Physics-
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Question

The nuclear charge (Ze) is non-uniformly distributed within a nucleus of radius R The (charge per unit volume) rho left parenthesis r right parenthesischarge density is dependent only on the radial distance r from the centre of the nucleus, as shown The electric field is only along radial direction
For a = 0, the value of d(maximum value of rho as shown in the figure) is :

  1. fraction numerator 3 Z e over denominator 4 pi R to the power of 3 end exponent end fraction    
  2. fraction numerator 3 Z e over denominator pi R to the power of 3 end exponent end fraction    
  3. fraction numerator 4 Z e over denominator 3 pi R to the power of 3 end exponent end fraction    
  4. fraction numerator Z e over denominator 3 pi R to the power of 3 end exponent end fraction    

The correct answer is: fraction numerator 3 Z e over denominator pi R to the power of 3 end exponent end fraction

Related Questions to study

General
physics-

The nuclear charge (Ze) is non-uniformly distributed within a nucleus of radius R The (charge per unit volume) rho left parenthesis r right parenthesischarge density is dependent only on the radial distance r from the centre of the nucleus, as shown The electric field is only along radial direction

The electric field at r = R is :

The nuclear charge (Ze) is non-uniformly distributed within a nucleus of radius R The (charge per unit volume) rho left parenthesis r right parenthesischarge density is dependent only on the radial distance r from the centre of the nucleus, as shown The electric field is only along radial direction

The electric field at r = R is :

physics-General
General
physics-

Consider radioactive decay of A to B which , further decays either to X or Y, andlambda subscript 1 end subscript comma lambda subscript 2 end subscript comma lambda subscript 3 end subscript are decay constants for A to B decay, B to X decay and B to Y decay respectively At t =0, the number of nuclei of A,B,X and Y are N subscript 0 end subscript , N subscript 0 end subscript zero and zero respectively N subscript 1 end subscript comma N subscript 2 end subscript comma N subscript 3 end subscript text  and  end text N subscript 4 end subscript are the number of nuclei of A,B,X and Y are at any instant t.

At t equals infinity, which of following is incorrect?

Consider radioactive decay of A to B which , further decays either to X or Y, andlambda subscript 1 end subscript comma lambda subscript 2 end subscript comma lambda subscript 3 end subscript are decay constants for A to B decay, B to X decay and B to Y decay respectively At t =0, the number of nuclei of A,B,X and Y are N subscript 0 end subscript , N subscript 0 end subscript zero and zero respectively N subscript 1 end subscript comma N subscript 2 end subscript comma N subscript 3 end subscript text  and  end text N subscript 4 end subscript are the number of nuclei of A,B,X and Y are at any instant t.

At t equals infinity, which of following is incorrect?

physics-General
General
physics-

Consider radioactive decay of A to B which , further decays either to X or Y, andlambda subscript 1 end subscript lambda subscript 2 end subscript lambda subscript 3 end subscript are decay constants for A to B decay, B to X decay and B to Y decay respectively At t =0, the number of nuclei of A,B,X and Y are N subscript 0 end subscript , N subscript 0 end subscript zero and zero respectively N subscript 1 end subscript comma N subscript 2 end subscript comma N subscript 3 end subscript text  and  end text N subscript 4 end subscript are the number of nuclei of A,B,X and Y are at any instant t.

The number of nuclei of B will first increase and then after a maximum value, it decreases for

Consider radioactive decay of A to B which , further decays either to X or Y, andlambda subscript 1 end subscript lambda subscript 2 end subscript lambda subscript 3 end subscript are decay constants for A to B decay, B to X decay and B to Y decay respectively At t =0, the number of nuclei of A,B,X and Y are N subscript 0 end subscript , N subscript 0 end subscript zero and zero respectively N subscript 1 end subscript comma N subscript 2 end subscript comma N subscript 3 end subscript text  and  end text N subscript 4 end subscript are the number of nuclei of A,B,X and Y are at any instant t.

The number of nuclei of B will first increase and then after a maximum value, it decreases for

physics-General
parallel
General
physics-

Consider radioactive decay of A to B which , further decays either to X or Y, andlambda subscript 1 end subscript lambda subscript 2 end subscript lambda subscript 3 end subscript are decay constants for A to B decay, B to X decay and B to Y decay respectively At t =0, the number of nuclei of A,B,X and Y are N subscript 0 end subscript , N subscript 0 end subscript zero and zero respectively N subscript 1 end subscript comma N subscript 2 end subscript comma N subscript 3 end subscript text  and  end text N subscript 4 end subscript are the number of nuclei of A,B,X and Y are at any instant t.

The net rate of accumulation of B at any instant is

Consider radioactive decay of A to B which , further decays either to X or Y, andlambda subscript 1 end subscript lambda subscript 2 end subscript lambda subscript 3 end subscript are decay constants for A to B decay, B to X decay and B to Y decay respectively At t =0, the number of nuclei of A,B,X and Y are N subscript 0 end subscript , N subscript 0 end subscript zero and zero respectively N subscript 1 end subscript comma N subscript 2 end subscript comma N subscript 3 end subscript text  and  end text N subscript 4 end subscript are the number of nuclei of A,B,X and Y are at any instant t.

The net rate of accumulation of B at any instant is

physics-General
General
physics-

The mass of nucleus blank subscript Z end subscript X to the power of A end exponent is less than the sum of the mases of (A - Z) number of neutrons and Z number of protons in the nucleus The energy equivalent to the corresponding mass difference is known as the binding energy of the nucleus A heavy nucleus of mass M can break into two light nuclei of mass m1 and m2 M only if open parentheses m subscript 1 end subscript plus m subscript 2 end subscript close parentheses less than M Also two light nuclei of mass m3 and m4 can undergo complete fusion and form a heavy nucleus of mass M “only if open parentheses m subscript 3 end subscript plus m subscript 4 end subscript close parentheses greater than M to the power of ´ ´ end exponent The masses of some netural atoms are given in the table below.

The kinetic energy (in keV) of the alpha particle, when the nucleus at rest undergo alpha decay, is

The mass of nucleus blank subscript Z end subscript X to the power of A end exponent is less than the sum of the mases of (A - Z) number of neutrons and Z number of protons in the nucleus The energy equivalent to the corresponding mass difference is known as the binding energy of the nucleus A heavy nucleus of mass M can break into two light nuclei of mass m1 and m2 M only if open parentheses m subscript 1 end subscript plus m subscript 2 end subscript close parentheses less than M Also two light nuclei of mass m3 and m4 can undergo complete fusion and form a heavy nucleus of mass M “only if open parentheses m subscript 3 end subscript plus m subscript 4 end subscript close parentheses greater than M to the power of ´ ´ end exponent The masses of some netural atoms are given in the table below.

The kinetic energy (in keV) of the alpha particle, when the nucleus at rest undergo alpha decay, is

physics-General
General
physics-

The mass of nucleus blank subscript Z end subscript X to the power of A end exponent is less than the sum of the mases of (A - Z) number of neutrons and Z number of protons in the nucleus The energy equivalent to the corresponding mass difference is known as the binding energy of the nucleus A heavy nucleus of mass M can break into two light nuclei of mass m1 and m2 M only if open parentheses m subscript 1 end subscript plus m subscript 2 end subscript close parentheses less than M Also two light nuclei of mass  m3 and m4 can undergo complete fusion and form a heavy nucleus of mass M “only if open parentheses m subscript 3 end subscript plus m subscript 4 end subscript close parentheses greater than M to the power of ´ ´ end exponent The masses of some netrural atoms are given in the table below.

The correct statement is

The mass of nucleus blank subscript Z end subscript X to the power of A end exponent is less than the sum of the mases of (A - Z) number of neutrons and Z number of protons in the nucleus The energy equivalent to the corresponding mass difference is known as the binding energy of the nucleus A heavy nucleus of mass M can break into two light nuclei of mass m1 and m2 M only if open parentheses m subscript 1 end subscript plus m subscript 2 end subscript close parentheses less than M Also two light nuclei of mass  m3 and m4 can undergo complete fusion and form a heavy nucleus of mass M “only if open parentheses m subscript 3 end subscript plus m subscript 4 end subscript close parentheses greater than M to the power of ´ ´ end exponent The masses of some netrural atoms are given in the table below.

The correct statement is

physics-General
parallel
General
physics-

From the figure describing photoelectric effect we may infer correctly that

From the figure describing photoelectric effect we may infer correctly that

physics-General
General
physics-

Figure represents a graph of kinetic energy of most energetic photoelectrons, Kmax (in eV), and frequency (v) for a metal used as cathode in photoelectric experiment. The threshold frequency of light for the photoelectric emission from the metal is

Figure represents a graph of kinetic energy of most energetic photoelectrons, Kmax (in eV), and frequency (v) for a metal used as cathode in photoelectric experiment. The threshold frequency of light for the photoelectric emission from the metal is

physics-General
General
chemistry-

OxidationstateofFeincompound(F)is:

OxidationstateofFeincompound(F)is:

chemistry-General
parallel
General
chemistry-

Compound(A)is:

Compound(A)is:

chemistry-General
General
chemistry-

An aqueous solution of an inorganic compound (X)givesthe followingreactions:
i) Withan aqueous solutionof B a C l subscript 2 end subscript,aprecipitateinsolubleindiluteHClisobtained

ii) Addition of excess of KI gives a brown precipitate which turns white on addition of excess hypo solution

iii) With an aqueous solution of potassium ferrocyanide a chocolate colored ppt is obtained.

Identify X-
 

An aqueous solution of an inorganic compound (X)givesthe followingreactions:
i) Withan aqueous solutionof B a C l subscript 2 end subscript,aprecipitateinsolubleindiluteHClisobtained

ii) Addition of excess of KI gives a brown precipitate which turns white on addition of excess hypo solution

iii) With an aqueous solution of potassium ferrocyanide a chocolate colored ppt is obtained.

Identify X-
 

chemistry-General
General
chemistry-

Findout (F) :

Findout (F) :

chemistry-General
parallel
General
chemistry-

 Findout(E):

 Findout(E):

chemistry-General
General
chemistry-

 Find the anion(s):

 Find the anion(s):

chemistry-General
General
physics-

In a photoelectric experiment the relation between applied potential difference between cathode and anode V and the photoelectric current I was found to be shown in graph below. If Planck’s constant h equals 6.6 cross times 10 to the power of negative 34 end exponent J s, the frequency of incident radiation would be nearly left parenthesis i n blank s to the power of negative 1 end exponent right parenthesis

In a photoelectric experiment the relation between applied potential difference between cathode and anode V and the photoelectric current I was found to be shown in graph below. If Planck’s constant h equals 6.6 cross times 10 to the power of negative 34 end exponent J s, the frequency of incident radiation would be nearly left parenthesis i n blank s to the power of negative 1 end exponent right parenthesis

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