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DOSIMETRY MEASUREMENT SHEET ( markdown )
# ☢ | DOSIMETRY MEASUREMENT SHEET
---
| lp. № | Isotope Name ( Radioactive Source ) | Date of Measurement | Meassuring Device Name | The measurement of α, β, γ | Absorbed Dose μGy/h | Activity Bq | Counts Per Minute ( CPM ) | ( λ Quantity ) | Geiger–Müller Tube Model |
| ----- | --------------------------------- | ------------------- | ---------------------- | -------------------------- | ------------------- | ----------- | ------------------------- | -------------- | ------------------------ |
| ____. | Ra-226 | `___/04/2024` | SCMD-1 | α☐+ β☐+ γ☐ | ______ | ______ | ______ | _______ | BOH-45 |
| ____. | Am-241 | `___/04/2024` | SCMD-1 | α☐+ β☐+ γ☐ | ______ | ______ | ______ | _______ | BOH-45 |
| ____. | U-235 / U-238 | `___/04/2024` | SCMD-1 | α☐+ β☐+ γ☐ | ______ | ______ | ______ | _______ | BOH-45 |
| ____. | Th-232 | `___/04/2024` | SCMD-1 | α☐+ β☐+ γ☐ | ______ | ______ | ______ | _______ | BOH-45 |
| ____. | Th-232 | `___/04/2024` | SCMD-1 | α☐+ β☐+ γ☐ | ______ | ______ | ______ | _______ | BOH-45 |
| ____. | U-235 / U-238 | `___/04/2024` | SCMD-1 | α☐+ β☐+ γ☐ | ______ | ______ | ______ | _______ | BOH-45 |
---
#### 1.)
## ____
- ##### Measurements ( Absorbed Dose ) + ( Exposure Dose Of X + γ )
| № | ∼μGy/h | ∼mGy/h | ┃ | ∼μR/h | ∼mR/h |
| ----- | ------ | ------ | --- | ------ | ------ |
| ____. | ______ | ______ | ┃ | ______ | ______ |
- ##### Measurements ( Equivalent dose + Effective dose ) + ( Dose Absorbed By '1' organism )
| № | ∼μSv/h | ∼mSv/h | ┃ | ∼μrem/h | ∼mrem/h |
| ----- | ------ | ------ | --- | ------- | ------- |
| ____. | ______ | ______ | ┃ | ______ | ______ |
| № | ∼Bq | Counts Per Minute ( ∼CPM ) |
| ----- | ------ | -------------------------- |
| ____. | ______ | ______ |
- ##### Percentage distribution of emissions of different types of ionizing radiation
| № | α ↝ % | β ↝ % | γ ↝ % |
| ----- | ------------- | ------------- | ------------- |
| ____. | ***______%*** | ***______%*** | ***______%*** |
---
#### 2.)
## ____
- ##### Measurements ( Absorbed Dose ) + ( Exposure Dose Of X + γ )
| № | ∼μGy/h | ∼mGy/h | ┃ | ∼μR/h | ∼mR/h |
| ----- | ------ | ------ | --- | ------ | ------ |
| ____. | ______ | ______ | ┃ | ______ | ______ |
- ##### Measurements ( Equivalent dose + Effective dose ) + ( Dose Absorbed By '1' organism )
| № | ∼μSv/h | ∼mSv/h | ┃ | ∼μrem/h | ∼mrem/h |
| ----- | ------ | ------ | --- | ------- | ------- |
| ____. | ______ | ______ | ┃ | ______ | ______ |
| № | ∼Bq | Counts Per Minute ( ∼CPM ) |
| ----- | ------ | -------------------------- |
| ____. | ______ | ______ |
- ##### Percentage distribution of emissions of different types of ionizing radiation
| № | α ↝ % | β ↝ % | γ ↝ % |
| ----- | ------------- | ------------- | ------------- |
| ____. | ***______%*** | ***______%*** | ***______%*** |
---
#### 3.)
## ____
- ##### Measurements ( Absorbed Dose ) + ( Exposure Dose Of X + γ )
| № | ∼μGy/h | ∼mGy/h | ┃ | ∼μR/h | ∼mR/h |
| ----- | ------ | ------ | --- | ------ | ------ |
| ____. | ______ | ______ | ┃ | ______ | ______ |
- ##### Measurements ( Equivalent dose + Effective dose ) + ( Dose Absorbed By '1' organism )
| № | ∼μSv/h | ∼mSv/h | ┃ | ∼μrem/h | ∼mrem/h |
| ----- | ------ | ------ | --- | ------- | ------- |
| ____. | ______ | ______ | ┃ | ______ | ______ |
| № | ∼Bq | Counts Per Minute ( ∼CPM ) |
| ----- | ------ | -------------------------- |
| ____. | ______ | ______ |
- ##### Percentage distribution of emissions of different types of ionizing radiation
| № | α ↝ % | β ↝ % | γ ↝ % |
| ----- | ------------- | ------------- | ------------- |
| ____. | ***______%*** | ***______%*** | ***______%*** |
---
#### 4.)
## ____
- ##### Measurements ( Absorbed Dose ) + ( Exposure Dose Of X + γ )
| № | ∼μGy/h | ∼mGy/h | ┃ | ∼μR/h | ∼mR/h |
| ----- | ------ | ------ | --- | ------ | ------ |
| ____. | ______ | ______ | ┃ | ______ | ______ |
- ##### Measurements ( Equivalent dose + Effective dose ) + ( Dose Absorbed By '1' organism )
| № | ∼μSv/h | ∼mSv/h | ┃ | ∼μrem/h | ∼mrem/h |
| ----- | ------ | ------ | --- | ------- | ------- |
| ____. | ______ | ______ | ┃ | ______ | ______ |
| № | ∼Bq | Counts Per Minute ( ∼CPM ) |
| ----- | ------ | -------------------------- |
| ____. | ______ | ______ |
- ##### Percentage distribution of emissions of different types of ionizing radiation
| № | α ↝ % | β ↝ % | γ ↝ % |
| ----- | ------------- | ------------- | ------------- |
| ____. | ***______%*** | ***______%*** | ***______%*** |
---
#### 5.)
## ____
- ##### Measurements ( Absorbed Dose ) + ( Exposure Dose Of X + γ )
| № | ∼μGy/h | ∼mGy/h | ┃ | ∼μR/h | ∼mR/h |
| ----- | ------ | ------ | --- | ------ | ------ |
| ____. | ______ | ______ | ┃ | ______ | ______ |
- ##### Measurements ( Equivalent dose + Effective dose ) + ( Dose Absorbed By '1' organism )
| № | ∼μSv/h | ∼mSv/h | ┃ | ∼μrem/h | ∼mrem/h |
| ----- | ------ | ------ | --- | ------- | ------- |
| ____. | ______ | ______ | ┃ | ______ | ______ |
| № | ∼Bq | Counts Per Minute ( ∼CPM ) |
| ----- | ------ | -------------------------- |
| ____. | ______ | ______ |
- ##### Percentage distribution of emissions of different types of ionizing radiation
| № | α ↝ % | β ↝ % | γ ↝ % |
| ----- | ------------- | ------------- | ------------- |
| ____. | ***______%*** | ***______%*** | ***______%*** |
---
#### 6.)
## ____
- ##### Measurements ( Absorbed Dose ) + ( Exposure Dose Of X + γ )
| № | ∼μGy/h | ∼mGy/h | ┃ | ∼μR/h | ∼mR/h |
| ----- | ------ | ------ | --- | ------ | ------ |
| ____. | ______ | ______ | ┃ | ______ | ______ |
- ##### Measurements ( Equivalent dose + Effective dose ) + ( Dose Absorbed By '1' organism )
| № | ∼μSv/h | ∼mSv/h | ┃ | ∼μrem/h | ∼mrem/h |
| ----- | ------ | ------ | --- | ------- | ------- |
| ____. | ______ | ______ | ┃ | ______ | ______ |
| № | ∼Bq | Counts Per Minute ( ∼CPM ) |
| ----- | ------ | -------------------------- |
| ____. | ______ | ______ |
- ##### Percentage distribution of emissions of different types of ionizing radiation
| № | α ↝ % | β ↝ % | γ ↝ % |
| ----- | ------------- | ------------- | ------------- |
| ____. | ***______%*** | ***______%*** | ***______%*** |
---
#### // Note #1
```
Decay Energy of Alpha Beta and Gamma Radiation Emissions: Alpha= beta= gamma=
Name of the Element contained in the control source: Rad / Ra-226 / Radium
Element symbol: Ra / Atomic number: 88
The device with which the measurements were taken: SCMD-1
Measured Ionizing Radiation: Alpha + beta + gamma Measurement
Activity Bq: "X?X"
CPM: "X?X"
The result of measuring the radiation of the source in " μGy/h " : 715 μGy/h
The result of measuring the radiation of the source in " mR/h " : 81 mR/h
The result of measuring the radiation of the source in " μSv/h " : 715 μSv/h
The half-life of the element contained in the source: ~1600 years
The compound contained in the source: RaCl2 - Radium Chlore / RaBr/2- Radium Bromide / Ra2+
Percent emission of alpha decays: 95,2 %
emission percentage of beta decays: 3,7%
emission percentage of gamma decays: 1,1%
Quantity/Weight of Compound - Radium Salt in the source ( ~RELATED ): 5mg
IDENTIFICATION SYMBOL: STAMPED ON THE BACK COVER OF THE ADRIANOV COMPASS OF POLISH MANUFACTURE
```
#### // Note #2
```
```
---
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☢ | DOSIMETRY MEASUREMENT SHEET


lp. № Isotope Name ( Radioactive Source ) Date of Measurement Meassuring Device Name The measurement of α, β, γ Absorbed Dose μGy/h Activity Bq Counts Per Minute ( CPM ) ( λ Quantity ) Geiger–Müller Tube Model
____. Ra-226 ___/04/2024 SCMD-1 α☐+ β☐+ γ☐ ______ ______ ______ _______ BOH-45
____. Am-241 ___/04/2024 SCMD-1 α☐+ β☐+ γ☐ ______ ______ ______ _______ BOH-45
____. U-235 / U-238 ___/04/2024 SCMD-1 α☐+ β☐+ γ☐ ______ ______ ______ _______ BOH-45
____. Th-232 ___/04/2024 SCMD-1 α☐+ β☐+ γ☐ ______ ______ ______ _______ BOH-45
____. Th-232 ___/04/2024 SCMD-1 α☐+ β☐+ γ☐ ______ ______ ______ _______ BOH-45
____. U-235 / U-238 ___/04/2024 SCMD-1 α☐+ β☐+ γ☐ ______ ______ ______ _______ BOH-45

1.)

____

  • Measurements ( Absorbed Dose ) + ( Exposure Dose Of X + γ )
∼μGy/h ∼mGy/h ∼μR/h ∼mR/h
____. ______ ______ ______ ______
  • Measurements ( Equivalent dose + Effective dose ) + ( Dose Absorbed By '1' organism )
∼μSv/h ∼mSv/h ∼μrem/h ∼mrem/h
____. ______ ______ ______ ______
∼Bq Counts Per Minute ( ∼CPM )
____. ______ ______
  • Percentage distribution of emissions of different types of ionizing radiation
α ↝ % β ↝ % γ ↝ %
____. ______% ______% ______%

2.)

____

  • Measurements ( Absorbed Dose ) + ( Exposure Dose Of X + γ )
∼μGy/h ∼mGy/h ∼μR/h ∼mR/h
____. ______ ______ ______ ______
  • Measurements ( Equivalent dose + Effective dose ) + ( Dose Absorbed By '1' organism )
∼μSv/h ∼mSv/h ∼μrem/h ∼mrem/h
____. ______ ______ ______ ______
∼Bq Counts Per Minute ( ∼CPM )
____. ______ ______
  • Percentage distribution of emissions of different types of ionizing radiation
α ↝ % β ↝ % γ ↝ %
____. ______% ______% ______%

3.)

____

  • Measurements ( Absorbed Dose ) + ( Exposure Dose Of X + γ )
∼μGy/h ∼mGy/h ∼μR/h ∼mR/h
____. ______ ______ ______ ______
  • Measurements ( Equivalent dose + Effective dose ) + ( Dose Absorbed By '1' organism )
∼μSv/h ∼mSv/h ∼μrem/h ∼mrem/h
____. ______ ______ ______ ______
∼Bq Counts Per Minute ( ∼CPM )
____. ______ ______
  • Percentage distribution of emissions of different types of ionizing radiation
α ↝ % β ↝ % γ ↝ %
____. ______% ______% ______%

4.)

____

  • Measurements ( Absorbed Dose ) + ( Exposure Dose Of X + γ )
∼μGy/h ∼mGy/h ∼μR/h ∼mR/h
____. ______ ______ ______ ______
  • Measurements ( Equivalent dose + Effective dose ) + ( Dose Absorbed By '1' organism )
∼μSv/h ∼mSv/h ∼μrem/h ∼mrem/h
____. ______ ______ ______ ______
∼Bq Counts Per Minute ( ∼CPM )
____. ______ ______
  • Percentage distribution of emissions of different types of ionizing radiation
α ↝ % β ↝ % γ ↝ %
____. ______% ______% ______%

5.)

____

  • Measurements ( Absorbed Dose ) + ( Exposure Dose Of X + γ )
∼μGy/h ∼mGy/h ∼μR/h ∼mR/h
____. ______ ______ ______ ______
  • Measurements ( Equivalent dose + Effective dose ) + ( Dose Absorbed By '1' organism )
∼μSv/h ∼mSv/h ∼μrem/h ∼mrem/h
____. ______ ______ ______ ______
∼Bq Counts Per Minute ( ∼CPM )
____. ______ ______
  • Percentage distribution of emissions of different types of ionizing radiation
α ↝ % β ↝ % γ ↝ %
____. ______% ______% ______%

6.)

____

  • Measurements ( Absorbed Dose ) + ( Exposure Dose Of X + γ )
∼μGy/h ∼mGy/h ∼μR/h ∼mR/h
____. ______ ______ ______ ______
  • Measurements ( Equivalent dose + Effective dose ) + ( Dose Absorbed By '1' organism )
∼μSv/h ∼mSv/h ∼μrem/h ∼mrem/h
____. ______ ______ ______ ______
∼Bq Counts Per Minute ( ∼CPM )
____. ______ ______
  • Percentage distribution of emissions of different types of ionizing radiation
α ↝ % β ↝ % γ ↝ %
____. ______% ______% ______%

// Note #1

Decay Energy of Alpha Beta and Gamma Radiation Emissions: Alpha= beta= gamma= 
Name of the Element contained in the control source: Rad / Ra-226 / Radium
Element symbol: Ra / Atomic number: 88
The device with which the measurements were taken: SCMD-1
Measured Ionizing Radiation: Alpha + beta + gamma Measurement
Activity Bq: "X?X"
CPM: "X?X"
The result of measuring the radiation of the source in " μGy/h " : 715 μGy/h
The result of measuring the radiation of the source in " mR/h " : 81 mR/h  
The result of measuring the radiation of the source in " μSv/h " : 715 μSv/h 
The half-life of the element contained in the source: ~1600 years 
The compound contained in the source: RaCl2 - Radium Chlore / RaBr/2- Radium Bromide / Ra2+
Percent emission of alpha decays: 95,2 %
emission percentage of beta decays: 3,7%
emission percentage of gamma decays: 1,1%
Quantity/Weight of Compound - Radium Salt in the source ( ~RELATED ): 5mg 
IDENTIFICATION SYMBOL: STAMPED ON THE BACK COVER OF THE ADRIANOV COMPASS OF POLISH MANUFACTURE

// Note #2



















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