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Answered on 20 Apr Learn Physics

Monali Verma

Physics online tutor with 1 year experience of teaching virtually.

https://vz-3ad30922-ba4.b-cdn.net/5c5745eb-a83f-462e-81ce-efa283abc822/play_480p.mp4
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Answered on 07/11/2022 Learn Physics

Shruti Sharad

Ex Aakash faculty, 12 th, Jee mains, Neet, Advance.

We are able to see the color whose visible ray falls into our eyes. The rays from the sun get scattered by small dust particles or water droplets or other molecules in the air . Blue light gets scattered the most because of its shorter wavelength. So, even though rays ofndifferent colors fall into our... read more

We are able to see the color whose visible ray falls into our eyes. The rays from the sun get scattered by small dust particles or water droplets or other molecules in the air . Blue light gets scattered the most because of its shorter wavelength. So, even though rays ofndifferent colors fall into our eyes.. blue rays are lot more in no. So the optical nerve of our eye recieves the signal for blue the most.

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Answered on 28 Apr Learn Unit 10-Oscillation & Waves

Deepika Agrawal

"Balancing minds, one ledger at a time." "Counting on expertise to balance your knowledge."

The speed of sound in a tissue is 1.7 km/s. The wavelength of sound in tissue is close to. 4×10−4 m.
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Answered on 28 Apr Learn Chapter 4-Motion in a Plane

Deepika Agrawal

"Balancing minds, one ledger at a time." "Counting on expertise to balance your knowledge."

Given, the actual path length travelled is 23 km, displacement is 10 km and the time taken is 28 min. (a) Average speed of the taxi is given as, v avg = Total Path length Time Here, s is the total path length Substitute the values in above equation. v avg = Total Path length Time... read more

Given, the actual path length travelled is 23 km, displacement is 10 km and the time taken is 28 min.

(a)

Average speed of the taxi is given as,

v avg = Total Path length Time

Here, s is the total path length

Substitute the values in above equation.

v avg = Total Path length Time = 23 km ( 28 min )( 1 h 60 min ) =49.3  km/h

Hence, the average speed of the taxi is 49.3  km/h .

(b)

Magnitude of the average velocity is given as,

v avg = Displacement Time

Substitute the values in the above equation.

v avg = Displacement Time = 10 km ( 28 min )( 1 h 60 min ) =21.4  km/h

(c)

From the calculation in (a) and (b), it is obtained that the average speed is not equal to the magnitude of average velocity.

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Answered on 28 Apr Learn Chapter 4-Motion in a Plane

Deepika Agrawal

"Balancing minds, one ledger at a time." "Counting on expertise to balance your knowledge."

Radius of the loop, r=1km=1000m Speed of the aircraft,v=900km/h=900×5/18=250m/s Centripetal acceleration, ac=v2r =(250)21000=62.5m/s2 Acceleration due to gravity, g=9.8m/s2 Ratio: acg=62.5/9.8=6.38 ac=6.38g read more
Radius of the loop, r=1km=1000m
Speed of the aircraft,v=900km/h=900×5/18=250m/s
Centripetal acceleration, ac=v2r
 
=(250)21000=62.5m/s2
 
Acceleration due to gravity, g=9.8m/s2
 
Ratio: acg=62.5/9.8=6.38
ac=6.38g
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Answered on 28 Apr Learn Unit 3-Laws of Motion

Deepika Agrawal

"Balancing minds, one ledger at a time." "Counting on expertise to balance your knowledge."

Velocity of ball u=54 km/h=54×518=15 m/s The ball struck by the bat is deflected back such that, Total angle =450 Now the initial momentum of the ball is mucosθ=0.15×54×1000×cos22.53600 =0.15×15×0.9239 along NO, FInal momentum of the ball is mucosθ Along... read more
Velocity of ball u=54 km/h=54×518=15 m/s
The ball struck by the bat is deflected back such that,
Total angle =450
Now the initial momentum of the ball is mucosθ=0.15×54×1000×cos22.53600
=0.15×15×0.9239 along NO,
FInal momentum of the ball is mucosθ Along ON,
Thus Impulse is equal to the change in momentum,
=mucosθ(mucosθ)=2mucosθ=2×0.15×15×0.9239=4.16kgm/s
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Answered on 28 Apr Learn Unit 5-Work, Energy and Power

Deepika Agrawal

"Balancing minds, one ledger at a time." "Counting on expertise to balance your knowledge."

Here, Volume of water =30 m3t=15 min=15×60 s=900 s;Height,h=40 mEfficiency, η=30%Density of water =103kg m−3∴ Mass of water pumped =Volume×Density=(30 m3)(103 kg m−3)=3×104kgPoutput=Wt=mght=(3×104kg)(10 ms−2)(40 m)900 s=43×104WEfficiency, η=PoutputPinputPinput=Poutputη=4×1043×30100=49×105=44.4×103W=44.4... read more

Here, Volume of water =30 m3
t=15 min=15×60 s=900 s;Height,h=40 m
Efficiency, η=30%
Density of water =103kg m3
 Mass of water pumped =Volume×Density
=(30 m3)(103 kg m3)=3×104kg
Poutput=Wt=mght=(3×104kg)(10 ms2)(40 m)900 s
=43×104W
Efficiency, η=PoutputPinput
Pinput=Poutputη=4×1043×30100=49×105
=44.4×103W=44.4 kW.

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Answered on 28 Apr Learn Unit 4-Motion of System of Particles

Deepika Agrawal

"Balancing minds, one ledger at a time." "Counting on expertise to balance your knowledge."

Linear momentum of particle, →p=px^i+py^j+pz^k Position vector of the particle, →r=x^i+y^j+z^k Angular momentum, →l=→r×→p ⟹lx^i+ly^j+lz^k=^i(ypz−zpy)−^j(xpz−zpx)+^k(xpy−ypx) Therefore on comparison of coefficients, lx=ypz−zpy ly=zpx−xpz lz=xpy−ypx The... read more

Linear momentum of particle, p=px^i+py^j+pz^k

Position vector of the particle, r=x^i+y^j+z^k
Angular momentum, l=r×p
lx^i+ly^j+lz^k=^i(ypzzpy)^j(xpzzpx)+^k(xpyypx)
Therefore on comparison of coefficients,
lx=ypzzpy
ly=zpxxpz
lz=xpyypx
The particle moves in the x-y plane. Hence the z component of the position vector and linear momentum vector becomes zero.
z=pz=0
Thus lx=0
ly=0
lz=xpyypx
Thus when particle is confined to move in the x-y plane, the angular momentum of particle is along the z-direction.
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Answered on 28 Apr Learn Chapter 9-Mechanical Properties of Solids

Deepika Agrawal

"Balancing minds, one ledger at a time." "Counting on expertise to balance your knowledge."

Mass of the big structure, M = 50,000 kgInner radius of the column, r = 30 cm = 0.3 mOuter radius of the column, R = 60 cm = 0.6 mYoung’s modulus of steel, Y=2×1011Pa Total force exerted, F=Mg=50000×9.8N Stress = Force exerted on a single column =50000×9.84=122500NYoung’s... read more

Mass of the big structure, M = 50,000 kg
Inner radius of the column, r = 30 cm = 0.3 m
Outer radius of the column, R = 60 cm = 0.6 m
Young’s modulus of steel, Y=2×1011Pa

Total force exerted, F=Mg=50000×9.8N

Stress = Force exerted on a single column =50000×9.84=122500N
Young’s modulus, Y=StressStrain

Strain =(F/A)Y
Where,
Area, A=π(R2r2)=π((0.6)2(0.3)2)

Strain =122500/[π((0.6)2(0.3)2)×2×1011]=7.22×107

Hence, the compressional strain of each column is 7.22×107.

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Answered on 28 Apr Learn Unit 8-Thermodynamics

Deepika Agrawal

"Balancing minds, one ledger at a time." "Counting on expertise to balance your knowledge."

Water is flowing at a rate of 3.0 litre/min.The geyser heats the water, raising the temperature from 27oC to 77oC.Initial temperature, T1=27oCFinal temperature, T2=77oCRise in temperature,T=T1−T2=77−27=50oCHeat of combustion =4×104J/gSpecific heat of water, C=4.2J/goCMass of flowing... read more

Water is flowing at a rate of 3.0 litre/min.
The geyser heats the water, raising the temperature from 27oC to 77oC.
Initial temperature, T1=27oC
Final temperature, T2=77oC
Rise in temperature,T=T1T2=7727=50oC
Heat of combustion =4×104J/g
Specific heat of water, C=4.2J/goC
Mass of flowing water, m= 3.0 litre/min = 3000 g/min
Total heat used, Q=mcT
=3000×4.2×50
=6.3×105J/min
Rate of consumption =6.3×105/(4×104) = 15.75 g/min.

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