A sperm whale can accelerate at about 0.100 m/s2 when swimming on the surface of the ocean. How far will a sperm whale travel if it starts at a speed of 1.10 m/s and accelerates to a speed of 2.44 m/s? Assume the whale travels in a straight line.

Answers

Answer 1

The distance traveled by the sperm whale traveling at an initial speed of 1.10m/s to 2.44m/s is 23.7m.

How to calculate distance?

The distance traveled by the sperm whale can be estimated using one of the equations of motion as follows:

v² = u² + 2as

Where;

v = final velocityu = initial velocitya = accelerations = distance

According to this question, a sperm whale can accelerate at about 0.100 m/s² when swimming on the surface of the ocean. The distance traveled by the whale can be calculated as follows:

2.44² = 1.10² + 2(0.10)(s)

5.95 = 1.21 + 0.2s

4.74 = 0.2s

s = 23.7m

Therefore, 23.7m is the distance of the sperm whale.

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Related Questions

A mass is attached to the end of a spring and set into oscillation on a horizontal frictionless surface by releasing it from a stretched position. If the maximum speed of the object is 2.23 m/s, and the maximum acceleration is 5.77 m/s2, find how much time elapses between a moment of maximum speed and the next moment of maximum acceleration.

(Answer should be in seconds)

Hint: What fraction of a period is the time between the maximum speed and acceleration? How are the maximum speed and acceleration related to the period of oscillation?

Answers

The time that elapses between a moment of maximum speed and the next moment of maximum acceleration is called half-period.

The relationship between the period of oscillation, T, and the angular frequency, ω, is given by the equation:

T = 2π / ω

The angular frequency, in turn, is related to the acceleration, a, by the equation:

ω = √(a/x)

where x is the amplitude of oscillation.

Since we know the maximum acceleration, we can find the angular frequency:

ω = √(5.77 m/s^2 / x)

And since we know the angular frequency, we can find the period:

T = 2π / ω

We know that half of the period is the time that elapses between a moment of maximum speed and the next moment of maximum acceleration, so we can find the time between these two moments by dividing the period by 2:

t = T/2

Therefore, the time elapses between a moment of maximum speed and the next moment of maximum acceleration is half a period of oscillation.

in a coal-fired electrical generating plant, coal is burned to heat water, which creates steam. the next step in this process is which of the following?

Answers

Coal-fired power plants generate electricity by burning coal in a boiler to create steam. The steam that is created enters a turbine, which spins a generator to produce electricity, under extremely high pressure. In this case, option A is correct

What type of energy results from burning coal to heat water into steam?

The hydrocarbon molecules in coal serve to store chemical energy. The burning of coal transforms this chemical energy into heat. Heat) Steam is produced by the combustion reaction and is transported through pipes at high pressures and speeds.

What is the name of the procedure for burning coal?

The process of combustion, in which heat is produced to create steam that powers turbines to produce electricity, is the most common and crucial use of coal.

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In a coal-fired electrical generating plant, coal is burned to heat water, which creates steam. the next step in this process is which of the following?

High PressureLow PressureHeatTemperature

calculate the magnitude of the y component of this vector if the magnitude is 15.7 and the angle theta-a is 16.0 degrees.

Answers

The magnitude of the y component of this vector if the magnitude is 15.7 and the angle theta-a is 16.0 degrees is 22.42.

What is the magnitude of vector y?

|v| =(x2 + y2) is the formula to calculate the magnitude of a vector in two dimensions, where v = (x, y).

If v=a,b is the position vector, then |v|= [tex]\sqrt{}[/tex]a2+b2 will provide the magnitude. Depending on the application, the direction is equal to the angle made with the x-axis or the y-axis.

The length of a vector determines its magnitude. The letter "a" stands for the vector's magnitude.

The axis of coordinates y is parallel to x. Note: The x and y component axes are vectors in and of themselves! They have a direction and a magnitude.

[tex]\sqrt{}[/tex] |v|=a2+b2

[tex]\sqrt{}[/tex]15.[tex]7^{2}[/tex] + 16.[tex]0^{2}[/tex] = 22.41

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Which of the following is not a part of an atom?
Electron
Coulomb
O Proton
Neutron

Answers

Answer:

Coulomb

Explanation:

The part of atom are electron, Proton and Neutron

a block of known mass mm is on a disk that rotates about its center, as shown above. the block does not slip on the disk, and travels at a constant tangential speed vv when at a distance rr from the center with a centripetal force of magnitude ff exerted on it. which of the following statements about other quantities that might be determined is correct?

Answers

When the block's radius and tangential speed are known, the centripetal acceleration of the block may be determined because ac=v2rac=v2r.

What exactly is a force in science?

Physics appears to have a clear definition for the word "force." A force of this magnitude can be described as either a push or a pull. A force does not "be in it" or "be inside it." A force from another object can affect something else.

What do the terms force and motion mean?

Basically, a push or pull that impacts anything or energy as a property of physical motion or movement is referred to as force. It happens when two things come together. A body is also considered to be in motion when it is moving.

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A 2140 kilogram railroad flatcar, which can move with negligible friction, is motionless next to a platform. A 242 kilogram sumo wrestler runs at 5.3 \text{~m/s}5.3 m/s along the platform (parallel to the track) and then jumps onto the flatcar. What is the speed of the flatcar if he then stands on it?

Answers

We use the letters M for the car's mass and m for the sumo wrestler's mass. Let the end speed of the car be v and initial velocity of a pro wrestler be v 0 >0. the speed of the flatcar if he then stands on it 1.1m/s.

How can the starting velocity be determined?

How can one calculate beginning velocity Determine which of the following must be solved obtain the beginning velocity: displacement (s), final velocity (v), acceleration (a), and time (t) (u). Use u = v at if you have v, a, and t. Using u ≈ 2(s/t) — v if you have the variables s, v, and t.

(a) From mν0 = (M+m)ν we get  

ν = M+mν0

= 2140kg + 242kg (242kg)(5.3m/s) = 0.54m/s .

(b) Since ν rel =ν 0 , we have

mν 0 =Mν+m(ν+ν)rel)=mν 0 +(M+m)ν ,

and obtain ν=0 for the final speed of the flatcar .

(c) Now mν 0​ =Mν+m(ν−ν rel ) , which leads to

ν = m+Mm(ν 0​ +ν rel)​

=242kg +2140kg (242kg(5.3m/s + 5.3m/s0​)) = 1.1m/s

What do starting and final velocity mean?

When gravity first exerts force on an object, its initial velocity defines how quickly the object moves. The final velocity, on the other hand, is a vector number that gauges a moving body's speed and direction after it reached its highest acceleration.

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Liquid Distilled water Isopropanol Mineral oil Salt water Density (kg/m3) 1000 786 850 1025 Sinks or Floats? Sinks Sinks Sinks Floats In an experiment, a student releases an object from rest in four different liquids and observes whether it floats. The results are listed in the table. Which of the following is true about the density of the object?

Answers

The object has a density less than 1000 kg/m³ because it floats in mineral oil which has a density of 1025 kg/m³.

The density of a substance is a measure of its mass per unit volume. In the table provided, the densities of four different liquids are given, along with whether an object floats or sinks in each liquid.

Since the object floats in mineral oil, which has a density of 1025 kg/m³, it means that the density of the object must be less than that of mineral oil, or less than 1025 kg/m³.

This is because objects with a density greater than the liquid they are placed in will sink, while those with a lower density will float. Therefore, the object has a density less than 1000 kg/m³.

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find the mass of a bullet moving at 45m/s and has kinetic energy of 51 j

Answers

The mass of a bullet moving at 45m/s and has kinetic energy of 51 j is 0.050 gram.

What is kinetic energy ?

The term kinetic energy is defined as  the energy of motion, observable as the movement of an object or subatomic particle.

There are five different types of kinetic energy: radiant, thermal, sound, electrical, and mechanical.

It is represented by formula

K.E = 1/2 mv²

Kinetic energy = 51 j

Mass = ?

Velocity = 45m/s

Then,

Mass = 2 K.E / v²

= 2 × 51 / 45²

= 102 / 2025

= 0.050 gram

Thus, The mass of a bullet moving at 45m/s and has kinetic energy of 51 j is 0.050 gram.

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a folding tray mechanism is attached to a wall as shown. the assembly has the dimensions given above. when a force of f

Answers

The internal force is -128.06N  and the bending moment is -96.67N.m.

ΔDAB/tan∝= a+l/k1+k2=21+28/22+20

∝=49.39

ΔDEH

cos(90-∝)=DH/DE

sin49.3=21/DE

DE=27.65

tan∝=EI/ID

tan49.3=21/ID

ID=18

cos∝=h1+h2/BD

BD=64.53

GI=h1-ID=22-18=4

tanβ=IG/IE=4/21

β=10.7

Fx=Rxsin∝=Rycos∝-Tcos∝-196.7cos∝=0--------------i

Fy=-Rxcos∝+Rysin∝+Tsinβ-196.7sin∝=0---------------ii

and

-Tsinβ27.65/100+196.78sin∝64.53/100+68.67=0

T=3197.35N

Solving equation i and ii we find that

Rx=2774.64N

Ry=1786.66N

A=-Rxsin∝-Rycos∝+Tcosβ

=-128.06

M=-(Rxcos∝)xx+(Rysin∝)x+Tsinβ(x-27.65)

=-96.67N.m

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Complete question should be:

A folding tray mechanism is attached to a wall. Find the internal force and bending moment. When the force F=185N is applied at an angle of 15 degree.

The density of a person's blood proteins is about 1.2 g/cm³. Express the density in kilograms per cubic meter.

Answers

The density of the person's blood proteins in kilograms per cubic meter is 1200kg/m³.

What is density?

Density is a measure of the mass of matter contained by a unit volume.

Densities refer to the measure of relative compactness. The definition of this measure can be expressed as mass, m, in a particular volume, v.

The density of a substance can be calculated using the following formula;

ρ = m/V

ρ = density, kg/m³, or g/(cm)³m = mass, in kg or gV = volume, in m³ or (cm)³

Here, ρ = density, m = mass, and v = volume

According to this question, the density of a person's blood proteins is about 1.2 g/cm³.

1 gram/cubic centimetre = 1000 kilograms/cubic metre

Therefore, 1.2g/cm³ is equivalent to 1200 kg/m³.

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a car changes its velocity from 45 km/h to 65 km/h in 3 s. Find the magnitude of its acceleration

Answers

The magnitude of the acceleration of the car when its velocity changes from 45km/h to 65km/h in 3 s is 1.9 m/s^2

Let u be the initial velocity of the car.

u=45 km/h (given)

By converting it into m/s , we get:

u=12.5 m/s

Let v be the final velocity of the car, then :

v=65 km/h

v=18.1 m/s ( By converting them into m/s)

Now, let the acceleration of the car while moving to be a, then :

Using the formula, we get:

⇒v = u + at

⇒ 18.1 = 12.5 + a×3 ( Putting all the values)

⇒3a = 18.1 - 12.5

⇒a = 5.6/3

a = 1.9 m/s^2

Therefore, The magnitude of the acceleration of the car when its velocity changes from 45km/h to 65km/h in 3 s is 1.9 m/s^2

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A train is moving along a straight line with a constant acceleration a. A boy standing in the train throws a ball forward with a speed of 10m/s, with respect to the train at an angle of 60 derajat to the horizontal. The boy has to move forward by 1.15m inside the train to catch the ball back at the initial height. The acceleration of the train, in m/s^2 , is:

Answers

The acceleration of the train is 5 [tex]m/[/tex] [tex]s^{2}[/tex] .

We can clearly see that the ball will follow a parabolic path so we break it into vertical and horizontal axis

The boy throws the ball and gives it a vertical velocity on which constant acceleration 'g' acts

For the vertical movement

[tex]S = ut - \frac{1}{2} g t^{2}[/tex]

[tex]0 = 10 sin 60[/tex]°   -    [tex]\frac{1}{2} 10 t^{2}[/tex]

[tex]t = \sqrt{3} s[/tex]

We know that the ball already has a horizontal velocity equal to the moving train's velocity.

For the vertical movement

[tex]S = ut + \frac{1}{2} a t^{2}[/tex]

[tex]1.15 = 10 cos 60[/tex]°  [tex]\sqrt{3} \ \frac{1}{2} \ a \ 3[/tex]

[tex]a = 5 m/ s^{2}[/tex]

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5. If 20kg body falls down ward freely from 40m building, find the kinetic energy of this body when at a height of 30m above the ground?​

Answers

Answer:

The kinetic energy of an object is given as .5mv2, where m is

the mass of the object, and v is the velocity of the object. So in

this case, we can't determine the kinetic energy directly, but we

can determine the potential energy, which is given by mgh, where m

is the mass, g is the gravitaional constant, and h is the height

above the ground that the object falls from. We know that all of

the potential energy is going to be converted into kinetic energy.

So mgh = .5mv2. (20 kg)(9.8 m/s2)(30 m)= 5880J

Explanation:

The kinetic energy of an object is given as .5mv2, where m is

the mass of the object, and v is the velocity of the object. So in

this case, we can't determine the kinetic energy directly, but we

can determine the potential energy, which is given by mgh, where m

is the mass, g is the gravitaional constant, and h is the height

above the ground that the object falls from. We know that all of

the potential energy is going to be converted into kinetic energy.

So mgh = .5mv2. (20 kg)(9.8 m/s2)(30 m)= 5880J

Answer:

300joules

Explanation:

1÷2×20×30=

20×15=

Regarding memory, conscious is to _____ as unconscious is to _____. Please choose the correct answer from the following choices, and then select the submit answer button. Answer choices explicit memory; implicit memory shallow processing; deep processing echoic memory; iconic memory recognition; recall

Answers

Regarding memory, conscious is to explicit memory as unconscious is to implicit memory.

it was wilbur who came up with the idea of adjusting the wings on a glider to capture winds and guide it

Answers

No, The engine's lack of power necessitated the usage of the concept of wing warping to generate additional lift. Wright brothers, by bending the wing and twisting the trailing edges of each wing in different directions.

The aircraft's wings resemble bird wings in many ways.

We constructed many of these toys, all of which successfully flew. Wright, Orville Over a century ago, in 1903, the goal of the flight was fulfilled for man. Wilber and Orville Wright were given the 821,393 Flying Machine patent by the US on May 22, 1906. It was a discovery that would alter the course of history.

The 1903 Wright Flyer, which Wilbur and Orville Wright developed over the course of four years, was the first successful powered aircraft. On December 17, 1903, with Orville at the controls, it made its inaugural flight over Kitty Hawk, North Carolina.

The first motorized airplane may have been created by the Wright brothers.

The correct question is:

who came up with the idea of adjusting the wings on a glider to capture winds and guide it?

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a fly enters through an open window and zooms around the room. in a cartesian coordinate system with three axes along three edges of the room, the fly changes its position from point (4.00 m, 1.50 m, 2.50 m) to (1.57 m, 2.7 m, 0.55 m).

Answers

In a cartesian coordinate system with three axes along three edges of room, fly changes its position from point (4.00 m, 1.50 m, 2.50 m) to (1.57 m, 2.7 m, 0.55 m), then Displacement vector = -2.43 i + 1.2 j - 1.95 m

What is meant by displacement vector?

A geometric object which encodes both displacement and direction is called displacement vector. Displacement vector from one point to another is an arrow with its tail at first point and its tip at second.

Given (4.00 m, 1.50 m, 2.50 m) to (1.57 m, 2.7 m, 0.55 m).

Displacement vector along x axes is 1.57 - 4.00= -2.43 m

Displacement vector along y axes is 2.7 - 1.50 = 1.2 m

Displacement vector along z axis is 0.55- 2.50 = - 1.95 m

Displacement vector is -2.43 i + 1.2 j - 1.95 m.

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Note: The given question on the portal is not incomplete. Here is the complete question.

Question: a fly enters through an open window and zooms around the room. in a cartesian coordinate system with three axes along three edges of the room, the fly changes its position from point (4.00 m, 1.50 m, 2.50 m) to (1.57 m, 2.7 m, 0.55 m). Find the scalar components of the flies displacement vector (in m).

What happens
to the energy
level of particles
when melting
occurs?
A. it decreases
B. it increases and
decreases rapidly
C. it increases
D. it stays the same

Answers

It decreases happens to the energy level of particles when melting occurs. So, option (a) is correct.

What is energy level?

The fixed distances between the atom's nucleus and the location of electrons are known as energy levels, sometimes known as electron shells. A tiny, positively charged nucleus at the center of an atom is surrounded by electrons, which are tiny, negatively charged particles. A staircase's steps can be compared to energy levels.

What is melting?

Melting is the transformation of a solid into a liquid under the influence of heat. When a solid is impure, it often melts over a wide range of temperatures below the melting point of the main component. In a pure crystalline solid, this process takes place at a specific temperature known as the melting point.

Therefore, decreases happens to the energy level of particles when melting occurs. So, option (a) is correct.

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A horizontal string tied at both ends is vibrating in its fundamental mode. The traveling waves have speed v, frequency f, amplitude A, and wavelength λ.
A) Calculate the maximum transverse velocity of the point located at x=λ/2.
Express your answer in terms of the variables v, f, A, λ, and appropriate constants. vmax =
B) Calculate the maximum transverse acceleration of the point located at x=λ/2.
Express your answer in terms of the variables v, f, A, λ, and appropriate constants. amax =
C) What is the amplitude of the motion at the point located at x=λ/2?
Express your answer in terms of the variables v, f, A, λ, and appropriate constants.
ASW = D) How much time does it take the string to go from its largest upward displacement to its largest downward displacement at the point located at x=λ/2?
Express your answer in terms of the variables v, f, A, λ, and appropriate constants. t =

Answers

A) The maximum transverse velocity of the point located at x=λ/2 is given by vmax = 2πfA.

B) The maximum transverse acceleration of the point located at x=λ/2 is given by amax = (2πf)^2A.

C) The amplitude of the motion at the point located at x=λ/2 is half the amplitude of the entire wave, so the amplitude at this point is A/2.

D) The time it takes for the string to go from its largest upward displacement to its largest downward displacement at the point located at x=λ/2 is given by t = 1/f.

A type of force that a person or machine exerts (pushes or pulls) on an object that may cause a change in velocity of an object.

Answers

The applied force is a type of force that a person or machine exerts (pushes or pulls) on an object that may cause a change in the velocity of an object.

What is applied force?

A kind of force that a person or machine applies to an item (pushes or pulls) that could modify the object's velocity, Gravity. The force of attraction between the earth and all objects on earth caused by their masses is known as weight.

When someone pulls something, what kind of force is used?

Frictional force is the name given to this kind of force. When an object's surface comes into touch with the surface of another object, it typically resists the motion of the object. Applied Force: When a person or an item exerts pressure on another thing, the object is moved as a result.

Is the kind of force produced when a physical push or pull is applied to an object?

Contact forces include friction, pushing, and pulling. a tug and friction from touch. A contact force is created when two items are physically contacting and working together, for as when you throw a ball.

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Two balls are dropped on the floor from the same height. The balls are made up of different types of rubber so that one bounces back at nearly the same height while the other does not bounce at all. Assuming both balls have the same mass, which ball experiences the greater impusle in colliding with the floor? Why?

Answers

The balloon will bounce a highest when two balls of equal weight are placed from the same location as a result of its greatest elasticity. The rubber ball is squashed or squeezed when it strikes the ground.

Explain what elasticity is.

Elasticity is the capacity of a material body to regain its original dimensions and shape after being deformed by external forces. This capability is referred to as elastic behavior (or response) in a body. Hoare's rule.

What are some examples of elasticity?

When anything is stretched or squeezed, it can regain its original shape thanks to its elastic properties. A rubber, for instance, can quickly restore its shape after being stretched out significantly.

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define, identify, describe and understand various heat sources capable of being a source of ignition.

Answers

When anything, a process, or an event may ignite or transport energy into a medium to cause combustion, it is said to be a source of ignition. This standard permits the use of open flames as a source of ignition.

Friction, hot surfaces, sparks, and static electricity. bursts of lava and friction-based electricity warmers. Sun Everyone who lives on Earth gets most of their heat from the sun. For plants to prepare their food, they require energy from the sun. The warmth of the sun makes it possible for humans to survive. Fuel ignition results in the release of energy. Heat is the energy that is transmitted when two objects with different surface temperatures touch. system of the sun.

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Daria, a three-week-old infant, is resting quietly in her crib. Her eyes are open, and she is breathing regularly. She is also looking around but shows little body movement. In this scenario, Daria is in the state of _____.

Answers

If Daria's eyes are open, she is breathing regularly, and she is also looking around but shows little body movement, then she is in a state of Alert inactivity.

What is the state of Alert inactivity?

Alert inactivity can be defined as the lack of response to an alert or warning due to a variety of reasons, such as being distracted, not understanding the alert, or simply ignoring it, which may be harmful.

Therefore, with this data, we can see that alert inactivity has evidential features we can distinguish in an individual.

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Answer: awakeness but close to light sleep

Explanation:

a ball is thrown into the air with an initial velocity of 10 m/s at an angle of 45 degrees above the horizontal, as represented above. question which of the following representations of the velocity and acceleration of the ball is true?

Answers

The horizontal component of velocity is 7.07 m/s and the vertical component is 7.07 m/s and acceleration of the ball is -9.8 m/s^2 directed downward.

How can velocity be represented?

The velocity of the ball can be represented as vector with both horizontal and vertical components. The horizontal component of velocity is given by vx = v * cos(θ), where v is initial velocity and θ is angle of launch measured from the horizontal. Vertical component of velocity is given by vy = v * sin(θ), where v is the initial velocity and θ is the angle of launch measured from the horizontal.

Given, initial velocity of 10 m/s at an angle of 45 degrees above the horizontal,

Velocity:

Horizontal component of velocity is vx = 10 * cos(45) = 7.07 m/s

Vertical component of velocity is vy = 10 * sin(45) = 7.07 m/s

Acceleration:

acceleration of the ball is -g, directed downward with a magnitude of 9.8 m/s^2

Horizontal component of velocity is 7.07 m/s and the vertical component is 7.07 m/s

Acceleration of the ball is -9.8 m/s^2 directed downward.

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Macmillan Learning
A black mamba snake has a length of 2.60 m and a top speed of 4.50 m/s. Suppose a mongoose and a black mamba find
themselves nose to nose. In an effort to escape, the snake accelerates past the mongoose at 8.37 m/s² from rest.
How much time ftop does it take the snake to reach its top
speed?
How far dsnake does the snake travel in that time?
How much time freact does the mongoose have to react before
the black mamba's tail passes the mongoose's nose?
ftop
dsnake =
freact=
S
m
S

Answers

The black mamba travels a distance of 2.0828 m, which is less than its length of 4.50 m.

How far dsnake does the snake travel in that time?

The first equation of motion states:

vf = at + vi

A top speed is _f.

Initial or lowest speed is v i, and acceleration is a.

2.60 = 4.50 t

t +0 = 1.28571sec

The snake needs 1.28571 seconds to attain its peak speed.

Part B:

The second equation of motion states:

S=0.5(4.50) S=vit+at2 w i=0 (1.28571)

2 S = 2.0828m

In that period, the snake moves 2.0828 metres.

Part C:

The black mamba travels a distance of 2.0828 m, which is less than its length of 3.12 m.

2.0828 m<3.12 m

A potential exists for monkeys to capture a black mamba.

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figure 21-42 shows a long, nonconducting, massless rod of length l, pivoted at its center and balanced with a block of weight w at a distance x from the left end. at the left and right ends of the rod are attached small conducting spheres with positive charges q and 2q, respectively. a distance h directly beneath each of these spheres is a fixed sphere with positive charge q. (a) find the distance x when the rod is horizontal and balanced

Answers

Let the distance of weight W from the bearing is x3,

Then as we can see weight W is trying to give a clockwise rotation around the bearing similarly the charge +q is also applying the same clockwise torque because of the repulsion from the charged sphere beneath it.

But +2q charge torque is in a counter-clockwise direction. thus to make the rod balanced torque from weight W and +q charge must be balanced by the torque by +2q charge.

Let F and F1 be the force on +q and +2q respectively because of the fixed +Q charge.

as, F= kq[tex]\frac{Q}{h^2}[/tex]   and F1= 2kq[tex]\frac{Q}{h^2}[/tex] =2F

as for the balance of the rod

FL/2+ Wx3 = 2FL/2

Wx3= FL/2

x3 = kqQ[tex]\frac{L}{2Wh^2}[/tex]

x= [tex]\frac{L}{3} +x3[/tex]

x= [tex]\frac{L}{2} * (kq\frac{Q}{Wh^2} +1)[/tex]

so put the weight above x to balance the rod.

Maximum such notions of distance, both physical and metaphorical, are formalized in arithmetic the use of the perception of a metric place.inside the social sciences, distance can test with a qualitative size of separation, along with social distance or psychological distance.

Distance is a numerical or every so often qualitative dimension of how a long way aside gadgets or points are. In physics or regular utilization, the space may seek advice from a physical period or an estimation primarily based on different criteria (e.g. " counties over"). due to the fact spatial cognition is a wealthy source of conceptual metaphors in human thought, the time period is also often used metaphorically to mean a measurement of the quantity of distinction between similar objects (which includes statistical distance between possibility distributions or edit distance among strings of text) or a degree of separation (as exemplified by using the gap between human beings in a social community).

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When a right force is applied to a dresser to push it across a room, what force works in the opposite direction of the applied force? gravity normal friction tension​

Answers

Friction force works in the opposite direction of the applied force. So, the correct option is (C).

What is Friction?

Friction is defined as the force opposing the relative motion of solid surfaces, fluid layers, and material elements sliding against each other. There are many types of friction such as dry friction which is a force that opposes the relative lateral motion of two solid surfaces in contact.

The force of friction is described as the resistance to motion that arises when two objects rub against each other, so this force always acts in the opposite direction to the motion of an object.

Thus, Friction force works in the opposite direction of the applied force. So, the correct option is (C).

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The level of magnification that produces the best images using an electron microscope is _____.
A. 2,500 times
B. 100,000 times
C. 250,000 times
D. 1,000,000 times

Answers

The level of magnification that produces the best images using an electron microscope is 250,000 times.

What is electron microscope?

In order to "image" the specimen and learn more about its structure and composition, electron microscopes (EMs) work similarly to their optical equivalents but employ a focussed beam of electrons rather than photons. There are several kinds of electron microscopes, such as the scanning electron microscope (SEM), the transmission electron microscope (TEM), and the reflection electron microscope (REM.)

Universities, research facilities, and institutes for nanotechnology frequently employ electronic microscopes. These facilities allow for a close examination of the specimen's structure, which can reveal details about its intended use.

correct option: C

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The electric potential in a region of space as a function of position x is given by the equation V(x) = αx2 + βx - γ, where α = 2V/m2, β = 7V/m, and γ = 15V. All nonelectrical forces are negligible.An electron starts at rest at x = 0 and travels to x = 20 m.Calculate the magnitude of the work done on the electron by the electric field during this process.Calculate the speed of the electron at x = 20 m.

Answers

The magnitude of the work done on the electron by the electric field is given by W = qV, hence  the speed of the electron at x = 20m is v = 42 m/s.

Calculate the speed of the electron at x = 20 m?

The electric potential energy at x = 0 is V(0) = 15V and the electric potential energy at x = 20 m is V(20) = 715V. Therefore, the magnitude of the work done on the electron is [tex]W = q(715-15) = q700 V.[/tex]

The speed of the electron at x = 20 m can be calculated using the equation[tex]v = √2(V(20) - V(0))/m[/tex], where m is the mass of the electron. Substituting in the values, we get[tex]v = √2(715-15)/m = √1400/m[/tex]. Therefore, the speed of the electron at [tex]x = 20 m is v = √1400/m.[/tex]

The work done on the electron by the electric field during the process is equal to the change in electric potential energy. The electric potential energy at the starting point is equal to V(0) = -15V and the electric potential energy at x = 20 m is equal to V(20) = 215V. The magnitude of the work done can then be calculated as

[tex]W = 215V - (-15V) = 230V[/tex]

The speed of the electron at x = 20 m can be calculated using the equation of motion:

[tex]v^2 = 2a(x-x_0)[/tex]

where a is the acceleration. This can be calculated from the equation of electric potential as:

[tex]a = dV/dx = 2αx + β[/tex]

Plugging in the values for x and the constants, we get a = 44V/m. Substituting this in the equation of motion, we get

[tex]v^2 = 2(44V/m)(20m-0m) = 1760V[/tex]

Therefore, the speed of the electron at[tex]x = 20m is v = 42 m/s.[/tex]

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PART ONE
The figure shows a claw hammer as it pulls a
nail out of a horizontal board.
If a force of magnitude 99.9 N is exerted horizontally as shown, find the force exerted by the hammer claws on the nail. (Assume that the force the hammer exerts on the nail is parallel to the nail).
Answer in units of N.

PART TWO
Find the force exerted by the surface on the point of contact with the hammer head. Assume that the force the hammer exerts on the nail is parallel to the nail.
Answer in units of N.

Answers

(1) The force exerted by the hammer claws on the nail is 57.3 N.

(2) The force exerted by the surface on the point of contact with the hammer head is 81.83 N.

What is the force exerted by the hammer claws on the nail?

The force exerted by the hammer claws on the nail is calculated as follows;

Fy = Fn sinθ

where;

θ is the angle of inclination of the hammer

Fy = 99.9 N  x  sin (35)

Fy = 57.3 N

The force exerted by the surface on the point of contact with the hammer head is calculated as follows;

Fx = Fn x cosθ

Fx = 99.9 N  x  cos (35)

Fx = 81.83 N

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the chart shows different speeds at which theoretical spacecraft are traveling horizontally. the speeds are represented as percentages of the speed of light the spacecrafts are traveling, where 0.20c

Answers

The figure below displays various horizontal spaceship travel speed, with y being the farthest away from zero. Y is the solution

A spacecraft has never traveled faster than 163 km/s (586,800 km/h; 364,660 mph), which was accomplished by the Parker Solar Probe on November 20, 2021, at 21:25:24 UTC. The probe received a gravity boost from a fly-by of Venus on October 16 that tightened its orbit, allowing it to achieve this speed at perihelion (the closest point in its elliptical orbit around the Sun). It came within 5,307,594 miles (8,541,744 km) of the surface of the Sun. Until the Parker Solar Probe's 17th perihelion on September 27, 2023, this record will hold.

For instance, a spacecraft leaving the surface of the Earth has to be traveling at a speed of about 40,000 kilometers per hour (25,000 miles per hour), or approximately 11 kilometers per second (7 miles per second), in order to enter orbit.

The correct question is:

The chart shows different speeds at which theoretical spacecraft are traveling horizontally. The speeds are represented as percentages of the speed of light the spacecraft are traveling, where 0.20c = 6 × 107 m/s.

Which spacecraft appears the longest to an outside observer?

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