The resistance decreases with the increasing temperature. The lower the current, the higher the resistance.
What is resistance?Electrical resistance, or resistance to electricity, is a force that opposes the passage of current. In this way, it indicates how difficult the process is for the current to flow. The resistance is measured in ohms.
When there is an electron difference between the two terminals, electricity flows from high to low. That flow is countered by resistance. The lower the current, the higher the resistance. The stronger the current, the lower the resistance. The resistance decreases with the increasing temperature.
Therefore, the resistance decreases with the increasing temperature.
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what is true about a pseudoscientific
Answer:
C: it ignores parts of the method within an investigation
A gray kangaroo can bound across a flat stretch of ground with each jump carrying it 8.0 m from the takeoff point.
If the kangaroo leaves the ground at a 22˚ angle, what is its takeoff speed?
What is its horizontal speed?
The kangaroo's horizontal speed will be 9.7 m/s and its departure speed will indeed be 10.65 m/s.
What is the sound's velocity?By observing the pace at which this compressed region moves through the medium, we may determine the sound speed. The sound wave travels at a speed of around 343 meters per second in low humidity at 20 degrees Celsius.
Briefing:The following equation relates the distance to the direction and initial velocity:
d = [v₀²sin2θ]/g, where θ – the angle of the jump.
Thus, v₀² = gd / (sin2θ) = (9.8×8)/0.69 = 113.62
v₀ = 10.65 m/s ( the take off speed).
The horizontal velocity equals:
vₓ = v₀cos 22° = 10.65 m/s × 0.92 = 9.7 m/s
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If there is a 0.10 kg sample of the unknown metal alloy originally at 150℃, that is placed in 1.0 kg water at 20℃, and the final temperature rises to 23.5 ℃, what is the specific heat capacity?
Specific Heat of Water: 4180 J/kg ℃
Answer:
We now introduce two concepts useful in describing heat flow and temperature change. The heat capacity ( C ) of a body of matter is the quantity of heat ( q ) it absorbs or releases when it experiences a temperature change ( ΔT ) of 1 degree Celsius (or equivalently, 1 kelvin)
C=qΔT(12.3.1)
Heat capacity is determined by both the type and amount of substance that absorbs or releases heat. It is therefore an extensive property—its value is proportional to the amount of the substance.
For example, consider the heat capacities of two cast iron frying pans. The heat capacity of the large pan is five times greater than that of the small pan because, although both are made of the same material, the mass of the large pan is five times greater than the mass of the small pan. More mass means more atoms are present in the larger pan, so it takes more energy to make all of those atoms vibrate faster. The heat capacity of the small cast iron frying pan is found by observing that it takes 18,140 J of energy to raise the temperature of the pan by 50.0 °C
Explanation:
Briefly summarize the planetary properties we can in principle measure with current detection methods. Which planetary properties we can measure using astrometric method
There are still limitations and Uncertainties in the measurements, particularly for smaller or more distant exoplanets. Ongoing research and technological advancements continue to improve our ability to characterize exoplanetary properties.
With current detection methods, we can measure several properties of planets outside our solar system (exoplanets). These properties include:
Mass: Exoplanet mass can be determined through radial velocity measurements. As a planet orbits its host star, its gravitational pull causes the star to move slightly. By measuring the star's radial velocity changes, we can estimate the mass of the planet.
Size and Radius: The size or radius of an exoplanet can be measured using the transit method. When a planet passes in front of its host star, it causes a slight decrease in the star's brightness. By analyzing these periodic brightness dips, we can determine the size and radius of the planet.
Orbital Period: The orbital period of an exoplanet is the time it takes to complete one orbit around its host star. By observing the periodic changes in a star's brightness or radial velocity, we can determine the orbital period of the planet.
Orbital Eccentricity: Eccentricity refers to the deviation from a perfectly circular orbit. Changes in the radial velocity or transit duration can provide insights into the eccentricity of an exoplanet's orbit.
Atmosphere Composition: Spectroscopic analysis can be used to detect the presence of certain gases or elements in the atmosphere of an exoplanet. By studying the absorption or emission lines in the star's light passing through the planet's atmosphere, we can infer its composition.
Astrometric methods primarily focus on measuring the position and motion of stars. However, they can also provide some information about exoplanets, including:
Planet Mass: By observing the wobbling motion of a star due to the gravitational pull of an orbiting planet, astrometry can help estimate the planet's mass.
Orbital Inclination: Astrometry can measure the angle at which an exoplanet's orbit is inclined relative to our line of sight. This information can aid in understanding the orientation and dynamics of the planetary system.
It's worth noting that while current detection methods have advanced significantly, there are still limitations and uncertainties in the measurements, particularly for smaller or more distant exoplanets. Ongoing research and technological advancements continue to improve our ability to characterize exoplanetary properties.
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slove these question
Answer:
the answer would be left side a to right side b left side b to left side c left side c to left side d left side d to right side e
Explanation:
Please i need the answers now. a) Explain why i) More thermal energy is required to raise the temperature of 2 Kg of a substance by 10°C than is required to raise the temperature of 1 Kg of the same substance by 10°C. ii) A solid expand when heated.
Answer: find the answer in the explanation
Explanation:
1.) More thermal energy will be required to raise the temperature of 2 Kg of a substance by 10°C than is required to raise the temperature of 1 Kg of the same substance by 10°C.
Because the thermal energy depends on the mass of an object.
If the two materials are the same, then they will have the same specific heat capacity. Thermal energy can be expressed as:
H = MCØ
Where
M = mass of the body
C = specific heat capacity
Ø = change in temperature
H = thermal energy
If u substitute the two values of masses into the formula above, then, the mass of 2kg will produce higher thermal energy .
Il.) Heat causes expansion. Using kinetic theory to explain this, the molecules of solid material are in a fixed pattern, held together with strong bonds. When heat is applied to the solid, the molecules will start vibrating in their fixed position. As a result of this, the bond between the molecules begins to loss. This eventually lead to expansion of solid.
When you push a box across the floor what force must your push be stronger than?
When you push a box across the floor, your push must be stronger than the force of friction.
Friction is a force that opposes motion. The frictional force is exerted by a surface in contact with a moving object, opposing its motion. Frictional force is essential for walking on the ground or moving the vehicle on the road.The frictional force depends on the texture of the two surfaces in contact, the force pressing them together, and the speed at which they move relative to one another.
The rougher the surfaces, the greater the frictional force required to move them. A greater force is required to move objects that are heavier or pressing more firmly into the surface.To overcome the force of friction and push the box across the floor, you must apply a force that is stronger than the force of friction. If the force you apply is not strong enough, the box will not move or will move at a slower rate.
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Gretchen is proposing to present the sales from her lemonade stand as a pie chart, tracking how much she sells each day to track the overall trend. Explain why this plan won’t work and what she could use instead.
Consider the kind of job you imagine yourself having when you are in your 40s. Choose two examples of ePortfolio appropriate content for someone in that position.
Provide an example of a situation or scenario where a spreadsheet would benefit from the implementation of the SUM function.
Provide an example of a scenario or situation where including a hyperlink to another spreadsheet would make sense.
The plan to present the sales from her lemonade stand as a pie chart may not work because a pie chart is used to show how a whole unit is divided into parts.
What is pie chart?A pie chart is a circular statistical graphic divided into slices to show numerical proportion. The arc length of each slice in a pie chart is proportional to the quantity it represents.
Because a pie chart is used to show how a whole unit is divided into parts, her plan to present the sales from her lemonade stand may not work.
The whole unit in this case is the total sales for a specific time period (e.g., a week), and the parts are the amount of lemonade sold each day.
Example ePortfolio content for someone in a future job:
Presentation skillsProject managementExample scenario where the SUM function would benefit a spreadsheet:
A budgeting spreadsheet with different categories for expenses, such as housing, transportation, and food.Example scenario where including a hyperlink to another spreadsheet would make sense:
A sales report that includes data for multiple regions or departments. Each region or department could have its own spreadsheet with more detailed data, and a hyperlink could be included in the main report to easily access this additional information.Thus, this can be concluded regarding the given scenario.
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When a crest of the wave passes point P, a watch reads 0 s. When the next crest passes point P, the watch reads 10 s.
The frequency of the wave is the inverse of time period. Here, the period of the wave is 10 seconds. Hence, the 0.4 Hz.
What is frequency ?Frequency of a wave is the number of wave cycles per unit time. Frequency is the inverse of the time period of the wave. Hence, it has the unit of s⁻¹ which is equivalent to Hz.
The higher frequency of a wave indicates more number of wave cycles in a short time. Frequency is directly proportional to the energy and inversely proportional to the wavelength.
Given the time period of the wave = 10 seconds
then frequency = 1/10 s = 0.1 Hz.
Therefore, the frequency of the wave is 0.1 Hz.
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Your complete question given below:
When a crest of the wave passes point P, a watch reads 0 s. When the next crest passes point P, the watch reads 10 s. What is the frequency of the wave ?
If dan ran the 100m dash in 10.23s. What was his average speed during the race? (Round to the nearest tenth of a second)
Answer:
.1 seconds per meter
Explanation:
I am going to assume they are asking for the average time per 1 meter.
Because it took 10.23 seconds to run 100 meters, we are going to divide 10.23 by 100. This number will be the time per 1 meter.
To divide by 100, we will move the decimal point over by two. That will give us .1023 seconds.
The question asks to round to the nearest tenth, so we round it to .1 seconds.
*Just some trivia: Danie van Blerk does in fact have a time of 10.23 seconds. He has the 1073rd best 100 meter dash time. First place, Usain Bolt, has a time of 9.58 seconds.
Benda setinggi 3 cm diletakkan pada jarak 10 cm di depan cermin cekung yang berjari-jari
kelengkungan 10 cm. Tentukan:
Jarak bayangan
Perbesaran bayangan
Sifat bayangan
Answer:
a) Shadow distance
10 cm in front of the mirror.
b) Zoom in the shadow
The shadow formed is the same height as the object and is placed also at the centre of curvature of the mirror as shown in the attached image to this solution.
c) The nature of the shadow
The shadow formed is real, inverted, same size as the object and formed at the centre of curvature.
Explanation:
English Translation
Objects as high as 3 cm are placed at a distance of 10 cm in front of a concave mirror with 10 cm curvature. Determine:
a) Shadow distance
b) Zoom in the shadow
c) The nature of the shadow
Solution
The mirror equation is given as
(1/f) = (1/v) + (1/u)
f = focal length of the mirror = (radius of curvature)/2 = 10/2 = 5 cm
v = image distance = ?
u = object distance = 10 cm
We can then calculate the shadow' s distance from the mirror thus
(1/5) = (1/v) + (1/10)
(1/v) = 0.2 - 0.1 = 0.1
v = (1/0.1) = 10 cm
b) Zoom in the shadow
Since the object is placed at the centre of curvature, as shown in the attached image, the image is formed at a point of intersection of rays. The image formed is the same height as the object and is placed also at the centre of curvature of the mirror.
c) The nature of the shadow
Since the mirror is a concave mirror, the image is real and formed in front of the mirror. The image is also inverted and formed at the centre of curvature of the mirror.
Hope this Helps!!!
An air-core solenoid with 68 turns is 8.00 cm long and has a diameter 1.20 cm. When the current in wire is 0.770 A, ) what is the inductance of the solenoid? ) what is the energy stored in the inductor?
a) The inductance of the solenoid is approximately 0.0068 H.
b) The energy stored in the inductor is approximately 0.012 J.
a) The inductance (L) of an air-core solenoid can be calculated using the formula L = (μ₀n²A) / ℓ, where μ₀ is the permeability of free space (4π × 10⁻⁷ T·m/A), n is the number of turns, A is the cross-sectional area of the solenoid, and ℓ is the length of the solenoid.
To calculate the cross-sectional area, we need the diameter (d) of the solenoid. The formula for the cross-sectional area of a circle is A = (π/4)d². Given the diameter, we can calculate the cross-sectional area.
Using the given values of the number of turns, length, diameter, and the constants μ₀ and π, we can calculate the inductance of the solenoid.
b) The energy stored in an inductor (W) can be calculated using the formula W = (1/2)LI², where L is the inductance of the solenoid and I is the current flowing through the wire.
Using the calculated value of the inductance from part a and the given current, we can calculate the energy stored in the inductor.
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Newton's Second Law of Motion says that as an object's mass and acceleration increase, its___
will increase as well.
a. Gravity
b. Force
C. Motion
d. Energy
Answer:force
Explanation:
b
Answer:
The answer is B. Force
Explanation:
Newton's Second Law of Motion says that as an object's mass and acceleration increase, its Force will increase as well.
The gravitational force between two volleyball players is 3. 9 × 10^-7 N. If the kasses of the players are 63 kg and 78 kg, what is their separation?
The separation between two volleyball players (gravitational force between two volleyball players is 3. 9 × 10⁻⁷, they are 63 kg and 78 kg) = 3.585 x 10⁻³ meters.
The formula for gravitational force between two objects is:
F = Gm1m2/r²
Where F is the force
G is the gravitational constant (6.67 x 10⁻¹¹Nm²/kg²)
m₁ and m₂ are the masses of the objects, and
r is the separation between them.
Hence,
r = \(\sqrt{\frac{Gm1m2}{F} }\)
r = \(\sqrt{\frac{6.67(10^{11}) (63)(78) }{3.9 (10^{-7}) } }\)
= 0.003585 meters or 3.585 x 10⁻³ meters.
Therefore, the separation between the two volleyball players is 3.585 x 10⁻³ meters.
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How does the
gravitational attraction
between people
compare to the gravitational
attraction between the
people and Earth?
Attraction between people is Gravitation while people and earth is Gravity.
Every body in the universe attracts every other body with a force called force of gravitation. The attraction between sun and earth , attraction between table and chair lying in a room ..etc. are examples of gravitation. Gravitation is the weakest of four basic forces in nature. However , its most important force as it has its contribution in initiating the birth of stars and controlling the structure and evolution of entire universe.
Gravity is the special case of gravitation. If one of the attraction body is earth then gravitation is gravity.
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A wave has a frequency of 500 Hz and a wavelength of 20m. At what speed is this wave traveling?
A. 1000 Hz
B. 1000 m
C. 10,000 m
D. 10,000m/s
Pls help!!!
Answer:
may be answer is 1000 HZ
Ultraviolet light is visible to bumblebees but not humans. if the wavelength of *
uv light is 100nm, what is the frequency of the light?
The frequency of the ultraviolet light given that its wavelength is 100 nm is 3×10¹⁵ Hz
Data obtained from the question Wavelength (λ) = 100 nm = 100×10¯⁹ mVelocity of light (v) = 3×10⁸ m/sFrequency (f) =? How to determine the frequency of the lightThe frequency of the light can obtain as illustrated below:
v = λf
3×10⁸ = 100×10¯⁹ × f
Divide both side by 100×10¯⁹
f = 3×10⁸ / 100×10¯⁹
f = 3×10¹⁵ Hz
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What are 20 examples of pure substances?
The pure substances are, Water, Oxygen, Hydrogen, Nitrogen, Carbon dioxide, Gold, Silver, Iron, Copper, Aluminum, Graphite, Diamond, Sulfur, Chlorine, Sodium chloride, Sucrose, Glucose, Ethanol, Methane, Propane.
A pure substance is a material that consists of only one type of particle or molecule, which has a fixed chemical composition and distinct physical properties. These substances can be either elements, such as oxygen or gold, or compounds, such as water or table salt.
Pure substances cannot be broken down into simpler substances by physical or mechanical means, but they can be separated into their individual components through chemical reactions or methods such as distillation or filtration.
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If the incident beam of light in the figure below makes an angle (20 degrees) from the normal. What is the angle between the reflected ray and the mirror in the figure below?
Answer:
the reflected angle must be 20º
Explanation:
The surface on which the ray of light falls is a mirror, therefore the law of reflection must be fulfilled, which establishes that the incident angle is equal to the reflected angle.
Therefore, if the incident angle is 20º, the reflected angle must be 20º receiving the normal.
There is a 5mA flowing through an 18k register. What is the voltage drop?
The voltage drop across the 18 kΩ resistor is 90 volts. This means that when a current of 5 mA flows through an 18 kΩ resistor, there is a potential difference of 90 volts across the resistor.
To calculate the voltage drop across a resistor, Ohm's Law can be applied. Ohm's Law states that the voltage (V) across a resistor is equal to the product of the current (I) flowing through it and the resistance (R) of the resistor. The formula for Ohm's Law is V = I * R.
Given:
Current (I) = 5 mA = 5 * 10^(-3) A
Resistance (R) = 18 kΩ = 18 * 10^(3) Ω
Using Ohm's Law, we can calculate the voltage drop (V):
V = I * R
= (5 * 10^(-3) A) * (18 * 10^(3) Ω)
= 90 V
Therefore, the voltage drop across the 18 kΩ resistor is 90 volts. This means that when a current of 5 mA flows through an 18 kΩ resistor, there is a potential difference of 90 volts across the resistor.
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In dealing with every task assigned, why is planning important for a student?
Answer:
Having a planner gives students freedom to plan, organize and keep track of their work to the best of their abilities and requirements. This has a dual benefit in that it increases the student's accountability to the commitments planned as well as provides them with a structure that contributes to their success.
Explanation:
An elephant pushes with 2000 N on a load of trees. If it takes the elephant 45 seconds to move trees 15 meters, how much power did the elephant generate?
Answer:
Power generate by elephant = 666.67 W
Explanation:
Given:
Force = 2,000 N
Change in time = 45 Seconds
Distance = 15 meter
Find:
Power generate by elephant ?
Computation:
⇒ Work Done = Force × Distance
⇒ Work Done = 2,000 × 15
⇒ Work Done = 30,000
⇒ Power = Work Done / Time taken
⇒ Power generate by elephant = 30,000 / 45 seconds
⇒ Power generate by elephant = 666.67 W
An athlete runs 140 m across a level field at an angle of 45.0° north of east. What is the north component of this displacement?
Displacement is a vector quantity thus, having different directional component. The component of the given displacement to the north is 98.99 m.
What is displacement ?The displacement is the measure of how long and in which direction an object is moved from the starting position. Displacement is a vector quantity thus, characterized by a magnitude and direction.
In physics, displacement is the product of velocity and time. The vertical component of the displacement = d sin θ
horizontal component = d cos θ.
The component to the north for a displacement of 140m with the angle of 45° is = 140 × sin 45 = 98.99 m.
Therefore, the north component of the displacement is about 99 m.
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A copper ring is attached to a string and allowed to swing as a pendulum between two permanent magnets as shown. The north pole of one magnet faces the south pole of the other magnet. If the magnetic field is directed from the front pole to the back pole, what is the direction of the induced current, if any, as the ring enters the space between the magnetic poles?.
Therefore, the direction of the induced current will be clockwise as viewed from above.
Based on Faraday's Law of electromagnetic induction, an induced current will be generated in the copper ring as it enters the space between the magnetic poles. The direction of the induced current can be determined using Lenz's Law, which states that the direction of the induced current will be such that it opposes the change in magnetic flux that produced it.
As the copper ring enters the magnetic field, the magnetic flux passing through the ring increases. To oppose this increase in magnetic flux, an induced current will flow in the copper ring in a direction such that it produces a magnetic field that opposes the magnetic field of the permanent magnets. This means that the induced current will flow in a direction that creates a north pole at the front of the copper ring and a south pole at the back of the copper ring.
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If a star collapses to a tenth its size, gravitation at its surface increases by?
If a star collapses to a tenth its size, gravitation at its surface increases by 100 times as much.
The contraction of an astronomical object caused by its own gravity, which tends to pull stuff inward toward the center of gravity, is known as gravitational collapse. A cloud of interstellar matter gradually collapses under the influence of gravity to form a star. The temperature rises as a result of the compression brought on by the collapse until thermonuclear fusion takes place in the star's core. At this point, the collapse gradually comes to an end as the outward heat pressure equalizes the gravitational forces. Following that, the star is in a condition of dynamic equilibrium. A star will repeatedly collapse once all of its energy sources have been used up until it reaches a new equilibrium condition.
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Select the word that completes each statement
The word that completes each statement are as follows:
A force is a push or pull.An unbalanced force changes an object’s motion.Objects have inertia and resist forces that try to change their motion.Newton's 3rd Law of Motion: If one object exerts a force on a second object, the second object exerts a force on the first object that is equal in magnitude and opposite in direction.If you kick a soccer ball, and the soccer ball exerts an equal but opposite force on your foot, the action force is the foot.If you kick a soccer ball, and the soccer ball exerts an equal but opposite force on your foot, the reaction force is the ball.Newton's second law states that when an unbalanced force acts on an object, the object will be accelerated.What is a force?In Science, a force can be defined as a push or pull of an object or physical body, which typically results in a change of motion (acceleration), especially due to the interaction of the object with another.
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A cross-country skier moves 36 meters eastward, then 44
meters westward, and finally 22 meters eastward.
For this motion, what is the distance moved?
Tap button at left to enter
Distance = 102
answer using our built-in
number pad.
What is the magnitude and direction of the
displacement?
Magnitude =
Tap button at left to enter
answer using our built-in
number pad
Dir'n =
(Tap field to change.)
Check Answers
Answer:
a) 102 meters
b) 14 meters
c) The direction is eastward.
Explanation:
Distance is said to be the length between two points. It is a scalar quantity.
a) The distance moved = 36 + 44 + 22
= 102 meters
b) Displacement is the distance moved in a specified direction.
Representing the distance moved with specific direction as a directed number, 36 meters eastward = +36, 44 meters westward = -44, and 22 meters eastward = +22
/Displacement/ = +36 -44 +22
= +58-44
= 14
The magnitude of the displacement is 14 meters.
c) The direction is eastward.
So that the magnitude of displacement and his direction is 14 meters eastward.
what is the name of the side of angle x
Is air in a balloon solid or gas?
gas is the answer for this question
can you make me a brainlist
1. What is a radioactive isotope
Answer:
A radioactive isotope, also known as a radioisotope, radionuclide, or radioactive nuclide, is any of several species of the same chemical element with different masses whose nuclei are unstable and dissipate excess energy by spontaneously emitting radiation in the form of alpha, beta, and gamma rays.
Explanation:
its right dawg