an object having an initial momentum that may be represented by the vector below strikes an object that is initially at rest. which of the following sets of vectors may represent the momenta of the two objects after the collision? note carefully: the original vector above and the following vectors are all drawn to the same length scale.

Answers

Answer 1

The sets of vectors that may represent the momenta of two objects after the collision is shown in the image attached.

If a moving object strikes an object at rest at an angle, after collision both the objects will move at right angles to each other. The final momentum vector may or may not be same in magnitude. If the moving object strikes the stationary object head on instead of at an angle, the moving object will become stationary and the stationary object will follow the moving object path. In this scenario both the objects are considered to have same size and mass.

If the object have different size, they bot will move at different velocities. If the moving ball is bigger, they both will move in the same direction. If the stationary ball is bigger, the stationary ball will follow the path of moving ball and the moving ball will go in exactly opposite direction.

Therefore, the sets of vectors that may represent the momenta of the two objects after the collision is shown in the image attached.

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An Object Having An Initial Momentum That May Be Represented By The Vector Below Strikes An Object That
Answer 2

Answer:

One arrow slightly up and to the right; one arrow slightly down and to the right.

Explanation:

Look at the picture.

An Object Having An Initial Momentum That May Be Represented By The Vector Below Strikes An Object That

Related Questions

what is the relationship of lift, drag, thrust, and weight when the airplane is in straight-and-level flight?

Answers

In order to maintain a constant altitude, constant velocity, thrust, and drag must all be equal.

In level flight, the aircraft slows down when the engine power is decreased and the thrust is decreased. The airplane keeps descending as long as the thrust is lower than the drag. In contrast to weight, lift works. The opposite of drag is thrust. A plane flies level flight when the forces are equalized. If the forces of lift and thrust are greater than the forces of gravity and drag, the plane rises.

The lift and push produced by an airplane while it is traveling straight and level at a constant speed balance its weight and drag, respectively.

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Now our wavelength is getting longer because the waves are stretching out. This make the _________ lower as well as the pitch we hear.

Answers

Now our wavelength is getting longer because the waves are stretching out. This makes the 1. Frequency is lower as well as the pitch we hear.

Wavelength is the gap among equal factors (adjacent crests) in the adjacent cycles of a waveform sign propagated in the area or alongside a twine. In wi-fi systems, this duration is generally laid out in meters (m), centimeters (cm), or millimeters (mm).

Equation of the wavelength, we will tell that the wavelength of a wave is inversely proportional to its frequency, i.e., because the frequency of a wave increases, its wavelength decreases.

A better-frequency sound has a better pitch, and a decreased-frequency sound has a lower pitch. In discern 10.2 sound A has a better pitch than sound B. for example, the chirp of a bird would have an excessive pitch, but the roar of a lion could have a low pitch. The human ear can discover a huge variety of frequencies.

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Now our wavelength is getting longer because the waves are stretching out. This makes the _________ lower as well as the pitch we hear.

1. Frequency

2. Loudness

3. Amplitude

based on the results of the curve fit, what is the relationship between the magnetic field strength and the distance from the magnet?

Answers

The sphere energy decreases as the distance from the source increases.

A magnetic field is a vector subject that describes the magnetic effect on transferring electric charges, electric currents, and magnetic materials. A moving charge in a magnetic field story a force perpendicular to its very own pace and to the magnetic discipline.

The magnetic area is a area around a magnetic cloth or a moving electric powered rate inside which the pressure of magnetism acts. A magnetic subject is a force discipline that is created via transferring electric prices and magnetic dipoles and exerts a pressure on different close by shifting prices and magnetic dipoles.

Magnetic fild, a vector area  of a magnet, electric current, or converting electric discipline, wherein magnetic forces are observable.

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if the net torque on an object is positive, in which direction does the object begin to rotate?

Answers

A related right-hand rule relates the rotational direction to the torque direction. Your fingers will curl in the rotational direction if you point your thumb in the direction of the torque.

Positive torques cause counterclockwise rotation while negative torques cause clockwise rotation. Because T1 is smaller than T2, the net torque would point in a clockwise direction. The system would start to accelerate clockwise if it were initially at rest. The torques in Example 2 are not in equilibrium because there is a net torque. The rotational equivalent of force is torque. So an object will rotate with an angular acceleration in response to a net torque.

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You work for the city recreation department, which is hosting a 5 kilometer run/walk next week. Your coworker measured the course and found that it is only 4. 75 kilometers long. He asks you to move the finish line forward 0. 25 kilometers. Your tape measure is marked in feet and inches. What is the distance he has asked you to move the finish line, to the nearest foot?.

Answers

Answer:

820 feet

Explanation:

.25 km = 820 feet

Each sentence describes an interaction between two of Earth’s spheres. Match each sentence with the spheres that are interacting.
geosphere and hydrosphere
hydrosphere and biosphere
biosphere and atmosphere
atmosphere and geosphere
Grady swims in the ocean.
arrowRight
Lena takes a deep breath.
arrowRight
Water vapor condenses on a glass.
arrowRight
Gusty winds weather sandstone in the desert.

Answers

sentence describes an interaction between two of Earth’s spheres are given below

Geosphere and hydrosphere - water vapor condenses on a glass.

Hydrosphere and biosphere - Grady swims in the ocean.

Biosphere and atmosphere - Lena takes a deep breath

Atmosphere and geosphere - gusty winds weather sandstone in the desert.

Geosphere refers to the solid portion of the Earth, therefore rocks, land, and the like would be included. Water is a component of the hydrosphere, as indicated by the word hydro, which means water. The atmosphere comprises the winds and the air that surrounds us. The term "biosphere" describes the biotic elements. We consider living things since the word "bio" signifies "life." All those spheres now interact with one another, and it is because of these interactions that our universe is created and how life on Earth can coexist. Grady is a living creature, and the ocean is composed of water, as can be shown by comparing the characteristics of each sphere.

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a mass of 175g is placed on the end of a spring of unknown spring constant. the spring is stretched beyond equilibrium and released. the time to complete one oscillation (1 period) is .725s. what is the spring constant? group of answer choices 13n/m 2n/m -13n/m 128n/m -128n/m

Answers

The spring constant is 13 N/m

What is the spring constant?

Simple harmonic motions as well as Hooke's law are related to the definition of the spring constant. Therefore, we must first examine Hooke's law before attempting to define the spring constant as well as comprehend how it functions. As long as the applied load is below the elastic limit, a spring will naturally extend in proportion to the applied load, according to the theory of elasticity. We now understand that when an object is subjected to force, it tends to deform in some way. Consider a spring. Because springs are elastic, they will be compressed when we apply force to one side of the spring. The spring now expands to its original size by applying force in the opposite direction of the applied force.

T= 2*pi sqrt (m/K)

0.725=2*pi*sqrt (0.175/K)

K=13 N/m

Hence the spring constant is 13N/m
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In lab we applied the conservation of energy to a system to allow us to equate the initial energy to the final energy. How does the initial energy become stored in the system?.

Answers

Option C. At some height when the pendulum is displaced by some angle the total initial energy will be concerned with potential energy due to work by gravity against the displacement.

Potential energy is the energy held with the aid of an item because of its role relative to different objects, stresses within itself, its electric price, or other elements.

Potential energy saved energy that relies upon the relative role of diverse elements of a device. A spring has greater potential power whilst it is compressed or stretched. A metal ball has extra capability power raised above the floor than it has after falling to Earth.

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In the lab, we applied the conservation of energy to a system to allow us to equate the initial energy to the final energy. How does the initial energy become stored in the system?

A. The energy is supplied by the tension in the string

B. The energy is part of mass

C. The force of gravity does work when it is displaced some height when the pendulum is displaced by some angle theta

D. I did work on the mass by displacing it some height when I displaced the pendulum by some angle theta.

For a certain spring, k = 15n/m. A mass is hung from the spring, stretching it from 0. 3m to 0. 4m. What force did the weight produce?.

Answers

The force produced by the weight as it stretches the spring from 0.3 m to 0.4 m is 1.5 N

F = k x

F = Force

k = Stiffness

x = Displacement

x1 = 0.3 m

x2 = 0.4 m

x = x2 - x1

x = 0.4 - 0.3

x = 0.1 m

k = 15 N / m

F = 15 * 0.1

F = 1.5 N

Therefore, the force produced by the weight is 1.5 N

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two sturdy poles are positioned 7.5 m apart. a 0.35 kg cord is stretched between the poles. when one pole is struck by a hammer, a transverse wave travels down the cord and reaches the other pole in 0.78 s. what is the tension in the cord?

Answers

The tension in the cord is 4.318 N.

What is a tension?

In physics, tension is defined as the pulling force that is transmitted axially by a string, rope, chain, or similar object, or by each end of a rod, truss member, or other comparable three-dimensional object. Tension can also be defined as the action-reaction pair of forces acting at each end of the aforementioned elements. The polar opposite of compression might be tension. The International System of Units (SI) uses newtons to measure tension as a transmitted force, an action-reaction pair of forces, or a restoring force (or pounds-force in Imperial units).

V= distance/ time

7.5/0.78= 9.62 m/s

T= v^2 m/ l

= (9.62)2 0.35/ 7.5

= 32.39054/ 7.5

= 4.318N

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what is the magnitude of the gravitational force between two 5.0-kilogram masses separated by a distance of 5.0 meters? responses

Answers

To learn the magnitude and gravitational force to calculate the distance.

What is magnitude?

The most straightforward way to define magnitude is "distance or quantity." In either an absolute or relative sense, it displays the size or motion of an object. It serves as a way to convey the size or scope of something. Magnitude typically refers to a size or length.

What is gravitational force?

Newton's universal law of gravitation states that the force of attraction between any two bodies is inversely proportional to the square of the distance between them and directly proportional to the product of their masses.

G is the gravitational constant 6.67 × 10^-11 Newtons kg-2 m2.

M is the mass of the first object

m is the mass of the second object

r is the distance between them.

In this question.

two g-kg masses are separated by 5 meters.

So F=G(5kg)(5kg)/(5^2)=6.67*10^-11 (newtons)

Therefore, the gravitational force between two 5.0-kilogram masses separated by a distance of 5.0 meters is 6.67*10^-11 (newtons).

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As the text cites, atoms are incredibly tiny, numerous, perpetually moving, and what else?.

Answers

As the text cites, atoms are incredibly tiny, numerous, perpetually moving, and Ageless.

An atom consists of a nucleus and one or extra electrons bound to the nucleus. The nucleus is made from one or more protons and a number of neutrons. best the maximum common form of hydrogen has no neutrons. An atom is the smallest unit of everyday relied on that forms a chemical element.

An atom is a particle of being counted that uniquely defines a chemical element. An atom consists of an important nucleus that is surrounded by means of one or extra negatively charged electrons. The nucleus is undoubtedly charged and incorporates one or extra particularly heavy particles called protons and neutrons.

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several groups of students used the same procedure to measure the density of a specific object. the 15 different results are listed below in units of g/cm3. at a 95% confidence interval, give an estimation of the amount of random error present in any single result of this procedure.

Answers

An estimation of the amount of random error is + 1.08  g/cm³.

An error is taken into consideration randomly if the value of what's being measured every now and then goes up or once in a while goes down. a completely simple example is our blood pressure. although someone is wholesome, it is regular that their blood stress does now not continue to be exactly equal whenever it is measured.

Random errors are likewise referred to as variability, random version, or 'noise inside the device'. The heterogeneity within the human population results in exceedingly huge random variations in scientific trials. Systematic mistakes or bias refers to deviations that are not because of the threat alone.

Given data,

the mean value

Here, X = Σsum of all values/number of values

And, error = measured value - X

∴ error in the first result will be Δx = 15830 - 14,75

                                                       = + 1.08  g/cm³

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several groups of students used the same procedure to measure the density of a specific object. the 15 different results are listed below in units of g/cm3. at a 95% confidence interval, give an estimation of the amount of random error present in any single result of this procedure.

15.830

15.700

14.112

12.783

15.586

14.723

14.526

14.524

14.805

17.985

16.186

13.925

12.553

14.175

13.837

24.10 a parallel plate capacitor has plates with an area of 0.047 m2 . two slices of dielectric material are available for separating the plates. one slice has a thickness 0.0025 mm, a dielectric constant of 6.2, and a breakdown field strength of 7.15 x 106 v/m. the second slice has a thickness of .0085 mm, a dielectric constant of 10.7, and a breakdown field strength of 3.15 x 106 v/m. a) calculate the capacitance of each possible choice. which slice would produce a greater capacitance? b) what is the maximum working voltage for each capacitor? c) what is the capacitance if both slices of dielectric material are placed between the plates?

Answers

1.55 x 10⁻⁶ F is the capacitance if both slices of dielectric material are placed between the plates.

What is dielectric constant?

An indicator of a substance or material's capacity to store electrical energy is its dielectric constant. It is a measurement of how much an object can hold or concentrate an electric flux. Dielectric constant is defined mathematically as the ratio of a material's permittivity to the permittivity of free space.

For one slice, we have

thickness, d₁ = 0.0025 x 10⁻³ m

dielectric constant, k₁ = 6.2

breakdown field strength, E₁ = 7.15 x 10⁶ V/m

For second slice, we have

thickness, d₂ = 0.0085 x 10⁻³ m

dielectric constant, k₂ = 10.7

breakdown field strength, E₂ = 3.15 x 10⁶ V/m

(a) The capacitance of each possible choice which is given as :

For one slice ; C₁ = k₁o A/d₁ = (6.2) (8.85 x 10⁻¹² C²/Nm²) (0.047 m²) / (0.0025 x 10⁻³ m)

C₁ = 1031.5 x 10⁹ F

C₁ = 1.03 x 10⁻⁶ F

For second slice; C₂ = k₂0 A / d₂ = (10.7) (8.85 x 10-12 C²/Nm²) (0.047 m²) / (0.0085 x 10⁻³m)

C₂ = 523.6 x 10⁻⁹ F

C₂ = 5.23 x 10⁻⁷ F

{one slice will have a greater capacitance than second slice }

(b) The maximum working voltage for each capacitor is given as :

For one slice; E₁ = V₁ /d₁⇒ (7.15 x 10⁶ V/m) = V₁ / (0.0025 x 10⁻³ m)

V₁ = 17.8 V

For second slice; E₂ = V₂/d₂ (3.15 x 10⁶ V/m) = V₂ / (0.0085 x 10⁻³ m)

V₂ = 26.7 V

If both slices of dielectric material are placed b/w the plates, then the capacitance will be

given as:

Ctotal = C₁ + C₂ = [(1.03 x 10⁶ F) + (5.23 x 10⁻⁷ F)]

Ctotal = 1.55 x 10⁻⁷ F

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Gibbons move through the trees by swinging from successive handholds, as we have seen. To increase their speed, gibbons may bring their legs close to their bodies. How does this help them move more quickly?

Answers

By bring their legs close to their bodies, they are decreasing the length of the pendulum which help them move more quickly.

A pendulum is nothing but a body suspended from a fixed point so that it can swing back and forth under the influence of gravity.

Here in this case Gibbons are bringing their legs close to their bodies and reducing the length of the pendulum. Since as the length of the pendulum increases the speed of the movement will be reduced. By bringing their legs close to their bodies they are reducing the length and in turn their speed increase and they move quickly.

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An insulated beaker with negligible mass contains liquid water with a mass of 0.350 kg and a temperature of 78.3 ∘C. How much ice at a temperature of -24.2 ∘C must be dropped into the water so that the final temperature of the system will be 40.0 ∘C ?

Answers

Answer:

Explanation:

Given:  

c₁ = 2100 J / (kg·°C)

c₂ = 4200 J / (kg·°C)

λ₁ = 3.4·10⁵ J / kg -

t₁ = -24.2°C

t₀ = 0°C

t₂ = 78.3°C

t = 40.0°C

m₂ = 0.350 kg

___________

m₁ - ?

Ice is heated to 0°C:

Q₁ = c₁·m₁·(t₀ - t₁) = 2100·m₁·(0 - (-24.2)) = 50 820·m₁  J

The ice is melting:

Q₂ = λ·m₁ = 340 000·m₁  J

Cold water is heated:

Q₃ = c₂·m₁·(t - t₀)  = 4200·(40.0 - 0)·m₁ = 168 000 J

Hot water is cooling down:

Q₄ = c₂·m₂·(t₂ - t) = 4200·0,350·(78.3 - 40.0) = 56 300 J

Thermal badance equation:

Q₁ + Q₂ + Q₃ = Q₄

m₁·(50820 + 340 000 + 168 000) = 56 300

m₁·(3 620 000) = 56 300

Mass of ice:

m₁ = 56 300 / 3 620 000 ≈  0,016 kg  or  16 g

1294joules of work landed 100meters away how much force did the player hit the ball

Answers

A force of 12.94 N is used to move a ball 100 M. Given amount of work done is 1294 joules.

What is work?

Work in physics is the energy that is transferred to or from an item when a force is applied along a displacement. In its simplest form, it equals the product of the force's magnitude and the distance traveled for a constant force directed in the direction of motion.

Given in the question a work of  1294 joules is used to move a ball 100 M  then,

Work = force x distance. In units, Joules = Newtons x meters.

So, 1294  = F Newtons x 100 meters

Force , F  = 12.94 joules.

A force of 12.94 N is used to move a ball 100 M. Given amount of work done is 1294 joules.

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James is working with the lac operon of Escherichia coli (E. coli). He places the bacteria on a plate of growth media.

The lac Operon of E. coli is shown.

Based on the current understanding of this operon, which hypothesis would be useful for James to test?
Addition of allolactose (inducer) to the bacterial growth media should increase the speed at which the bacteria metabolize the sugar lactose.
Removal of the RNA polymerase molecule should increase the amount of bacterial growth on the plate.
Decreasing the amount of allolactose (inducer) in the bacterial growth media should increase the rate of bacterial growth.
Increasing the rate at which RNA polymerase acts will inhibit bacterial growth.

Answers

Based on the current understanding of this operon, James might find it useful to test the idea that adding all lactose to the media for bacterial growth will hasten the rate at which the bacteria break down lactose. So, choosing one is the right one.

When expressed, the lac operon is a group of genes that creates the machinery for lactose metabolism. However, it chooses to use glucose as its sugar by metabolizing it. As a result, the cell does not need to develop this machinery while glucose is accessible because it won't use it. Instead, it will metabolize the glucose. However, the E. coli must be able to absorb this lactose when we add it in place of glucose, or else it won't be able to develop using the added energy source. So, we have a few different circumstances. We do not want to express the lac operon when glucose but not lactose is present. We do want to express the lac operon when glucose is removed and lactose is added, though.

Thus, we can conclude that adding allolactose to the bacterial growth medium should speed up how quickly the bacteria break down lactose.

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Answer: Its A  Addition of allolactose (inducer) to the bacterial growth media should increase the speed at which the bacteria metabolize the sugar lactose.

Explanation: yes

a contact lens is made of plastic with an index of refraction 1.50. the lens has an outer radius of curvature of 1.65 cm and an inner radius of curvature of 5.85 cm. what is its focal length?

Answers

The lens does have an outer radius of 1.65 cm or an inner radius of 5.85 cm, with an index of refraction of 1.50. then f=20cm is the focal length.

Does it say lens or lense?

Between lens & glass, lens is the preferred spelling, whilst lense is an error. A lens can be a piece of bent glass or plastic, a component of a camera, or even the clear portion of your eye. Lense, on the other hand, is merely a typo and not a real word.

What serves as a lens?

In optics, a lens is a piece of glass or another transparent material that focuses light from an object to create an image of it.

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pre-lab form ballistic pendulum 1. what is an elastic collision? is the ballistic pendulum collision elastic? 2. show the derivation the ballistic pendulum calculation formula, equation (3).

Answers

An elastic collision is a collision wherein there may be no net loss in kinetic energy in the machine due to the collision. every momentum and kinetic power are conserved quantities in elastic collisions.

An elastic collision is a come among bodies in which the overall kinetic power of the two bodies stays identical. In an ideal, perfectly elastic collision, there may be no internet conversion of kinetic strength into other kinds which includes heat, noise, or capacity electricity.

Elastic collisions arise whilst both the momentum and kinetic energy are conserved, just like how billiard balls bounce off each different and move at the same speeds as earlier. Inelastic collisions appear whilst simplest the momentum is conserved but not the kinetic power.

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Do objects with the same velocity experience more force when stopping or when changing direction

Answers

Yes, the objects with the same velocity and mass experience more force when stopping or when changing direction.

Which type of object is easier to stop or move?

Heavier objects that have more mass are more difficult to move and stop as compared to other objects. Heavier objects have greater mass and resist more change as compared to lighter objects. For example, Pushing a bicycle or stopping them once moving. The objects having more mass, it is harder to start or stop.

The momentum of a moving object increases with the increase of mass and its speed. The heavier object moves faster and has greater momentum and it the harder to stop it. For example, if a truck and a car are traveling at the same speed, more force is needed to stop the truck because its greater mass provides more momentum.

So we can conclude that the bodies with the same velocity experience more force while stopping.

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suppose you float a large ice-cube in a glass of water, and that after you place the ice in the glass the level of the water is at the very brim. when the ice melts, the level of the water in the glass will:

Answers

The floating substance will  displaces some liquid and so when the ice melts ,there will be no change in the water level as the melted ice will occupy the same volume as it was occupying earlier.

What is Archimedes’ law of buoyancy?

Archimedes’ principle can be defined as any body when completely or partially submerged in a fluid (gas or liquid) at rest is acted upon by an upward force. It is usually equal to the weight of the fluid displaced by the body.

Apparent weight= Weight of object (in the air) – Thrust force (buoyancy)

It is used in the design  of ships and submarines. Hydrometers are based on the principle of Archimedes.

Applications of Archimedes’ principle

Submarine:Hot-air balloonHydrometer

The above case works on Archimedes principle leading to no change in water level.

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Tom chases Jerry across a 1 m high table. Jerry steps out of the way and Tom slides off the table and strikes the floor 2.2 m from the edge of the table. When Tom slid off the table, what was his horizontal speed?

Answers

The horizontal speed of Tom when it slid off the table is 4.89 m/s.

What is the time of motion of Tom?

The time of motion of Tom is the time taken for Tom to fall from the top of he table to ground level.

It can also be described as time spent in air by Tom.

h = ut + ¹/₂gt²

where;

u is the initial vertical velocity of Tom = 0t is the time of motion of Tomg is acceleration due to gravity

h = 0 + ¹/₂gt²

h = ¹/₂gt²

t = √(2h/g)

t = √(2 x 1 / 9.8)

t = 0.45 s

The horizontal speed of Tom when it slid off the table is calculated as;

v = x/t

where;

x is the horizontal distancet is the time of motion

v = (2.2 m) / (0.45 s)

v = 4.89 m/s

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the average temperature over the past 1000 years has been about 15 ∘c . from the graphs, you can conclude that earth's average temperature during the past 800,000 years has __________.

Answers

The average temperature over the past 1000 years has been about 15∘c, from the graphs, you can conclude that the earth's average temperature during the past 800,000 years has varied between about 7∘C and 19∘C.

The earth’s average temperature record illustrates the variations in ocean and atmosphere temperatures throughout a range of historical periods. Since the end of the Pleistocene glacier, many estimations of temperature have been made, especially for the current Holocene epoch. Geologic data that dates back millions of years provides some temperature information. Ice core data, which is more recent, covers the time from 800,000 years ago to the present.

Paleoclimate research spans the time from 12,000 years ago to the present. The global temperature from 1,000–2,000 years ago till the present can be determined through observations taken from ice cores and tree rings. The most thorough records date back to 1850 when meticulous thermometer-based recordings first started.

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can kinetic energy ever be negative? give a plausible reason for your answer without making use of any equations. match the words in the left column to the appropriate blanks in the sentences on the right.

Answers

Using the concepts of momentum, we got that kinetic energy never be negative. The reason behind my possible answer is -It is always greater than or equal to zero. The kinetic energy of a moving object is equals one-half product of its mass and the square of its velocity. Since the mass of the object can never be zero, the square of velocity makes the answer positive.

Kinetic Energy (Key Points)

The energy possessed by  body due to its motion.The S.I. unit is joule (kg.m2/sec2).It is directly proportional to the velocity of the object squared. This means that when the velocity of  object doubles, its K.E becomes 4 times.When K.E is directly proportional to the mass of the moving object, when the mass of  object doubles, then K.E also gets doubled.A scalar quantity is completely described by the magnitude alone.

Hence, kinetic energy never be negative, the possible reason for my answer is that- The kinetic energy of the moving object equals one-half  product of its mass and the square of its velocity. Since the mass of the object can never be zero, the square of velocity makes the answer positive.

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(Complete question) is:

can kinetic energy ever be negative? give a possible reason for your answer without making use of any equations.

When you apply a potential difference of 125 V between two parallel plates, the field between them is 4.25 × 103 N /C. How far apart are the plates?

Answers

The distance of the plates apart is 0.029 m.

What is the electric potential?

We know that the electric potential has to do with the energy that is required to move a unit positive charge from one point to another in the electric field.

Now we have the following parameters from the questions;

Voltage applied = 125 V

Electric field = 4.25 × 103 N /C

Distance apart = ??

Now we know that we have to use the formula that says;

E = V/d

E = Electric field

V = Voltage applied

d = Distance apart

When we make d the subject of the formula;

d = V/E

d = 125 V/4.25 × 10^3 N /C

d = 0.029 m

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A planet is in circular orbit around the Sun. Its distancefrom the Sun is four times the average distance of Earth from theSun. The period of this planet, in Earth years, is:_______.
A. 4
B. 8
C. 16
D. 64
E. 2.52

Answers

Answer:

B. 8 years

Explanation:

D = 1 a.u. - Distance from the Sun to the Earth in astronomical units (a.u.)

D₁ = 4 a.u - Distance from the Sun to the planet

T = 1 year - The period of the earth's revolution around the Sun

__________

T₁ - ? - The period of revolution of the planet around the Sun

Kepler's law

(T₁/T)² = (D₁/D)³

(T₁ / 1)² = (4 / 1)³

T₁² = 64

T₁ = √ 64 = 8 years

B. 8 years

The relationship between the planet's period and the Earth's period and cube root of the ratio between the planet's distance from the Sun and the Earth's distance from the Sun.

Kepler's third law is the theory applied to this puzzle.

Write the expression for the period of the planet first using Kepler's rule to take into account the period of the Earth, the distance from the Sun to the Earth, and the distance from the Sun to the planet.

To compute the period of the planet, finally, substitute the appropriate quantities. The relationship between the period and the separation between the Sun and the planet is provided by, in accordance with Kepler's third law: T² ∝ a³

T is the period in this case, and an is the separation between the planet and the Sun.

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in part c, how would the effects differ if you connected the galvanometer to the primary coil and the battery/switch to the secondary? write out your answer in a clear and well supported paragraph.

Answers

Using the theories of voltage, we got that ratio of N₂ / N₁ become 13.3 if we connect the galvanometer to the primary coil and the battery/switch to the secondary.

A transformer is the device that changes the voltage in the primary, causing a voltage to be induced in the secondary. The expression for this voltage ratio is given by

ΔV₂ = N₂ /N₁ ΔV₁

where N is the number of windings on each side of the coil and V2 and V1 are the voltages in the secondary and primary coil, respectively.

According to question  the primary voltage in this instance is 9.0 V and the secondary voltage is 120 V.

ΔV₂ /ΔV₁ = N₂ / N₁

N₂ / N₁ = 120/9

N₂ / N₁ = 13.3

Hence, if we connect the galvanometer to the primary coil and the battery/switch to the secondary, then the ratio of N₂ / N₁ become 13.3

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(Complete question) is:

A 9.0-V battery (with nonzero resistance) and switch are connected in series across the primary coil of a transformer. The secondary coil is connected to a light bulb that operates on the 120 V. a)Determine the ratio of the secondary to primary turns needed for the bell's transformer. b)Determine the ratio of the secondary to primary turns needed for the bells transformer. Ns/Np=?c), In final part how would the effects differ if you connected the galvanometer to the primary coil and the battery/switch to the secondary? write out your answer in a clear and well supported paragraph.

Some doctors recommend that men drink 3 liters of water every day. There are approximately 29. 6 milliliters in 1 fluid ounce. Which measurement is closest to the number of fluid ounces in 3 liters?.

Answers

Number of Fluid ounces in 3 Liters of water is approximately 101.

Volume of water = 3 Liters

Volume of water (in milliliters) = 3 x 1000 = 3000 ML

The volume of water in 1 ounce = 29.6 ML

Number of ounces in 3000 ML  = [tex]\frac{3000}{29.6}[/tex]

                                                     =  101.35 ounces

                                                     ≈ 101 ounces

Therefore, there are 101 fluid ounces in 3 liters of water and option

B is the correct choice.

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An arrow shot vertically upwards at a speed of 40m/s, hit the target after 2s. How high is the target? How fast did the arrow hit the target?​

Answers

Answer:

Explanation:

kinematics

d=V1*t + 1/2* a * [tex]t^{2}[/tex]

plug in your knowns into the above equation

d=40*2+1/2*(-9.8)*[tex]2^{2}[/tex]

60.4m

Vf = Vi+ a*t

Vf = 40 + (-9.8)*2

Vf = 20.4 m/s

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