A student librarian lifts a 2.2 kg book from the floor to a height of 1.25 m. He carries the book 8.0 m to the stacks and places the book on a shelf that is.35 m above the floor. How much work does he do on the book?
I understand most of it, but I am unsure of what distance to use. Please help? ...?

Answers

Answer 1

Answer:

[tex]W_{tot}=W_{1}+W_{2}=mgh_{2}=7.55[J][/tex]

Explanation:

The work done on an object is the scalar product between force and displacement. So we can write the work:

[tex]W=F\cdot d=Fd[/tex]

In our case F and d are parallels then we have a common product of their magnitudes.

Now, the total work will be the sum these two works:

Work done when the student librarian lifts a 2.2 kg book from the floor to a height of h₁=1.25 m.Work done when he places the book on a shelf that is h₂=0.35 m above the floor.

Let's recall that the force in this problem is just the weight of the book. F=m*g

The first work will be: [tex]W_{1}=mgh_{1}[/tex]. F and h1 are parallelsThe second work will be:[tex]W_{2}=-mg(h_{1}-h_{2})[/tex] is negative because the vector force and the vector displacement are anti parallels.

Finally, the total work will be the sum of W₁ and W₂.

[tex]W_{tot}=W_{1}+W_{2}=mgh_{2}=2.2*9.81*0.35=7.55[J][/tex]

I hope it helps you!

Answer 2
Final answer:

To calculate the work done on the book, the student librarian must use the formula W = mgh for each segment of lifting the book vertically. The total work done is the sum of the work for lifting the book to 1.25 m and then to 0.35 m. The horizontal distance carried does not contribute to work against gravity.

Explanation:

The work done on the book by the student librarian can be calculated by considering the work done against gravity to lift the book to different heights. The distance carried horizontally does not involve work against gravity under the assumption that there is no horizontal force like friction opposing the motion. The work done to lift the book from the floor to 1.25 m can be calculated using the formula W = mgh, where m is the mass of the book, g is the acceleration due to gravity (approximately 9.8 m/s2), and h is the height.

The initial lift is W = 2.2 kg × 9.8 m/s2 × 1.25 m. When placing the book from the carried position to a shelf at 0.35 m height, the work done is W = 2.2 kg × 9.8 m/s2 × 0.35 m since the vertical displacement is from 1.25 m to 0.35 m, not the full 1.25 m again.

The total work done on the book is the sum of these two amounts of work. Please note that the gravitational constant (g) could be given or assumed in this context. The exact value used may vary slightly depending on the context of the problem.


Related Questions

Sometimes at a child's birthday party someone will rub a balloon on another's head and stick the balloon to the wall. this works because
a.the wall and balloon have the same charge.
b.the balloon has less weight because it has become charged.
c.the balloon discharges current into the wall and the wall becomes charged just like the balloon was.
d.the wall and the balloon have opposite charges and this creates an attractive force between the wall and the balloon.

Answers

D). I hope this helped. :-)

When an object that has been thrown into the air reaches its maximum height, which is true?
a. its velocity is zero. b. it is at its terminal velocity. c. it is not in free fall. d. its acceleration is zero.

Answers

Answer:

a. its velocity is zero.

Explanation:

At maximum height no activities is going on that is the velocity becomes zero because no movement occurs at that point

Since there is no moveent the velocity is zero.

At an object's maximum height in projectile motion, its velocity is zero but its acceleration due to gravity remains constant. Therefore, the correct statement is option a).

Here is the detailed reasoning:

An object thrown upwards will decelerate due to gravity until its velocity becomes zero at the maximum height. This is the point where its upward motion stops, and it is about to start descending.

The velocity magnitude at maximum height is zero, but its acceleration is still the acceleration due to gravity (g), acting downwards. Therefore, option d. its acceleration is zero, is incorrect.

Terminal velocity refers to the constant speed that a free-falling object eventually reaches, which is not relevant here. So, option b is incorrect.

Even at its maximum height, an object is still under the influence of gravity, meaning it is in free fall, which makes option c incorrect.

Therefore, the correct answer is a. its velocity is zero.    

If a ball is thrown into the air with a velocity of 42 ft/s, its height (in feet) after t seconds is given by y = 42t − 16t2. Find the velocity when t = 1.

Answers

y = 42t - 16t^2

velocity = vt = dy/dt

= 42 - 32t

v(1) = 42 - 32

= 10 ft/s

Hope this helps

The velocity of a ball at t = 1 second when it was thrown up with an initial velocity of 42 ft/s, we differentiate the height function to get the velocity function and substitute t = 1 to find the velocity to be 10 feet per second.

The velocity of a ball thrown straight up into the air at a specific time (t = 1 second), using the given position function y = 42t - 16t². To find the velocity at t = 1, we differentiate the position function with respect to time to get the velocity function v(t) = dy/dt. After differentiation, we get v(t) = 42 - 32t and then plug in t = 1 to find the velocity at that moment.

After substituting t into the velocity function, we get v(1) = 42 - 32(1) = 10 ft/s. Hence, the velocity of the ball at t = 1 second is 10 feet per second.

Need help with science!
Which of the following statements about radioactive decay is true?
a. radioactive decay is the rate at which new atoms form.
b. During radioactive decay, atoms break down, releasing, particles or energy.
c. the rate of decay of a radioactive element cannot be approximated.
d. the number of radioactive atoms in a sample will always remain constant.

Which of the following terms refers to the time it takes for one-half of the radioactive atoms in a sample of a radioactive element to decay?
a. relative age.
b. absolute age.
c. potassium-argon date
d. half-life

Answers

Answer:

1. B

2. D

Explanation:

1. Radioactive decay occurs when a radioactive particle cannot maintain a high energy state due to its own weight. When a radioactive element (eg. Uranium) undergoes radioactive decay, its product/s (following the previous example, Uranium decays into Thorium) are more stable than its reactants.

The question might remain that after Uranium decays to Thorium, where does the extra mass go? The extra mass is released as an alpha particle, and through this process, a lot of energy is released as gamma radiation.

Hence, the answer is:

During radioactive decay, atoms break down releasing particles or energy.

2. The half-life of an element is referred to as:

The length of time taken for one half of the radioactive atoms in a sample to decay.

Hence, since the question states the definition of a half-life, the answer is D.

Final answer:

The correct answer is (b) 'During radioactive decay, atoms break down, releasing particles or energy.' And, the term for the time it takes for one-half of the radioactive atoms in a sample to decay is (d) 'half-life.'

Explanation:

The true statement about radioactive decay is option (b), 'during radioactive decay, atoms break down, releasing particles or energy.' Radioactive decay is a spontaneous process where an unstable atomic nucleus loses energy by emitting radiation, such as an alpha particle, beta particle with neutrino or only a neutrino with case of Electron Capture, or a gamma ray. The other options do not accurately describe this process.

The term referring to the time it takes for one-half of the radioactive atoms in a sample of a radioactive element to decay is option (d), 'half-life.' Half-life is commonly used in nuclear physics and chemistry, and it provides us with a measure of the time scale on which radioactive decay processes occur.

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Why do magnetic lines of forces make a closed loop?

Answers

Magnetic lines of forces make a closed loop because there are no magnetic charges (monopoles). While electric field lines end on electric charges, magnetic field lines have no objects on which they could end. This is why they must form loops. 

If a car is traveling 40 mph, how far will it go in 5 hours?
a. 100 miles
b. 200 miles
c. 80 miles
d. 800 miles

Answers

B.) Distance = time x speed = 40x5 = 200miles.

During which type of change can an atom of one element transform into an atom of a different element

Answers

number of protons because the nucleus is unstable and undergoes radioactive

Answer:

Nuclear

Explanation:

T object]user: a ____ farm can be used to generate electricity

Answers

Large fields of windmills or solar panels can be used
to collect enough energy to power a whole town.

These are sometimes called "wind farms" or "solar farms".

A certain planet has an escape speed . If another planet has twice size and twice the mass of the first planet, its escape speed will be


A) Sqrt[2] V
B) V
C) V/2
D) V/Sqrt[2]
E) 2V

Answers

Answer:

answer is V

Explanation:

What is the speed of a wave that has a frequency of 45 Hz and a wavelength of 0.1 meters?
A. 0.45 m/s
B. 4.5 m/s
C. 45 m/s
D. 450 m/s ...?

Answers

λν=c
(wavelength x frequency = speed)

speed = 45 x 0.1
= 4.5 m/s

Answer:

4.5

Explanation:

yes

why do all freely falling objects have the same acceleration

Answers

they are falling under the sole influence of gravity all objects will fall with the same rate of acceleration needless of there size
Objects that are said to be undergoing free fall, are not encountering a significant force of air resistance; they are falling under the sole influence of gravity. Under such conditions, all objects will fall with the same rate of acceleration, regardless of their mass.

Air pressure decreases as
a.
velocity increases.
b.
elevation increases.
c.
acceleration decreases.
d.
gravity increases.

Pressure can be measured in units of
a.
newtons.
b.
newtons per square meter.
c.
newtons per centimeter.
d.
newtons per cubic centimeter.

Answers

The answer is going to be B: elevation.

An amount of nitrogen undergoes a physical change and increases its volume. What can be known about this physical change?

The boiling point of the nitrogen increased.
The mass of nitrogen increased.
The color changed.
The density changed.

Answers

Correct answer choice is :


D) The density changed.


Explanation:


Density is the number of mass placed in a particular volume. The density of an object can vary if either the mass or volume of the object is modified. Fluids, such as water, have a specific density. If an object is thicker than water, it will sink; if it is less thick than water, it will float. Maximum material rises in volume when it gets hotter. For instance, if an iron rod is ignited, it will get longer and thicker and its density will reduce. This occurs because the mass of the rod stays the equivalent, but its volume rises.

what is junction resistance?
...?

Answers

Hi , the answer is , The electrical resistance across a semiconductor PN junction.

a 700 kg racecar slowed from 30 m/s to 15 m/s. What is the change in momentum

Answers


Momentum = (mass) x (speed)

Original momentum  =  (700 kg) x (30 m/s)  =  21,000 kg-m/s

Final momentum = (700 kg) x (15 m/s)  =  10,500 kg-m/s

Change in momentum  =  - 10,500 kg-m/s .

A construction worker runs a jack hammer for 1.5 hours. The jack hammer has 2.4 kilowatts of power. How much electrical energy does the construction worker use running the jack hammer?

A. 3.6 kilowatt-hours

B. 3600 kilowatt-hours

C. 0.625 kilowatt-hours

D. 1.6 kilowatt-hours

Answers

its a because 24*15 is 360 but you have to put the decimal back so its 3.6 kilowats per hour plz mark brainlest 

The energy used by the construction worker running the jackhammer for 1.5 hours, which has a power of 2.4 kilowatts, is calculated as 3.6 kilowatt-hours, which is answer choice A.

The energy used by the construction worker while running the jackhammer can be calculated using the formula for electrical energy, which is:

E = Pt

Where:

E is the energy in kilowatt-hours (kWh),P is the power in kilowatts (kW),t is the time in hours (h).

Given:

P = 2.4 kW (power of the jackhammer),t = 1.5 hours (duration of use).

Therefore, substituting the values we get:

E = 2.4 kW * 1.5 h = 3.6 kilowatt-hours

The correct answer is A. 3.6 kilowatt-hours.

How much power does a toaster have if it does 21,000 joules of work in 30 seconds?

Answers


Power  =  (work done)  /  (time to do the work)

           =  (21,000 Joules)  /  (30 seconds)

           =   (21,000 / 30)  joule/sec

           =      700   watts  
Final answer:

The power of the toaster, calculated using the formula P = W/t, is 700 Watts.

Explanation:

The power of an appliance like a toaster can be calculated using the formula for power which is P = W/t, where P is Power, W is work done or energy consumed, and t is time.

Given that the toaster does 21,000 Joules of work or consumes 21,000 joules of energy in 30 seconds, the power would thus be calculated as follows: P= 21,000J / 30 s. This equals 700 Watts. So, the toaster has a power of 700 Watts.

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Which of the following frictionless ramps (A, B, or C) will give the ball the greatest speed at the bottom of the ramp? Explain.

Answers

Let the ball is initially at point P1. Finally it reaches at point P2.( bottom most). Since only conservative force is acting on the ball throughout the motion, mechanical energy will be conserved. Therefore conserving energy from P1 to P2, Initially ball is at rest(P1). So initial kinetic energy is 0. Let ball is at height h1 initially, so initial potential energy = mgh ( m= mass of the ball). At bottom most point (P2), potential energy of ball changes into kinetic energy. So final kinetic energy =1/2 mv^2. Final potential energy = 0. Equating energies at P1 and P2, Mgh= 1/2 mv^2. Therefore, v= (2gh)^1/2. Since all the initial and final points are at same height, velocity will be same for all the paths(irrespective of the path taken by ball). So velocity will be same.

The frictionless ramp A will give the ball the greatest speed at the bottom of the ramp.

What is speed?

Speed is defined as the rate of change of the distance or the height attained. it is a time-based quantity. it is denoted by u for the initial speed while u for the final speed. its si unit is m/sec.

The potential energy is due to the virtue of the position and the height. The unit for the potential energy is the joule. Ball has the most potential energy due to her position at C.

The potential energy is mainly dependent upon the height of the object.

Potential energy = mgh

The potential energy gets converted into kinetic energy at the bottom. If the ramp is frictionless the potential energy completely gets converted into kinetic energy.

The kinetic energy results in the motion of the body.

Hence frictionless ramp A will give the ball the greatest speed at the bottom of the ramp.

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Tim's car breaks down just down the street from his house. he and his friends decide to try to push it to his house. using newton's three laws of motion, explain why this will be difficult.

Answers

The friends have to combine their forces to be greater than the force of the car pushing back on them (3rd law). The car will remain at rest until an outside force acts on it that it is greater than its own (1st). The speed in which the car is being moved is directly related to the amount of force and direction of the kids pushing the car (2nd).

An object has a mass of 8.00 kg. What is the gravitational force on the object by the earth?

Answers

Gravitational force is equal to mg or mass times the acceleration due to gravity. The acceleration due to gravity is 9.81m/s^2, and the mass is given to you as 8.00kg, which happens to already be in SI units. So just multiply the two to get: 8.00kg x 9.81m/s^2 = 78.48N. All forces have units of Newtons.
Final answer:

The gravitational force (weight) of an 8.00 kg object on Earth is 78.4 N. This is calculated using the formula 'w = mg', with 'g' being the Earth's acceleration due to gravity (9.80 m/s²).

Explanation:

The gravitational force exerted on an object by the Earth (also known as the object's weight) can be calculated using the formula w = mg, where m is the mass of the object and g is the acceleration due to gravity. On Earth, the acceleration due to gravity (g) is approximately 9.80 m/s².

For an object with a mass of 8.00 kg, the gravitational force (weight) would be calculated as follows:

w = mg = (8.00 kg)(9.80 m/s²) = 78.4 N

Thus, the Earth exerts a gravitational force of 78.4 N on an object with a mass of 8.00 kg.

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If a car is traveling westward with a constant velocity of 20m/s, what is the net force acting on the car

Answers

zero
if object rest or moves with constant speed net force is zero by first newton law

Planet a has three times the mass of planet b and the same radius. from this information, what can we conclude about the acceleration due to gravity at the surface of planet a compared to that at the surface of planet b?

Answers

It would be 3 times bigger (formula is g= mass divided by squared radius)
Hence mass grows 3 times - g will grow 3 times as well

In which state of matter are the particles CLOSEST together?

A)
gas


B)
solid


C)
liquid


D)
plasma

Answers

I am pretty sure it's solids

In the solid state of matter, the particles are closest together. Thus, the correct option is B.

What are the states of matter?

The state of matter is one of the distinct forms in which the matter can exist in nature. Four states of matter which are observable in the everyday life are solid, liquid, gas, and plasma states.

Solid state of matter is a state in which the particles are packed tightly in space. The constituent particles can be atoms or the solid particles. The intermolecular distances between the solid particles in the lattice are short and hence the forces of attraction between the molecules are strong. Solids are divided into three broad classes which are crystalline, non-crystalline (amorphous), and quasi-crystalline. Crystalline solids have a very high degree of order in a periodic atomic arrangement of molecules.

Therefore, the correct option is B.

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A window washer stands on a scaffolding 30 meters above the ground. If he did 23,520 joules of work to reach the scaffolding what is his mass

Answers

Work done by gravity = 23,520 J = mgh. Therefore m= 23520/ 30 x 9.8 = 80 kg.

The mass of the window washer who stands on a scaffolding 30 meters above the ground is 78.4 Kg.

What is Potential Energy?

Energy of the body due to its position with respect to some other object (say earth) is called potential energy.

Given is a a window washer who stands on a scaffolding 30 meters above the ground.

The amount of work done by the window washer will be stored inside him in the form of potential energy. Therefore, we can write -

mgh = 23520

m x 10 x 30 = 23520

m = 23520/300

m = 78.4 Kg

Therefore, the mass of the window washer who stands on a scaffolding 30 meters above the ground is 78.4 Kg.

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Which identifies an electrically neutral atom that gains electrons?

A.
negative ion

B.
positive quanta

C.
positive photon

D.
negative isotope

Answers

C.
positive photon


choose this 

what force is directly related to number of electrons?

Answers

London dispersion force is the force that is directly related to the number of electrons. 

Why do the elements in group 16 share similar chemical properties?

Answers

Cuz their is two unpaired valency electrons in their elemental state or because they all have the same number of valency electrons
Hope it helps!

a uniform rope of length l is pulled by a constant force F.what is the tension in the rope at a distance l from the end, where it is applied?
...?

Answers

Imagine the rope tied to a hook on the ceiling. And then attach a weight to the rope. You have your situation exactly as described. The tension is equal all along the rope and will be the amount of the weight of the rope plus the weight of your load. You may ignore the weight of the rope if it is small compared to the load. If you are considering a horizontal suspension then the result is still the same at any point on the rope. The rope conforms to a curve known as a Catenary. Which is a class of curves that are all hyperbolic. If you have the formula for the curve you can figure out the forces. and they will all be uniform along the suspending cable. Look up Catenary

To calculate the velocity of an object, the _________ of the position vs time graph should be calculated.

Answers

The slope of the graph is what you need. That tells you the speed not the velocity. In order to find the velocity you would also need to know the direction of the motion.

By definition we have to:

[tex] v = \frac{dr}{dt}
[/tex]

Where,

dr / dt: rate of change of the position of an object with respect to time

Therefore, we know that in a position graph with respect to time, both variables are proportional.

The proportionality constant is the speed of the object.

Mathematically, this constant represents the slope of the line.

Answer:

To calculate the velocity of an object, the slope of the position vs. time graph should be calculated.

Which stage comes first in the life cycle of a high-mass star?
A. red giant
B. white dwarf
C. protostar
D. supernova
...?

Answers

the stage that comes first in the cycle of a high-mass star is :
C. Protostar
During this stage, the young Star is still gathering its mass from the residual of its parent  molecular cloud

hope this helps

Answer:

C. protostar

Explanation:

Due to the effect of gravity the hydrogen atoms are pulled together from the nebula. At this stage the star is not hot enough to start the nuclear fission. At this stage a star is called protostar. Eventually it will grow in size by attracting more hydrogen. When the temperature at the core is increased enough due to the gravitational pressure at the core of the star, then nuclear fission will start

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