98%?

Answers

Answer:

Reliability of system = 99.9992%

Explanation:

Given Reliability of item = 98%

therefore probability of failure = 100%-98% =2%

For system in parallel the probability of failure is product of individual probabilities of items

thus

[tex]Probabilityfail_{system}=p_{1}\times p_{2}\times p_{3}\\\\Probabilityfail_{system}=0.02^{3}=0.000008\\\\Realibility_{system}=100- Probabilityfail_{system}\\\\Realibility_{system}=99.9992%[/tex]

It is true about Metals and alloys: a)-They are good electrical and thermal conductors b)-They can be used as semi-conductors c)-They present high modulus of elasticity d)-a and c are correct

Answers

Answer:

(d) a and c are correct

Explanation:

METALS : Metal are those materials which has very high ductility, high modulus of elasticity, good thermal and electrical conductivity

for example : iron, gold ,silver, copper

ALLOYS: Alloys are those materials which are made up of combining of two or more than two metals these also have good thermal and electrical conductivity and me liable property

for example ; bronze and brass

so from above discussion it is clear that option (d) will be the correct option

Answer:

d)-a and c are correct

Explanation:

Hello,

As long as metals have specific molecular arrangements (closely assembled molecules) they have a high capacity to transfer both electrical and thermal energy. On the other hand, the modulus of stability is considered as a measure of material's stiffness or resistance to elastic deformation, thus, due to the very same aforesaid molecular arrangement of metals, they are hard to deform so that modulus is considered as high.

Best regards.

Define the various properties and constraints that ensure weldability/joinability.

Answers

Answer:

Listed Below

Explanation:

Weldability which is also known as joinability is defined as the ease with which  a material can be welded without producing any other effect .

Some factors which affect weldability are

1.Melting point of metal

Higher the melting point lower will be the weldability.

2.Thermal conductivity

Materials with higher thermal conductivity are difficult to join.

3.Reactivity

If the material reacts with surroundings like water or air, it is difficult to weld.

4.Coefficient of thermal expansion(α)

Higher the thermal expansion lower will be the weldability.

5.Surface condition

The material with dirty surface is difficult to weld for example if a surface has oxide layer on it it become difficult to weld it.

The two windings of transformer is: a)- Conductively linked. b)- Not linked at all. c)- Inductively linked d)- Electrically linked.

Answers

The two windings of transformer is c)- Inductively linked

Hope this helped!

Answer:

The two windings of transformer is Inductively linked -c)

A motor is rated to deliver (output) 2.5 hp at 120 VDC. If the motor runs on 120 V and is 75% efficient, how many watts does it draw from the power line (input)? ( input power is always greater than output power, and remember to use a horse power conversion: 1hp =746 (watts) (a) 3.33 W (b) 1399 W (c) 1679 w (d) 2072 W (e) 2487 W

Answers

Answer:

(e) 2487 W

Explanation:

Given data

voltage = 120 V

power = 2.5 hp

efficiency = 75%

To find out

watts draw from the power line

solution

we calculate efficiency by given formula

efficiency = ( output / input ) × 100     ............1

we know our output is 2.5 hp = 2.5 ×  746 = 1865 W

and efficiency is 75% = 0.75

put these value in equation 1 and find out input power

power = ( 1865 / 0.75 )

power =  2486.66 W

so our answer is (e) 2487 W

Other Questions
Use the work energy theorem to solve each of these problems and neglect air resistance in all cases. a) A branch falls from the top of a 98.0 m tall redwood tree, starting from rest. How fast is it moving when it reaches the ground? b) A volcano ejects a boulder directly upward 545 m into the air. How fast was the boulder moving just as it left the volcano? Hector was employed by a machine shop. One day he made a delivery for his employer and proceeded back to the shop. When he was four miles from the shop and on the road where it was located, he turned left onto another road to visit a friend. The friend lived five miles off the turnoff. On the way to the friends house, Hector caused an accident. The injured person sued Hectors employer. Is the employer liable? Discuss. What do you write for Introduction in a biology lab report? Which of the following sentences is a compound sentence? A. The line was significantly shorter than usual which was a relief. B. The coffee shop was usually full, but today there were many open tables. C. Although I was in a hurry, I still wanted to get a hot latte to go. D. Both the barista and the cashier gave me a huge, welcoming smile Given that the area of a triangle is given by the formula A = 12bh, what is the value of A if b = 4 cm and h = 6 cm? What are the zeros of f(x) = x2 - x - 30? What is the best way to increase the juiciness of meat and improve its flavor, texture, and aroma?A. Rub it with a dry marinade before cooking.B. Soak it in high-acid marinade before cooking.c. let it rest after it has cooked, but before it's sliced.D. Use an egg wash and seasoned breading before cooking. The students were writing a play According to the following balanced reaction, how many moles of NO are formed from 12.66 moles of NO2 if there is plenty of water present? 3 NO2(g) + H2O(l) 2 HNO3(aq) + NO(g 4. A study of 30 fathers was completed in which the fathers were asked the highest level of education they had completed. 10 completed only elementary school, 10 completed elementary school and high school; 7 completed elementary school, high school and college; 3 completed elementary school, high school, college and graduate school. What was the cumulative percentage of fathers who completed only elementary school? Sarah had been working with a personal trainer as she got started on a new fitness program. The first time Sarah went to the gym alone to work out she tried to remember all the safety tips her trainer gave her. Right away she started with the bench press exercise. She chose light weights and breathed in and out throughout the exercise. As Sarah finished her third set of bench presses, she realized she'd remembered everything right except to ________. Hormone secretion is often regulated through a negative feedback mechanism, which means that once a hormone is secreted it will cause the hypothalamus and pituitary to shut down the production of signals necessary to secrete the hormone in the first place. Most oral contraceptives are made of small doses of estrogen and/or progesterone. Why would this be an effective means of contraception? solve the equation -12=q-17 Conjugate the word in parentheses All differences between super-variable costing and absorption costing are explained by: A. the accounting for direct materials and manufacturing overhead costs. B. the accounting for direct labor and direct materials. C. the accounting for direct labor and manufacturing overhead costs. D. the accounting for manufacturing overhead costs. Before contact with Europeans, a tiny, isolated group of South Pacific islands had a population of about 50,000 people. Because of poor management of their own resources, the population fell to around 5000 by about the year 1750. When Europeans finally arrived, they brought smallpox, and after the ensuing epidemic, only about 800 islanders were left alive. The unusual genetic makeup of the native population is due to what phenomenon? You have the templates of 2 classes, Person and Program. The Person class has 4 attributes, name, age, major and gpa. There is a constructor for the class that is used to make Person objects. There are setter/mutator methods and getter/accessor methods for those attributes. There is also a printInfo() method that prints out information about the person. The Program class has a main method that has 5 Person objects person1 to person5 declared and initialized. The main method within the class also has a Scanner object that is used to take input for a person number and a newGPA. Your task is as follows:a. Based on the input of personSelect select the appropriate person and change their GPA to the newGPA input and then print out their information. For instance if the user types in 1 then select person 1 and print out their information using the printInfo method. Do it for all possible inputs from 1 to 5.b. If however the input is not 1 to 5 then inform the user they have to have to type in an appropriate person numberPerson.javapublic class Person {String name;int age;double gpa;String major;public Person(String aName, int aAge, String aMajor, double aGpa){ name = aName; age = aAge; gpa = aGpa; major = aMajor;}/*** @return the name*/public String getName() { return name;}/*** @param name the name to set*/public void setName(String pname) { name = pname;}/*** @return the age*/public int getAge() { return age;}/*** @param age the age to set*/public void setAge(int page) { age = page;}/*** @return the gpa*/public double getGpa() { return gpa;}/*** @param gpa the gpa to set*/public void setGpa(double pgpa) { gpa = pgpa;}/*** @return the major*/public String getMajor() { return major;}/*** @param major the major to set*/public void setMajor(String pmajor) { major = pmajor;}public void printInfo(){ System.out.println("#########################"); System.out.println("Business College "); System.out.println("Name: " + name); System.out.println("Major: " + major); System.out.println("GPA: " + gpa); System.out.println("#########################");}}Program.java--------------------------------------------------------------------------------import java.util.Scanner;public class Program {public static void main(String[] args) {//Declare person objects here Person person1 = new Person("Dewars",40 , "MIS", 3.9); Person person2 = new Person("Budweiser",23 , "MIS", 3.2); Person person3 = new Person("Appletons",25 , "MIS", 3.0); Person person4 = new Person("Beam",20 , "Finance", 3.7); Person person5 = new Person("Daniels",19 , "Accounting", 2.9); Scanner scan = new Scanner(System.in); System.out.println("Type in a person number whose gpa you would like to change > "); int personSelect = scan.nextInt(); System.out.println("Type in the gpa you would like the person's to be > "); double newGPA = scan.nextDouble();/* * CODE HERE */}} why is it important for you to understand and describe the internal and external components of a computer in the workplace How to make s the subject in T=2(S+P)Z What is an atom? a. it is a property of material b. it is specification of any material c. it the part of a substance d. it is a grain boundary